Wednesday, October 5, 2016

Lidocaine




Generic Name: Lidocaine hydrochloride anhydrous

Dosage Form: injection
Lidocaine Hydrochloride

Injection, USP

AQUEOUS SOLUTIONS FOR INFILTRATION


AND NERVE BLOCK


Ampul


Plastic Multiple-dose Fliptop Vial


Glass Teartop Vial


Rx only



Lidocaine Description


Lidocaine Hydrochloride Injection, USP is a sterile, nonpyrogenic solution of Lidocaine hydrochloride in water for injection for parenteral administration in various concentrations with characteristics as follows:


















Concentration



0.5%



1%



1.5%



2%



mg/mL Lidocaine HCl (anhyd.)



5



10



15



20



mg/mL sodium chloride



8



7



6.5



6


Multiple-dose vials contain 0.1% of methylparaben added as preservative. May contain sodium hydroxide and/or hydrochloric acid for pH adjustment. The pH is 6.5 (5.0 to 7.0). See HOW SUPPLIED section for various sizes and strengths.


Lidocaine is a local anesthetic of the amide type.


Lidocaine Hydrochloride, USP is chemically designated 2-(diethylamino)-N-(2,6-dimethylphenyl)-acetamide monohydrochloride monohydrate, a white powder freely soluble in water. The molecular weight is 288.82. It has the following structural formula:



The semi-rigid vial used for the plastic vials is fabricated from a specially formulated polyolefin. It is a copolymer of ethylene and propylene. The safety of the plastic has been confirmed by tests in animals according to USP biological standards for plastic containers. The container requires no vapor barrier to maintain the proper drug concentration.



Lidocaine - Clinical Pharmacology


Mechanism of action: Lidocaine stabilizes the neuronal membrane by inhibiting the ionic fluxes required for the initiation and conduction of impulses, thereby effecting local anesthetic action.


Hemodynamics: Excessive blood levels may cause changes in cardiac output, total peripheral resistance, and mean arterial pressure. With central neural blockade these changes may be attributable to block of autonomic fibers, a direct depressant effect of the local anesthetic agent on various components of the cardiovascular system and/or the beta-adrenergic receptor stimulating action of epinephrine when present. The net effect is normally a modest hypotension when the recommended dosages are not exceeded.


Pharmacokinetics and metabolism: Information derived from diverse formulations, concentrations and usages reveals that Lidocaine is completely absorbed following parenteral administration, its rate of absorption depending, for example, upon various factors such as the site of administration and the presence or absence of a vasoconstrictor agent. Except for intravascular administration, the highest blood levels are obtained following intercostal nerve block and the lowest after subcutaneous administration.


The plasma binding of Lidocaine is dependent on drug concentration, and the fraction bound decreases with increasing concentration. At concentrations of 1 to 4 mcg of free base per mL, 60 to 80 percent of Lidocaine is protein bound. Binding is also dependent on the plasma concentration of the alpha-1-acid glycoprotein.


Lidocaine crosses the blood-brain and placental barriers, presumably by passive diffusion.


Lidocaine is metabolized rapidly by the liver, and metabolites and unchanged drug are excreted by the kidneys. Biotransformation includes oxidative N-dealkylation, ring hydroxylation, cleavage of the amide linkage, and conjugation. N-dealkylation, a major pathway of biotransformation, yields the metabolites monoethylglycinexylidide and glycinexylidide. The pharmacological/toxicological actions of these metabolites are similar to, but less potent than, those of Lidocaine. Approximately 90% of Lidocaine administered is excreted in the form of various metabolites, and less than 10% is excreted unchanged. The primary metabolite in urine is a conjugate of 4-hydroxy-2, 6-dimethylaniline.


The elimination half-life of Lidocaine following an intravenous bolus injection is typically 1.5 to 2.0 hours. Because of the rapid rate at which Lidocaine is metabolized, any condition that affects liver function may alter Lidocaine kinetics. The half-life may be prolonged two-fold or more in patients with liver dysfunction. Renal dysfunction does not affect Lidocaine kinetics but may increase the accumulation of metabolites.


Factors such as acidosis and the use of CNS stimulants and depressants affect the CNS levels of Lidocaine required to produce overt systemic effects. Objective adverse manifestations become increasingly apparent with increasing venous plasma levels above 6.0 mcg free base per mL. In the rhesus monkey arterial blood levels of 18-21 mcg/mL have been shown to be threshold for convulsive activity.



Indications and Usage for Lidocaine


Lidocaine Hydrochloride Injection, USP is indicated for production of local or regional anesthesia by infiltration techniques such as percutaneous injection and intravenous regional anesthesia by peripheral nerve block techniques such as brachial plexus and intercostal and by central neural techniques such as lumbar and caudal epidural blocks, when the accepted procedures for these techniques as described in standard textbooks are observed.



Contraindications


Lidocaine is contraindicated in patients with a known history of hypersensitivity to local anesthetics of the amide type.



Warnings


Lidocaine HYDROCHLORIDE INJECTION, FOR INFILTRATION AND NERVE BLOCK, SHOULD BE EMPLOYED ONLY BY CLINICIANS WHO ARE WELL VERSED IN DIAGNOSIS AND MANAGEMENT OF DOSE-RELATED TOXICITY AND OTHER ACUTE EMERGENCIES THAT MIGHT ARISE FROM THE BLOCK TO BE EMPLOYED AND THEN ONLY AFTER ENSURING THE IMMEDIATE AVAILABILITY OF OXYGEN, OTHER RESUSCITATIVE DRUGS, CARDIOPULMONARY EQUIPMENT, AND THE PERSONNEL NEEDED FOR PROPER MANAGEMENT OF TOXIC REACTIONS AND RELATED EMERGENCIES (See also ADVERSE REACTIONS and PRECAUTIONS). DELAY IN PROPER MANAGEMENT OF DOSE-RELATED TOXICITY, UNDERVENTILATION FROM ANY CAUSE AND/OR ALTERED SENSITIVITY MAY LEAD TO THE DEVELOPMENT OF ACIDOSIS, CARDIAC ARREST AND, POSSIBLY, DEATH.


Intra-articular infusions of local anesthetics following arthroscopic and other surgical procedures is an unapproved use, and there have been post-marketing reports of chondrolysis in patients receiving such infusions. The majority of reported cases of chondrolysis have involved the shoulder joint; cases of gleno-humeral chondrolysis have been described in pediatric and adult patients following intra-articular infusions of local anesthetics with and without epinephrine for periods of 48 to 72 hours. There is insufficient information to determine whether shorter infusion periods are not associated with these findings. The time of onset of symptoms, such as joint pain, stiffness and loss of motion can be variable, but may begin as early as the 2nd month after surgery. Currently, there is no effective treatment for chondrolysis; patients who experienced chondrolysis have required additional diagnostic and therapeutic procedures and some required arthroplasty or shoulder replacement.


To avoid intravascular injection, aspiration should be performed before the local anesthetic solution is injected. The needle must be repositioned until no return of blood can be elicited by aspiration. Note, however, that the absence of blood in the syringe does not guarantee that intravascular injection has been avoided.


Local anesthetic solutions containing antimicrobial preservatives (e.g., methylparaben) should not be used for epidural or spinal anesthesia because the safety of these agents has not been established with regard to intrathecal injection, either intentional or accidental.



Precautions



General:


The safety and effectiveness of Lidocaine depend on proper dosage, correct technique, adequate precautions, and readiness for emergencies. Standard textbooks should be consulted for specific techniques and precautions for various regional anesthetic procedures.


Resuscitative equipment, oxygen, and other resuscitative drugs should be available for immediate use. (See WARNINGS and ADVERSE REACTIONS). The lowest dosage that results in effective anesthesia should be used to avoid high plasma levels and serious adverse effects. Syringe aspirations should also be performed before and during each supplemental injection when using indwelling catheter techniques. During the administration of epidural anesthesia, it is recommended that a test dose be administered initially and that the patient be monitored for central nervous system toxicity and cardiovascular toxicity, as well as for signs of unintended intrathecal administration before proceeding. When clinical conditions permit, consideration should be given to employing local anesthetic solutions that contain epinephrine for the test dose because circulatory changes compatible with epinephrine may also serve as a warning sign of unintended intravascular injection. An intravascular injection is still possible even if aspirations for blood are negative. Repeated doses of Lidocaine may cause significant increases in blood levels with each repeated dose because of slow accumulation of the drug or its metabolites. Tolerance to elevated blood levels varies with the status of the patient. Debilitated, elderly patients, acutely ill patients and children should be given reduced doses commensurate with their age and physical condition. Lidocaine should also be used with caution in patients with severe shock or heart block. Lumbar and caudal epidural anesthesia should be used with extreme caution in persons with the following conditions: existing neurological disease, spinal deformities, septicemia and severe hypertension.


Local anesthetic solutions containing a vasoconstrictor should be used cautiously and in carefully circumscribed quantities in areas of the body supplied by end arteries or having otherwise compromised blood supply. Patients with peripheral vascular disease and those with hypertensive vascular disease may exhibit exaggerated vasoconstrictor response. Ischemic injury or necrosis may result. Preparations containing a vasoconstrictor should be used with caution in patients during or following the administration of potent general anesthetic agents, since cardiac arrhythmias may occur under such conditions.


Careful and constant monitoring of cardiovascular and respiratory (adequacy of ventilation) vital signs and the patient’s state of consciousness should be accomplished after each local anesthetic injection. It should be kept in mind at such times that restlessness, anxiety, tinnitus, dizziness, blurred vision, tremors, depression or drowsiness may be early warning signs of central nervous system toxicity.


Since amide-type local anesthetics are metabolized by the liver, Lidocaine should be used with caution in patients with hepatic disease. Patients with severe hepatic disease, because of their inability to metabolize local anesthetics normally, are at greater risk of developing toxic plasma concentrations. Lidocaine should also be used with caution in patients with impaired cardiovascular function since they may be less able to compensate for functional changes associated with the prolongation of A-V conduction produced by these drugs. Many drugs used during the conduct of anesthesia are considered potential triggering agents for familial malignant hyperthermia. Since it is not known whether amide-type local anesthetics may trigger this reaction and since the need for supplemental general anesthesia cannot be predicted in advance, it is suggested that a standard protocol for the management of malignant hyperthermia should be available. Early unexplained signs of tachycardia, tachypnea, labile blood pressure and metabolic acidosis may precede temperature elevation. Successful outcome is dependent on early diagnosis, prompt discontinuance of the suspect triggering agent(s) and institution of treatment, including oxygen therapy, indicated supportive measures and dantrolene (consult dantrolene sodium intravenous package insert before using).


Proper tourniquet technique, as described in publications and standard textbooks, is essential in the performance of intravenous regional anesthesia. Solutions containing epinephrine or other vasoconstrictors should not be used for this technique.


Lidocaine should be used with caution in persons with known drug sensitivities. Patients allergic to para-aminobenzoic acid derivatives (procaine, tetracaine, benzocaine, etc.) have not shown cross sensitivity to Lidocaine.


Use in the Head and Neck Area: Small doses of local anesthetics injected into the head and neck area, including retrobulbar, dental and stellate ganglion blocks, may produce adverse reactions similar to systemic toxicity seen with unintentional intravascular injections of larger doses. Confusion, convulsions, respiratory depression and/or respiratory arrest and cardiovascular stimulation or depression have been reported. These reactions may be due to intra-arterial injections of the local anesthetic with retrograde flow to the cerebral circulation. Patients receiving these blocks should have their circulation and respiration monitored and be constantly observed. Resuscitative equipment and personnel for treating adverse reactions should be immediately available. Dosage recommendations should not be exceeded. (See DOSAGE AND ADMINISTRATION).



Information for Patients:


When appropriate, patients should be informed in advance that they may experience temporary loss of sensation and motor activity, usually in the lower half of the body following proper administration of epidural anesthesia.



Clinically Significant Drug Interactions:


The administration of local anesthetic solutions containing epinephrine or norepinephrine to patients receiving monoamine oxidase inhibitors or tricyclic antidepressants may produce severe prolonged hypertension.


Phenothiazines and butyrophenones may reduce or reverse the pressor effect of epinephrine.


Concurrent use of these agents should generally be avoided. In situations when concurrent therapy is necessary, careful patient monitoring is essential.


Concurrent administration of vasopressor drugs (for the treatment of hypotension related to obstetric blocks) and ergot-type oxytoxic drugs may cause severe persistent hypertension or cerebrovascular accidents.



Drug Laboratory Test Interactions:


The intramuscular injection of Lidocaine may result in an increase in creatine phosphokinase levels. Thus, the use of this enzyme determination without isoenzyme separation as a diagnostic test for the presence of acute myocardial infarction may be compromised by the intramuscular injection of Lidocaine.



Carcinogenesis, Mutagenesis, Impairment of Fertility:


Studies of Lidocaine in animals to evaluate the carcinogenic and mutagenic potential or the effect on fertility have not been conducted.



Pregnancy:


Teratogenic Effects. Pregnancy Category B. Reproduction studies have been performed in rats at doses up to 6.6 times the human dose and have revealed no evidence of harm to the fetus caused by Lidocaine. There are, however, no adequate and well-controlled studies in pregnant women. Animal reproduction studies are not always predictive of human response. General consideration should be given to this fact before administering Lidocaine to women of childbearing potential, especially during early pregnancy when maximum organogenesis takes place.



Labor and Delivery:


Local anesthetics rapidly cross the placenta and when used for epidural, paracervical, pudendal or caudal block anesthesia, can cause varying degrees of maternal, fetal and neonatal toxicity (See CLINICAL PHARMACOLOGY—Pharmacokinetics). The potential for toxicity depends upon the procedure performed, the type and amount of drug used, and the technique of drug administration. Adverse reactions in the parturient, fetus and neonate involve alterations of the central nervous system peripheral vascular tone and cardiac function.


Maternal hypotension has resulted from regional anesthesia. Local anesthetics produce vasodilation by blocking sympathetic nerves. Elevating the patient’s legs and positioning her on her left side will help prevent decreases in blood pressure. The fetal heart rate also should be monitored continuously, and electronic fetal monitoring is highly advisable.


Epidural, spinal, paracervical, or pudendal anesthesia may alter the forces of parturition through changes in uterine contractility or maternal expulsive efforts. In one study, paracervical block anesthesia was associated with a decrease in the mean duration of first stage labor and facilitation of cervical dilation. However, spinal and epidural anesthesia have also been reported to prolong the second stage of labor by removing the parturient’s reflex urge to bear down or by interfering with motor function. The use of obstetrical anesthesia may increase the need for forceps assistance.


The use of some local anesthetic drug products during labor and delivery may be followed by diminished muscle strength and tone for the first day or two of life. The long-term significance of these observations is unknown. Fetal bradycardia may occur in 20 to 30 percent of patients receiving paracervical nerve block anesthesia with the amide-type local anesthetics and may be associated with fetal acidosis. Fetal heart rate should always be monitored during paracervical anesthesia. The physician should weigh the possible advantages against risks when considering paracervical block in prematurity, toxemia of pregnancy and fetal distress. Careful adherence to recommended dosage is of the utmost importance in obstetrical paracervical block. Failure to achieve adequate analgesia with recommended doses should arouse suspicion of intravascular or fetal intracranial injection. Cases compatible with unintended fetal intracranial injection of local anesthetic solution have been reported following intended paracervical or pudendal block or both. Babies so affected present with unexplained neonatal depression at birth, which correlates with high local anesthetic serum levels, and often manifest seizures within six hours. Prompt use of supportive measures combined with forced urinary excretion of the local anesthetic has been used successfully to manage this complication.


Case reports of maternal convulsions and cardiovascular collapse following use of some local anesthetics for paracervical block in early pregnancy (as anesthesia for elective abortion) suggest that systemic absorption under these circumstances may be rapid. The recommended maximum dose of each drug should not be exceeded. Injection should be made slowly and with frequent aspiration. Allow a 5-minute interval between sides.



Nursing Mothers:


It is not known whether this drug is excreted in human milk. Because many drugs are excreted in human milk, caution should be exercised when Lidocaine is administered to a nursing woman.



Pediatric Use:


Dosages in pediatric patients should be reduced, commensurate with age, body weight and physical condition. See DOSAGE AND ADMINISTRATION.



Adverse Reactions


Systemic: Adverse experiences following the administration of Lidocaine are similar in nature to those observed with other amide local anesthetic agents. These adverse experiences are, in general, dose-related and may result from high plasma levels caused by excessive dosage, rapid absorption or inadvertent intravascular injection, or may result from a hypersensitivity, idiosyncrasy or diminished tolerance on the part of the patient. Serious adverse experiences are generally systemic in nature. The following types are those most commonly reported:


Central Nervous System: CNS manifestations are excitatory and/or depressant and may be characterized by lightheadedness, nervousness, apprehension, euphoria, confusion, dizziness, drowsiness, tinnitus, blurred or double vision, vomiting, sensations of heat, cold or numbness, twitching, tremors, convulsions, unconsciousness, respiratory depression and arrest. The excitatory manifestations may be very brief or may not occur at all, in which case the first manifestation of toxicity may be drowsiness merging into unconsciousness and respiratory arrest.


Drowsiness following the administration of Lidocaine is usually an early sign of a high blood level of the drug and may occur as a consequence of rapid absorption.


Cardiovascular System: Cardiovascular manifestations are usually depressant and are characterized by bradycardia, hypotension, and cardiovascular collapse, which may lead to cardiac arrest.


Allergic: Allergic reactions are characterized by cutaneous lesions, urticaria, edema or anaphylactoid reactions. Allergic reactions may occur as a result of sensitivity either to local anesthetic agents or to the methylparaben used as a preservative in multiple dose vials. Allergic reactions as a result of sensitivity to Lidocaine are extremely rare and, if they occur, should be managed by conventional means. The detection of sensitivity by skin testing is of doubtful value.


Neurologic: The incidences of adverse reactions associated with the use of local anesthetics may be related to the total dose of local anesthetic administered and are also dependent upon the particular drug used, the route of administration and the physical status of the patient. In a prospective review of 10,440 patients who received Lidocaine for spinal anesthesia, the incidences of adverse reactions were reported to be about 3 percent each for positional headaches, hypotension and backache; 2 percent for shivering; and less than 1 percent each for peripheral nerve symptoms, nausea, respiratory inadequacy and double vision. Many of these observations may be related to local anesthetic techniques, with or without a contribution from the local anesthetic.


In the practice of caudal or lumbar epidural block, occasional unintentional penetration of the subarachnoid space by the catheter may occur. Subsequent adverse effects may depend partially on the amount of drug administered subdurally.


These may include spinal block of varying magnitude (including total spinal block), hypotension secondary to spinal block, loss of bladder and bowel control, and loss of perineal sensation and sexual function. Persistent motor, sensory and/or autonomic (sphincter control) deficit of some lower spinal segments with slow recovery (several months) or incomplete recovery have been reported in rare instances when caudal or lumbar epidural block has been attempted. Backache and headache have also been noted following use of these anesthetic procedures.


There have been reported cases of permanent injury to extraocular muscles requiring surgical repair following retrobulbar administration.



Overdosage


Acute emergencies from local anesthetics are generally related to high plasma levels encountered during therapeutic use of local anesthetics or to unintended subarachnoid injection of local anesthetic solution (see ADVERSE REACTIONS, WARNINGS and PRECAUTIONS).


Management of Local Anesthetic Emergencies: The first consideration is prevention, best accomplished by careful monitoring of cardiovascular and respiratory vital signs and the patient’s state of consciousness after each local anesthetic injection. At the first sign of change, oxygen should be administered.


The first step in the management of convulsions, as well as underventilation or apnea due to unintended subarachnoid injection of drug solution, consists of immediate attention to the maintenance of a patent airway and assisted or controlled ventilation with oxygen and a delivery system capable of permitting immediate positive airway pressure by mask. Immediately after the institution of these ventilatory measures, the adequacy of the circulation should be evaluated, keeping in mind that drugs used to treat convulsions sometimes depress the circulation when administered intravenously. Should convulsions persist despite adequate respiratory support, and if the status of the circulation permits, small increments of an ultra-short acting barbiturate (such as thiopental or thiamylal) or a benzodiazepine (such as diazepam) may be administered intravenously. The clinician should be familiar, prior to use of local anesthetics, with these anticonvulsant drugs. Supportive treatment of circulatory depression may require administration of intravenous fluids and, when appropriate, a vasopressor as directed by the clinical situation (e.g., ephedrine).


If not treated immediately, both convulsions and cardiovascular depression can result in hypoxia, acidosis, bradycardia, arrhythmias and cardiac arrest. Underventilation or apnea due to unintentional subarachnoid injection of local anesthetic solution may produce these same signs and also lead to cardiac arrest if ventilatory support is not instituted. If cardiac arrest should occur standard cardiopulmonary resuscitative measures should be instituted.


Endotracheal intubation, employing drugs and techniques familiar to the clinician, may be indicated, after initial administration of oxygen by mask, if difficulty is encountered in the maintenance of a patent airway or if prolonged ventilatory support (assisted or controlled) is indicated.


Dialysis is of negligible value in the treatment of acute overdosage with Lidocaine.


The oral LD50 of Lidocaine HCl in non-fasted female rats is 459 (346−773) mg/kg (as the salt) and 214 (159−324) mg/kg (as the salt) in fasted female rats.



Lidocaine Dosage and Administration


Table 1 (Recommended Dosages) summarizes the recommended volumes and concentrations of Lidocaine Hydrochloride Injection, USP for various types of anesthetic procedures. The dosages suggested in this table are for normal healthy adults and refer to the use of epinephrine-free solutions. When larger volumes are required only solutions containing epinephrine should be used, except in those cases where vasopressor drugs may be contraindicated.


There have been adverse event reports of chondrolysis in patients receiving intra-articular infusions of local anesthetics following arthroscopic and other surgical procedures.  Lidocaine is not approved for this use (see WARNINGS and DOSAGE AND ADMINISTRATION).


These recommended doses serve only as a guide to the amount of anesthetic required for most routine procedures. The actual volumes and concentrations to be used depend on a number of factors such as type and extent of surgical procedure, depth of anesthesia and degree of muscular relaxation required, duration of anesthesia required, and the physical condition of the patient. In all cases the lowest concentration and smallest dose that will produce the desired result should be given. Dosages should be reduced for children and for elderly and debilitated patients and patients with cardiac and/or liver disease.


The onset of anesthesia, the duration of anesthesia and the degree of muscular relaxation are proportional to the volume and concentration (i.e., total dose) of local anesthetic used. Thus, an increase in volume and concentration of Lidocaine Hydrochloride Injection will decrease the onset of anesthesia, prolong the duration of anesthesia, provide a greater degree of muscular relaxation and increase the segmental spread of anesthesia. However, increasing the volume and concentration of Lidocaine Hydrochloride Injection may result in a more profound fall in blood pressure when used in epidural anesthesia. Although the incidence of side effects with Lidocaine is quite low, caution should be exercised when employing large volumes and concentrations, since the incidence of side effects is directly proportional to the total dose of local anesthetic agent injected.


For intravenous regional anesthesia, only the 50 mL single-dose vial containing 0.5% Lidocaine Hydrochloride Injection, USP should be used.


Epidural Anesthesia


For epidural anesthesia, only the following available specific products of Lidocaine Hydrochloride Injection by Hospira are recommended:


1%. . . . . . . . . . . . . . . . . . . . 30 mL single-dose teartop vials


1.5%. . . . . . . . . . . . . . . . . . . . . . . 20 mL single-dose ampuls


2%. . . . . . . . . . . . . . . . . . . . . . . . . 10 mL single-dose ampuls


Although these solutions are intended specifically for epidural anesthesia, they may also be used for infiltration and peripheral nerve block provided they are employed as single dose units. These solutions contain no bacteriostatic agent. In epidural anesthesia, the dosage varies with the number of dermatomes to be anesthetized (generally 2−3 mL of the indicated concentration per dermatome).


Caudal and Lumbar Epidural Block: As a precaution against the adverse experiences sometimes observed following unintentional penetration of the subarachnoid space, a test dose such as 2−3 mL of 1.5% Lidocaine hydrochloride should be administered at least 5 minutes prior to injecting the total volume required for a lumbar or caudal epidural block. The test dose should be repeated if the patient is moved in a manner that may have displaced the catheter. Epinephrine, if contained in the test dose (10−15 mcg have been suggested), may serve as a warning of unintentional intravascular injection. If injected into a blood vessel, this amount of epinephrine is likely to produce a transient "epinephrine response" within 45 seconds, consisting of an increase in heart rate and systolic blood pressure, circumoral pallor, palpitations and nervousness in the unsedated patient. The sedated patient may exhibit only a pulse rate increase of 20 or more beats per minute for 15 or more seconds. Patients on beta-blockers may not manifest changes in heart rate, but blood pressure monitoring can detect an evanescent rise in systolic blood pressure. Adequate time should be allowed for onset of anesthesia after administration of each test dose. The rapid injection of a large volume of Lidocaine Hydrochloride Injection through the catheter should be avoided, and, when feasible, fractional doses should be administered.


In the event of the known injection of a large volume of local anesthetic solutions into the subarachnoid space, after suitable resuscitation and if the catheter is in place, consider attempting the recovery of drug by draining a moderate amount of cerebrospinal fluid (such as 10 mL) through the epidural catheter.


Maximum Recommended Dosages


NOTE: The products accompanying this insert do not contain epinephrine.


Adults: For normal healthy adults, the individual maximum recommended dose of Lidocaine HCl with epinephrine should not exceed 7 mg/kg (3.5 mg/lb) of body weight and in general it is recommended that the maximum total dose not exceed 500 mg. When used without epinephrine, the maximum individual dose should not exceed 4.5 mg/kg (2 mg/lb) of body weight and in general it is recommended that the maximum total dose does not exceed 300 mg. For continuous epidural or caudal anesthesia, the maximum recommended dosage should not be administered at intervals of less than 90 minutes. When continuous lumbar or caudal epidural anesthesia is used for non-obstetrical procedures, more drug may be administered if required to produce adequate anesthesia.


The maximum recommended dose per 90 minute period of Lidocaine hydrochloride for paracervical block in obstetrical patients and non-obstetrical patients is 200 mg total. One-half of the total dose is usually administered to each side. Inject slowly five minutes between sides. (See also discussion of paracervical block in PRECAUTIONS).


For intravenous regional anesthesia, the dose administered should not exceed 4 mg/kg in adults.


Children: It is difficult to recommend a maximum dose of any drug for children, since this varies as a function of age and weight. For children over 3 years of age who have a normal lean body mass and normal body development, the maximum dose is determined by the child’s age and weight. For example, in a child of 5 years weighing 50 lbs., the dose of Lidocaine HCl should not exceed 75 — 100 mg (1.5 — 2 mg/lb). The use of even more dilute solutions (i.e., 0.25 — 0.5%) and total dosages not to exceed 3 mg/kg (1.4 mg/lb) are recommended for induction of intravenous regional anesthesia in children.


In order to guard against systemic toxicity, the lowest effective concentration and lowest effective dose should be used at all times. In some cases it will be necessary to dilute available concentrations with 0.9% sodium chloride injection in order to obtain the required final concentration.


Parenteral drug products should be inspected visually for particulate matter and discoloration prior to administration whenever the solution and container permit. Solutions that are discolored and/or contain particulate matter should not be used.












































































































































Table 1



Recommended Dosages of Lidocaine Hydrochloride Injection, USP for Various Anesthetic



Procedures in Normal Healthy Adults



Lidocaine Hydrochloride Injection, USP (without Epinephrine)



Procedure



Conc. (%)



Vol. (mL)



Total Dose (mg)



Infiltration



Percutaneous



0.5 or 1.0



1−60



5−300



Intravenous Regional



0.5



10−60



50−300



Peripheral Nerve Blocks, e.g.



Brachial



1.5



15−20



225−300



Dental



2.0



1−5



20−100



Intercostal



1.0



3



30



Paravertebral



1.0



3−5



30−50



Pudendal (each side)



1.0



10



100



Paracervical



Obstetrical Analgesia



(each side)



1.0



10



100



Sympathetic Nerve Blocks, e.g.



Cervical (stellate ganglion)



1.0



5



50



Lumbar



1.0



5−10



50−100



Central Neural Blocks



Epidural*



Thoracic



1.0



20−30



200−300



Lumbar



Analgesia



1.0



25−30



250−300



Anesthesia



1.5



15−20



225−300



2.0



10−15



200−300



Caudal



Obstetrical Analgesia



1.0



20−30



200−300



Surgical Anesthesia



1.5



15−20



225−300



*Dose determined by number of dermatomes to be anesthetized (2 to 3 mL/dermatome).


THE ABOVE SUGGESTED CONCENTRATIONS AND VOLUMES SERVE ONLY AS A GUIDE. OTHER VOLUMES AND CONCENTRATIONS MAY BE USED PROVIDED THE TOTAL MAXIMUM RECOMMENDED DOSE IS NOT EXCEEDED.


Sterilization, Storage and Technical Procedures: Disinfecting agents containing heavy metals, which cause release of respective ions (mercury, zinc, copper, etc.) should not be used for skin or mucous membrane disinfection as they have been related to incidence of swelling and edema. When chemical disinfection of multi-dose vials is desired, either isopropyl alcohol (91%) or 70% ethyl alcohol is recommended. Many commercially available brands of rubbing alcohol, as well as solutions of ethyl alcohol not of USP grade, contain denaturants which are injurious to rubber and, therefore, are not to be used. It is recommended that chemical disinfection be accomplished by wiping the vial stopper thoroughly with cotton or gauze that has been moistened with the recommended alcohol just prior to use.



How is Lidocaine Supplied


Lidocaine Hydrochloride Injection, USP is supplied as follows:











































NDC



Container



Concentration



Size



Total (mg)



Single-dose:



0409-4278-01



Glass Teartop Vial



0.5% (5 mg/mL)



50 mL



250



0409-4713-01



Glass Ampul



1% (10 mg/mL)



2 mL (bulk – 400 units)



20



0409-4713-02



Glass Ampul



1% (10 mg/mL)



5 mL



50



0409-4713-

Robinul V




Robinul V may be available in the countries listed below.


In some countries, this medicine may only be approved for veterinary use.

Ingredient matches for Robinul V



Glycopyrronium Bromide

Glycopyrronium Bromide is reported as an ingredient of Robinul V in the following countries:


  • France

International Drug Name Search

Pyridoxine Chloride




Pyridoxine Chloride may be available in the countries listed below.


Ingredient matches for Pyridoxine Chloride



Pyridoxine

Pyridoxine hydrochloride (a derivative of Pyridoxine) is reported as an ingredient of Pyridoxine Chloride in the following countries:


  • Georgia

International Drug Name Search

Buprenorphine Injection




Generic Name: buprenorphine hydrochloride

Dosage Form: injection, solution
BUPRENORPHINE HYDROCHLORIDE INJECTION

Rx Only



DESCRIPTION


Buprenorphine hydrochloride injection is a narcotic under the Controlled Substances Act due to its chemical derivation from thebaine. Chemically, it is 17-(cyclopropylmethyl)-α-(1, 1-dimethylethyl)-4, 5-epoxy-18,19-dihydro-3-hydroxy-6-methoxy-α-methyl-6, 14-ethenomorphinan-7-methanol, hydrochloride [5α, 7α(S)].


Buprenorphine hydrochloride is a white powder, weakly acidic and with limited solubility in water. Buprenorphine hydrochloride injection is a clear, sterile, injectable agonist-antagonist analgesic intended for intravenous or intramuscular administration. Each mL of buprenorphine hydrochloride injection contains buprenorphine hydrochloride 0.324 mg (equivalent to buprenorphine 0.3 mg), anhydrous dextrose 50 mg, water for injection and HCI to adjust pH between 3.0 and 7.0.


Buprenorphine hydrochloride has the molecular formula, C29H41NO4HCI, and the following structure:




CLINICAL PHARMACOLOGY


Buprenorphine hydrochloride injection is a parenteral opioid analgesic with 0.3 mg buprenorphine being approximately equivalent to 10 mg morphine sulfate in analgesic and respiratory depressant effects in adults. Pharmacological effects occur as soon as 15 minutes after intramuscular injection and persist for 6 hours or longer. Peak pharmacologic effects usually are observed at 1 hour. When used intravenously, the times to onset and peak effect are shortened.


The limits of sensitivity of available analytical methodology precluded demonstration of bioequivalence between intramuscular and intravenous routes of administration. In postoperative adults, pharmacokinetic studies have shown elimination half-lives ranging from 1.2 to 7.2 hours (mean 2.2 hours) after intravenous administration of 0.3 mg of buprenorphine. A single, ten-patient, pharmacokinetic study of doses of 3 mcg/kg in children (age 5 to 7 years) showed a high inter-patient variability, but suggests that the clearance of the drug may be higher in children than in adults. This is supported by at least one repeat-dose study in postoperative pain that showed an optimal inter-dose interval of 4 to 5 hours in pediatric patients as opposed to the recommended 6 to 8 hours in adults.


Buprenorphine, in common with morphine and other phenolic opioid analgesics, is metabolized by the liver and its clearance is related to hepatic blood flow. Studies in patients anesthetized with 0.5% halothane have shown that this anesthetic decreases hepatic blood flow by about 30%.



Mechanism of Analgesic Action:


Buprenorphine hydrochloride exerts its analgesic effect via high affinity binding to µ subclass opiate receptors in the central nervous system. Although buprenorphine hydrochloride may be classified as a partial agonist, under the conditions of recommended use it behaves very much like classical µ agonists such as morphine. One unusual property of buprenorphine hydrochloride observed in in vitro studies is its very slow rate of dissociation from its receptor. This could account for its longer duration of action than morphine, the unpredictability of its reversal by opioid antagonists, and its low level of manifest physical dependence.



Narcotic Antagonist Activity:


Buprenorphine demonstrates narcotic antagonist activity and has been shown to be equipotent with naloxone as an antagonist of morphine in the mouse tail flick test.



Cardiovascular Effects:


Buprenorphine hydrochloride injection may cause a decrease or, rarely, an increase in pulse rate and blood pressure in some patients.



Effects on Respiration:


Under usual conditions of use in adults, both buprenorphine hydrochloride injection and morphine show similar dose-related respiratory depressant effects. At adult therapeutic doses, buprenorphine hydrochloride injection (0.3 mg buprenorphine) can decrease respiratory rate in an equivalent manner to an equianalgesic dose of morphine (10 mg). (See WARNINGS.)



INDICATIONS AND USAGE


Buprenorphine hydrochloride injection is indicated for the relief of moderate to severe pain.



CONTRAINDICATIONS


Buprenorphine hydrochloride injection should not be administered to patients who have been shown to be hypersensitive to the drug.



WARNINGS



Impaired Respiration:


As with other potent opioids, clinically significant respiratory depression may occur within the recommended dose range in patients receiving therapeutic doses of buprenorphine. Buprenorphine hydrochloride should be used with caution in patients with compromised respiratory function (e.g., chronic obstructive pulmonary disease, cor pulmonale, decreased respiratory reserve, hypoxia, hypercapnia, or preexisting respiratory depression). Particular caution is advised if buprenorphine hydrochloride is administered to patients taking or recently receiving drugs with CNS/respiratory depressant effects. In patients with the physical and/or pharmacological risk factors above, the dose should be reduced by approximately one-half.


NALOXONE MAY NOT BE EFFECTIVE IN REVERSING THE RESPIRATORY DEPRESSION PRODUCED BY BUPRENORPHINE HYDROCHLORIDE INJECTION. THEREFORE, AS WITH OTHER POTENT OPIOIDS, THE PRIMARY MANAGEMENT OF OVERDOSE SHOULD BE THE REESTABLISHMENT OF ADEQUATE VENTILATION WITH MECHANICAL ASSISTANCE OF RESPIRATION, IF REQUIRED.



Interaction with Other Central Nervous System Depressants:


Patients receiving buprenorphine hydrochloride injection in the presence of other narcotic analgesics, general anesthetics, antihistamines, benzodiazepines, phenothiazines, other tranquilizers, sedative/hypnotics or other CNS depressants (including alcohol) may exhibit increased CNS depression. When such combined therapy is contemplated, it is particularly important that the dose of one or both agents be reduced.



Head Injury and Increased Intracranial Pressure:


Buprenorphine hydrochloride injection, like other potent analgesics, may itself elevate cerebrospinal fluid pressure and should be used with caution in head injury, intracranial lesions and other circumstances where cerebrospinal pressure may be increased. Buprenorphine hydrochloride injection can produce miosis and changes in the level of consciousness which may interfere with patient evaluation.



Use in Ambulatory Patients:


Buprenorphine hydrochloride injection may impair the mental or physical abilities required for the performance of potentially dangerous tasks such as driving a car or operating machinery. Therefore, buprenorphine hydrochloride injection should be administered with caution to ambulatory patients who should be warned to avoid such hazards.



Use in Narcotic-Dependent Patients:


Because of the narcotic antagonist activity of buprenorphine hydrochloride injection, use in the physically dependent individual may result in withdrawal effects.



PRECAUTIONS



General


Buprenorphine hydrochloride injection should be administered with caution in the elderly, debilitated patients, in children and those with severe impairment of hepatic, pulmonary, or renal function; myxedema or hypothyroidism; adrenal cortical insufficiency (e.g., Addison's disease); CNS depression or coma; toxic psychoses; prostatic hypertrophy or urethral stricture; acute alcoholism; delirium tremens; or kyphoscoliosis.


Because buprenorphine hydrochloride injection is metabolized by the liver, the activity of buprenorphine hydrochloride injection may be increased and/or extended in those individuals with impaired hepatic function or those receiving other agents known to decrease hepatic clearance.


Buprenorphine hydrochloride injection has been shown to increase intracholedochal pressure to a similar degree as other opioid analgesics, and thus should be administered with caution to patients with dysfunction of the biliary tract.



Information for Patients


The effects of buprenorphine hydrochloride injection, particularly drowsiness, may be potientiated by other centrally acting agents such as alcohol or benzodiazepines. It is particularly important that in these circumstances patients must not drive or operate machinery. Buprenorphine hydrochloride injection has some pharmacologic effects similar to morphine which in susceptible patients may lead to self-administration of the drug when pain no longer exists. Patients must not exceed the dosage of buprenorphine hydrochloride injection prescribed by their physician. Patients should be urged to consult their physician if other prescription medications are currently being used or are prescribed for future use.



Drug Interactions


Drug interactions common to other potent opioid analgesics also may occur with buprenorphine hydrochloride injection. Particular care should be taken when buprenorphine hydrochloride injection is used in combination with central nervous system depressant drugs (see WARNINGS). Although specific information is not presently available, caution should be exercised when buprenorphine hydrochloride injection is used in combination with MAO inhibitors. There have been reports of respiratory and cardiovascular collapse in patients who received therapeutic doses of diazepam and buprenorphine hydrochloride injection. A suspected interaction between buprenorphine hydrochloride injection and phenprocoumon resulting in purpura has been reported.


CYP3A4 Inhibitors:

Since the metabolism of buprenorphine is mediated by the CYP3A4 isozyme, coadministration of drugs that inhibit CYP3A4 activity may cause decreased clearance of buprenorphine. Thus patients coadministered with inhibitors of CYP3A4 such as macrolide antibiotics (e.g., erythromycin), azole antifungal agents (e.g., ketoconazole), and protease inhibitors (e.g., ritanovir) while receiving buprenorphine hydrochloride injection should be carefully monitored and dosage adjustment made if warranted.


CYP3A4 lnducers:

Cytochrome P450 inducers, such as rifampin, carbamazepine, and phenytoin, induce metabolism and as such may cause increased clearance of buprenorphine. Caution is advised when administering buprenorphine hydrochloride injection to patients receiving these medications and if necessary dose adjustments should be considered.



Carcinogenesis, Mutagenesis, Impairment of Fertility


Carcinogenesis:

Carcinogenicity studies were conducted in Sprague-Dawley rats and CD-1 mice. Buprenorphine was administered in the diet at doses of 0.6, 5.5, and 56 mg/kg/day for 27 months in rats. These doses were approximately equivalent to 5.7, 52 and 534 times the recommended human dose (1.2 mg) on an mg/m2 body surface area basis. Statistically significant dose-related increases in testicular interstitial (Leydig's) cell tumors occurred, according to the trend test adjusted for survival. Pairwise comparison of the high dose against control failed to show statistical significance. In the mouse study, buprenorphine was administered in the diet at doses of 8, 50, and 100 mg/kg/day for 86 weeks. The high dose was approximately equivalent to 477 times the recommended human dose (1.2 mg) on a mg/m2 basis. Buprenorphine was not carcinogenic in mice.


Mutagenesis:

Buprenorphine was studied in a series of tests. Results were negative in Chinese hamster bone marrow and spermatogonia cells, and negative in mouse lymphoma L5178Y assay. Results were equivocal in the Ames test: negative in studies in two laboratories, but positive in frame shift mutation at high dose (5 mg/plate) in a third study.


Impairment of Fertility:

Reproduction studies of buprenorphine in rats demonstrated no evidence of impaired fertility at daily oral doses up to 80 mg/kg (approximately 763 times the recommended human daily dose of 1.2 mg on a mg/m2 basis) or up to 5 mg/kg I.M. or S.C. (approximately 48 times the recommended human daily dose of 1.2 mg on a mg/m2 basis)



Pregnancy


Teratogenic Effects

Pregnancy Category C.


Buprenorphine was not teratogenic in rats or rabbits after I.M. or S.C. doses up to 5 mg/kg/day (approximately 48 and 95 times the recommended human daily dose of 1.2 mg on a mg/m2 basis), I.V. doses up to 0.8 mg/kg/day (approximately 8 times and 15 times the recommended human daily dose of 1.2 mg on a mg/m2 basis), or oral doses up to 160 mg/kg/day in rats (approximately 1525 times the recommended human daily dose of 1.2 mg on a mg/m2 basis) and 25 mg/kg/day in rabbits (approximately 475 times the recommended human daily dose of 1.2 mg on a mg/m2 basis). Significant increases in skeletal abnormalities (e.g., extra thoracic vertebra or thoraco-Iumbar ribs) were noted in rats after S.C. administration of 1 mg/kg/day and up (approximately 9.5 times the recommended human daily dose of 1.2 mg on a mg/m2 basis) and in rabbits after I.M. administration of 5 mg/kg/day (approximately 95 times the recommended human daily dose of 1.2 mg on a mg/m2 basis), but these increases were not statistically significant. Increases in skeletal abnormalities after oral administration were not observed in rats, and increases in rabbits (1 to 25 mg/kg/day) were not statistically significant.


There are no adequate and well-controlled studies in pregnant women. Buprenorphine hydrochloride injection should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus.



Labor and Delivery


The safety of buprenorphine hydrochloride injection given during labor and delivery has not been established.



Nursing Mothers


An apparent lack of milk production during general reproduction studies with buprenorphine in rats caused decreased viability and lactation indices. Use of high doses of sublingual buprenorphine in pregnant women showed that buprenorphine passes into the mother's milk. Breast-feeding is therefore not advised in nursing mothers treated with buprenorphine hydrochloride injection.



Pediatric Use


The safety and effectiveness of buprenorphine hydrochloride injection have been established for children between 2 and 12 years of age. Use of buprenorphine hydrochloride injection in children is supported by evidence from adequate and well controlled trials of buprenorphine hydrochloride injection in adults, with additional data from studies of 960 children ranging in age from 9 months to 18 years of age. Data is available from a pharmacokinetic study, several controlled clinical trials, and several large post-marketing studies and case series. The available information provides reasonable evidence that buprenorphine hydrochloride injection may be used safely in children ranging from 2 to 12 years of age, and that it is of similar effectiveness in children as in adults.



ADVERSE REACTIONS


The most frequent side effect in clinical studies involving 1,133 patients was sedation which occurred in approximately two-thirds of the patients. Although sedated, these patients could easily be aroused to an alert state.



Other less frequent adverse reactions occurring in 5 to 10% of the patients were:




NauseaDizziness/Vertigo

Occurring in 1 to 5% of the patients:










SweatingHeadache
HypotensionNausea/Vomiting
VomitingHypoventilation
Miosis

The following adverse reactions were reported to have occurred in less than 1% of the patients:


CNS Effect: confusion, blurred vision, euphoria, weakness/fatigue, dry mouth, nervousness, depression, slurred speech, paresthesia.


Cardiovascular: hypertension, tachycardia, bradycardia.


Gastrointestinal: constipation.


Respiratory: dyspnea, cyanosis.


Dermatological: pruritus.


Ophthalmological: diplopia, visual abnormalities.


Miscellaneous: injection site reaction, urinary retention, dreaming, flushing/ warmth, chills/cold, tinnitus, conjunctivitis, Wenckebach block, and psychosis.


Other effects observed infrequently include malaise, hallucinations, depersonalization, coma, dyspepsia, flatulence, apnea, rash, amblyopia, tremor, and pallor.


The following reactions have been reported to occur rarely: loss of appetite, dysphoria/agitation, diarrhea, urticaria, and convulsions/lack of muscle coordination.


Allergic Reactions: Cases of acute and chronic hypersensitivity to buprenorphine have been reported both in clinical trials and in the post-marketing experience of buprenorphine hydrochloride injection and other buprenorphine-containing products. The most common signs and symptoms include rashes, hives, and pruritus. Cases of bronchospasm, angioneurotic edema, and anaphylactic shock have been reported. A history of hypersensitivity to buprenorphine is a contraindication to buprenorphine hydrochloride injection.


In the United Kingdom, buprenorphine hydrochloride was made available under monitored release regulation during the first year of sale, and yielded data from 1,736 physicians on 9,123 patients (17,120 administrations). Data on 240 children under the age of 18 years were included in this monitored release program. No important new adverse effects attributable to buprenorphine hydrochloride were observed.



DRUG ABUSE AND DEPENDENCE


Buprenorphine hydrochloride is a partial agonist of the morphine type, i.e., it has certain opioid properties which may lead to psychic dependence of the morphine type due to an opiate-like euphoric component of the drug. Direct dependence studies have shown little physical dependence upon withdrawal of the drug. However, caution should be used in prescribing to individuals who are known to be drug abusers or ex-narcotic addicts. The drug may not substitute in acutely dependent narcotic addicts due to its antagonist component and may induce withdrawal symptoms.



OVERDOSAGE



Manifestations:


Clinical experience with buprenorphine hydrochloride injection overdosage has been insufficient to define the signs of this condition at this time. Although the antagonist activity of buprenorphine may become manifest at doses somewhat above the recommended therapeutic range, doses in the recommended therapeutic range may produce clinically significant respiratory depression in certain circumstances. (See WARNINGS.)



Treatment:


The respiratory and cardiac status of the patients should be monitored carefully. Primary attention should be given to the reestablishment of adequate respiratory exchange through provision of a patent airway and institution of assisted or controlled ventilation. Oxygen, intravenous fluids, vasopressors, and other supportive measures should be employed as indicated. Doxapram, a respiratory stimulant, may be used.


NALOXONE MAY NOT BE EFFECTIVE IN REVERSING THE RESPIRATORY DEPRESSION PRODUCED BY BUPRENORPHINE HYDROCHLORIDE INJECTION. THEREFORE, AS WITH OTHER POTENT OPIOIDS, THE PRIMARY MANAGEMENT OF OVERDOSE SHOULD BE THE REESTABLISHMENT OF ADEQUATE VENTILATION WITH MECHANICAL ASSISTANCE OF RESPIRATION, IF REQUIRED.



DOSAGE AND ADMINISTRATION



Adults:


The usual dosage for persons 13 years of age and over is 1 mL buprenorphine hydrochloride injection (0.3 mg buprenorphine) given by deep intramuscular or slow (over at least 2 minutes) intravenous injection at up to 6-hour intervals, as needed. Repeat once (up to 0.3 mg) if required, 30 to 60 minutes after initial dosage, giving consideration to previous dose pharmacokinetics, and thereafter only as needed. In high-risk patients (e.g., elderly, debilitated, presence of respiratory disease, etc.) and/or in patients where other CNS depressants are present, such as in the immediate postoperative period, the dose should be reduced by approximately one-half.  Extra caution should be exercised with the intravenous route of administration, particularly with the initial dose.


Occasionally, it may be necessary to administer single doses of up to 0.6 mg to adults depending on the severity of the pain and the response of the patient. This dose should only be given I.M. and only to adult patients who are not in a high risk category (see WARNINGS and PRECAUTIONS). At this time, there are insufficient data to recommend single doses greater than 0.6 mg for long-term use.



Children:


Buprenorphine hydrochloride injection has been used in children 2 to 12 years of age at doses between 2 to 6 mcg/kg of body weight given every 4 to 6 hours. There is insufficient experience to recommend a dose in infants below the age of two years, single doses greater than 6 mcg/kg of body weight, or the use of a repeat or second dose at 30 to 60 minutes (such as is used in adults).  Since there is some evidence that not all children clear buprenorphine faster than adults, fixed interval or "round-the-clock" dosing should not be undertaken until the proper inter-dose interval has been established by clinical observation of the child. Physicians should recognize that, as with adults, some pediatric patients may not need to be remedicated for 6 to 8 hours.



Safety and Handling:


Buprenorphine hydrochloride injection is supplied in sealed vials and poses no known environmental risk to health care providers. Accidental dermal exposure should be treated by removal of any contaminated clothing and rinsing the affected area with water.


Buprenorphine hydrochloride injection is a potent narcotic, and like all drugs of this class has been associated with abuse and dependence among health care providers. To control the risk of diversion, it is recommended that measures appropriate to the health care setting be taken to provide rigid accounting, control of wastage, and restriction of access.


Parenteral drug products should be inspected visually for particulate matter and discoloration prior to administration, whenever solution and container permit.



HOW SUPPLIED


Buprenorphine hydrochloride injection, 0.3 mg (Base)/mL, is supplied in amber glass vials of 1 mL.

NDC 0517-0725-05; carton of 5 vials.


Avoid excessive heat (over 104°F or 40°C). Protect from prolonged exposure to light.


DISCARD UNUSED PORTION.


Store at 20° to 25°C (68° to 77°F) (See USP Controlled Room Temperature)


AMERICAN

REGENT, INC.

SHIRLEY, NY 11967


Revised December 2009



PACKAGE LABEL.PRINCIPAL DISPLAY PANEL


PRINCIPAL DISPLAY PANEL - 1 mL Label


NDC 0517-0725-01


BUPRENORPHINE

HYDROCHLORIDE

INJECTION


0.3 mg (base)/mL


1 mL VIAL


FOR IM OR IV USE


Protect From Light


Rx Only



PRINCIPAL DISPLAY PANEL - 1 mL Carton


NDC 0517-0725-05


CIII


5 x 1 mL Vials


BUPRENORPHINE HYDROCHLORIDE

INJECTION


0.3 mg (base)/mL


FOR INTRAMUSCULAR OR INTRAVENOUS USE


Rx Only










BUPRENORPHINE HYDROCHLORIDE 
buprenorphine hydrochloride  injection, solution










Product Information
Product TypeHUMAN PRESCRIPTION DRUGNDC Product Code (Source)0517-0725
Route of AdministrationINTRAVENOUS, INTRAMUSCULARDEA ScheduleCIII    








Active Ingredient/Active Moiety
Ingredient NameBasis of StrengthStrength
BUPRENORPHINE HYDROCHLORIDE (BUPRENORPHINE)BUPRENORPHINE HYDROCHLORIDE0.324 mg  in 1 mL










Inactive Ingredients
Ingredient NameStrength
DEXTROSE50 mg  in 1 mL
HYDROCHLORIC ACID 
WATER 


















Product Characteristics
Color    Score    
ShapeSize
FlavorImprint Code
Contains      














Packaging
#NDCPackage DescriptionMultilevel Packaging
10517-0725-055 VIAL In 1 CARTONcontains a VIAL (0517-0725-01)
10517-0725-011 mL In 1 VIALThis package is contained within the CARTON (0517-0725-05)










Marketing Information
Marketing CategoryApplication Number or Monograph CitationMarketing Start DateMarketing End Date
ANDAANDA07833108/13/2010


Labeler - American Regent, Inc. (622781813)
Revised: 08/2010American Regent, Inc.

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Eurax Lotion





1. Name Of The Medicinal Product



Eurax® Lotion


2. Qualitative And Quantitative Composition



Active ingredient: Crotamiton 10.00%



3. Pharmaceutical Form



Topical Emulsion



4. Clinical Particulars



4.1 Therapeutic Indications



1. For the relief of itching and skin irritation caused by, for example sunburn, dry eczema, itchy dermatitis, allergic rashes, hives, nettle rash, chickenpox, insect bites and stings, heat rashes and personal itching.



2. The treatment of scabies.



4.2 Posology And Method Of Administration



For cutaneous use.



Recommended dose and dosage schedules



Pruritus



Adults (including the elderly) and children:



Apply to the affected area 2-3 times daily. Eurax Lotion will provide relief from irritation for 6-10 hours after each application. Eurax Lotion can be used in children. There are no special dosage recommendations in the elderly.



Scabies



Adults (including the elderly):



After the patient has taken a warm bath, the skin should be well dried and Eurax Lotion rubbed into the entire body surface (excluding the face and scalp) until no traces of the preparation remain visible on the surface. The application should be repeated once daily, preferably in the evening, for a total of 3-5 days. Depending on the response, special attention should be paid to sites that are particularly susceptibly to infestation by the mites (eg interdigital spaces, wrists, axillae and genitalia). Areas where there is pus formation should be covered with a dressing impregnated with Eurax Lotion. While the treatment is in progress the patient may take a bath shortly before the next application. After completion of the treatment, a cleansing bath should be taken followed by a change of bed linen and underclothing.



Children:



Application as described for adults but in children under 3 years of age Eurax Lotion should not be applied more than once a day.



4.3 Contraindications



Acute exudative dermatoses. Hypersensitivity to any of the ingredients. Eurax Lotion should not be used in or around the eyes since contact with the eyelids may give rise to conjunctival inflammation.



4.4 Special Warnings And Precautions For Use



Eurax Lotion can be used for children; consult your doctor before use on children under 3 years of age.



For external use only.



Do not use in or around the eyes, on broken skin, for weeping skin conditions or if you are sensitive to any of the ingredients.



Keep all medicines out of the reach of children.



Consult your doctor or pharmacist before using Eurax Lotion if you are pregnant or breast feeding, or suffering from genital itching.



If symptoms persist consult your doctor.



4.5 Interaction With Other Medicinal Products And Other Forms Of Interaction



None.



4.6 Pregnancy And Lactation



There is no experience to judge the safety of Eurax Lotion in pregnancy, therefore Eurax Lotion is not recommended during pregnancy, especially in the first three months. It is not known whether the active substance passes into breast milk. Nursing mothers should avoid applying Eurax Lotion in the area of the nipples.



4.7 Effects On Ability To Drive And Use Machines



None.



4.8 Undesirable Effects



Occasionally irritation of the skin or contact allergy may occur. In such cases the preparation should be discontinued.



4.9 Overdose



Eurax Lotion is for application to the skin only. Following accidental ingestion, nausea, vomiting and irritation of the buccal, oesophageal and gastric mucosa have been reported. If accidental ingestion of large quantities occurs, there is no specific antidote and general measures to eliminate the drug and reduce its absorption should be undertaken. Symptomatic treatment should be administered as appropriate. A risk of methaemoglobinaemia exists, which may be treated with methylene blue.



5. Pharmacological Properties



5.1 Pharmacodynamic Properties



Eurax Lotion has a symptomatic action on pruritus and is an acaricide.



5.2 Pharmacokinetic Properties



Eurax Lotion penetrates rapidly into human skin. Low but measurable concentrations of crotamiton are found in plasma, with a maximum level after 4-10 hours, declining rapidly thereafter.



5.3 Preclinical Safety Data



Eurax Lotion administered dermally once daily under occlusive dressing for 3 months to rabbits was tolerated at doses of up to 250mg/kg without signs of toxicity, apart from transient skin irritation. No sensitising or photo-sensitising potential has been observed in animal studies.



Crotamiton does not induce mutations in bacteria nor chromosomal damage in mammalian cells. Studies to detect a possible effect on fertility and reproductive behaviour also gave negative results.



6. Pharmaceutical Particulars



6.1 List Of Excipients



Glyceryl monostearate NSE



Cetomacrogol 1000



Eutanol G



Lanette N



Sorbic acid



Citric acid monohydrate



Phenylethyl alcohol



Propylene glycol



Perfume Givaudan No 45



Purified water



6.2 Incompatibilities



None.



6.3 Shelf Life



3 years



6.4 Special Precautions For Storage



Protect from heat.



6.5 Nature And Contents Of Container



Amber glass bottle with cap-to-cap closure in cardboard carton.



Pack sizes 50, 100, 150 and 1000ml



Amber glass bottle with a tamper evident cap made of polypropylene in cardboard carton.



Pack sizes 50, 100, 150 and 1000ml



6.6 Special Precautions For Disposal And Other Handling



Medicines should be kept out of the reach of children.



7. Marketing Authorisation Holder



Novartis Consumer Health UK Limited



T/A Novartis Consumer Health



Wimblehurst Road



Horsham



West Sussex



RH12 5AB



8. Marketing Authorisation Number(S)



PL 00030/0095



9. Date Of First Authorisation/Renewal Of The Authorisation



1 September 1997



10. Date Of Revision Of The Text



07 July 2010



Legal category: GSL