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XYLOCAINE MPF

lidocaine hydrochloride · Injection, Solution

Prescription NDA TE AP RLD Official labelling
Informational index, not medical advice. Content is reproduced from public FDA and NLM data. Always confirm against the manufacturer's current prescribing information. Report adverse events to FDA MedWatch.

Overview

Brand name
XYLOCAINE MPF
Generic name
lidocaine hydrochloride
Dosage form
Injection, Solution
Route
Infiltration
Marketing category
NDA · NDA
Labeler
HF Acquisition Co LLC, DBA HealthFirst
Product type
Human Prescription Drug
DEA schedule
Not scheduled
Active ingredients
2
NDC product codes
3
Packages
3
Data completeness
77% of corroborating sources present

Active ingredients

Source: NDC Directory
Active ingredients and strengths as listed in the NDC Directory.
Ingredient Strength RxCUI Monograph
Lidocaine Hydrochloride Anhydrous 10 mg/mL 2595042 View
Lidocaine Hydrochloride Anhydrous 5 mg/mL 2595042 View

Forms, strengths and routes

Source: NDC Directory
Dosage form
Injection, Solution
Route of administration
Infiltration
Presentations
6

Pharmacologic classes are listed in the class section below.

Pharmacologic class

Source: NDC Directory
Established pharmacologic classes (EPC), mechanisms of action (MoA), chemical structures (CS) and physiologic effects (PE).
Class Type Browse
Amide Local Anesthetic [EPC] EPC All 47 members
Amides [CS] CS All 47 members
Antiarrhythmic [EPC] EPC All 48 members
Local Anesthesia [PE] PE All 53 members

Regulatory status

Source: Drugs@FDANDC Directory
Application number
006488
Application type
NDA · New Drug Application
Approval date
November 19, 1948
Sponsor
FRESENIUS KABI USA
Products on application
11
Submissions recorded
76
Products approved under application 006488.
Product Trade name Form Strength Ingredient Status TE Flags
006488-002 XYLOCAINE INJECTABLE LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-003 XYLOCAINE W/ EPINEPHRINE INJECTABLE EPINEPHRINE; LIDOCAINE HYDROCHLORIDE Discontinued — RLD
006488-004 XYLOCAINE W/ EPINEPHRINE INJECTABLE EPINEPHRINE; LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-005 XYLOCAINE W/ EPINEPHRINE INJECTABLE EPINEPHRINE; LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-007 XYLOCAINE INJECTABLE LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-008 XYLOCAINE INJECTABLE LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-010 XYLOCAINE INJECTABLE LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-012 XYLOCAINE W/ EPINEPHRINE INJECTABLE EPINEPHRINE; LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-017 XYLOCAINE W/ EPINEPHRINE INJECTABLE EPINEPHRINE; LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS
006488-018 XYLOCAINE W/ EPINEPHRINE INJECTABLE EPINEPHRINE; LIDOCAINE HYDROCHLORIDE Prescription — RLD RS
006488-019 XYLOCAINE W/ EPINEPHRINE INJECTABLE EPINEPHRINE; LIDOCAINE HYDROCHLORIDE Prescription AP RLD RS

Therapeutic equivalence

Source: Orange Book
TE code
AP
Reference Listed Drug
Yes
Reference Standard
Yes

What this rating means: Therapeutically equivalent — bioequivalence demonstrated (parenteral aqueous solutions)

Codes beginning with “A” indicate products the FDA considers therapeutically equivalent. Codes beginning with “B” indicate bioequivalence has not been established. See methodology.

Approval history

Source: Drugs@FDA
Most recent submissions on application 006488.
Type No. Action Status Date Review
Supplement 100 Labeling Approved October 30, 2024 Standard
Supplement 97 Labeling Approved November 2, 2018 Standard
Supplement 95 Manufacturing (CMC) Approved December 22, 2017 Standard
Supplement 90 Labeling Approved December 22, 2017 Standard
Supplement 91 Manufacturing (CMC) Approved March 17, 2016 —
Supplement 89 Manufacturing (CMC) Approved March 3, 2015 —
Supplement 88 Manufacturing (CMC) Approved December 26, 2013 —
Supplement 79 Manufacturing (CMC) Approved October 29, 2013 —
Supplement 87 Manufacturing (CMC) Approved July 22, 2013 —
Supplement 76 Manufacturing (CMC) Approved June 11, 2013 —
Supplement 78 Manufacturing (CMC) Approved April 9, 2013 —
Supplement 84 Labeling Approved March 28, 2013 Standard
Supplement 86 Manufacturing (CMC) Approved February 20, 2013 —
Supplement 83 Manufacturing (CMC) Approved February 16, 2013 —
Supplement 85 Manufacturing (CMC) Approved February 13, 2013 —
Supplement 74 Labeling Approved February 19, 2010 901 Required
Supplement 66 Manufacturing (CMC) Approved July 17, 2002 —
Supplement 64 Manufacturing (CMC) Approved December 14, 2000 —
Supplement 65 Manufacturing (CMC) Approved December 8, 2000 —
Supplement 61 Labeling Approved May 26, 1999 Standard
Supplement 62 Manufacturing (CMC) Approved March 6, 1998 —
Supplement 57 Manufacturing (CMC) Approved December 8, 1997 —
Supplement 59 Manufacturing (CMC) Approved May 31, 1996 —
Supplement 60 Manufacturing (CMC) Approved May 2, 1996 —
Supplement 58 Manufacturing (CMC) Approved January 3, 1996 —
Supplement 56 Manufacturing (CMC) Approved July 18, 1995 —
Supplement 55 Manufacturing (CMC) Approved July 11, 1995 —
Supplement 54 Manufacturing (CMC) Approved November 21, 1994 —
Supplement 51 Manufacturing (CMC) Approved October 20, 1993 —
Supplement 53 Manufacturing (CMC) Approved April 13, 1993 —
Supplement 52 Manufacturing (CMC) Approved February 18, 1993 —
Supplement 36 Labeling Approved March 21, 1991 —
Supplement 35 Manufacturing (CMC) Approved March 21, 1991 —
Supplement 50 Manufacturing (CMC) Approved October 2, 1990 —
Supplement 49 Manufacturing (CMC) Approved July 11, 1989 —
Supplement 48 Labeling Approved December 2, 1988 —
Supplement 47 Manufacturing (CMC) Approved December 2, 1988 —
Supplement 43 Manufacturing (CMC) Approved September 16, 1987 —
Supplement 46 Labeling Approved September 11, 1987 —
Supplement 45 Manufacturing (CMC) Approved September 11, 1987 —
Supplement 44 Labeling Approved March 18, 1987 —
Supplement 38 Labeling Approved November 13, 1986 —
Supplement 37 Manufacturing (CMC) Approved November 13, 1986 —
Supplement 40 Labeling Approved August 29, 1986 —
Supplement 39 Manufacturing (CMC) Approved August 29, 1986 —
Supplement 42 Labeling Approved May 19, 1986 —
Supplement 41 Labeling Approved February 27, 1986 —
Supplement 29 Labeling Approved February 22, 1986 —
Supplement 28 Manufacturing (CMC) Approved February 22, 1986 —
Supplement 34 Labeling Approved March 22, 1985 —
Supplement 33 Manufacturing (CMC) Approved March 22, 1985 —
Supplement 27 Labeling Approved December 12, 1984 —
Supplement 32 Labeling Approved December 3, 1984 —
Supplement 25 Labeling Approved July 26, 1982 —
Supplement 24 Manufacturing (CMC) Approved July 26, 1982 —
Supplement 31 Manufacturing (CMC) Approved June 28, 1982 —
Supplement 30 Manufacturing (CMC) Approved March 25, 1982 —
Supplement 26 Labeling Approved October 1, 1981 —
Supplement 23 Manufacturing (CMC) Approved October 1, 1981 —
Supplement 20 Labeling Approved December 31, 1980 —

Review documents

  • 0 · Supplement · December 2, 2024
  • 0 · Supplement · November 1, 2024
  • 0 · Supplement · February 1, 2019
  • 0 · Supplement · November 6, 2018
  • 0 · Supplement · November 2, 2018
  • 0 · Supplement · January 12, 2018
  • 0 · Supplement · January 12, 2018
  • 0 · Supplement · December 29, 2017
  • 0 · Supplement · December 29, 2017
  • 0 · Supplement · January 27, 2012
  • 0 · Supplement · March 18, 2010
  • 0 · Supplement · February 25, 2010

Prescribing information

Source: openFDA Drug Labeling

Reproduced verbatim from the Structured Product Labeling submitted to the FDA (effective 20260902). This is the manufacturer's labelling text, not a summary and not advice.

HUMAN PRESCRIPTION DRUG · 20260902 HUMAN PRESCRIPTION DRUG · 20240514

Indications and Usage

openFDA Drug Labeling

Xylocaine (lidocaine HCl) Injections are 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.

Dosage and Administration

openFDA Drug Labeling

Table 1 (Recommended Dosages) summarizes the recommended volumes and concentrations of Xylocaine Injection 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. Xylocaine 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 the 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 Xylocaine 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 Xylocaine Injection may result in a more profound fall in blood pressure when used in epidural anesthesia. Although the incidence of side effects with lidocaine HCl 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 Xylocaine (lidocaine HCl) 0.5% Injection should be used. Epidural Anesthesia For epidural anesthesia, only the following dosage forms of Xylocaine Injection are recommended: 1% without epinephrine 10 mL Plastic Ampule 1% without epinephrine 30 mL single dose solutions 1% with epinephrine 1:200,000 30 mL single dose solutions 1.5% without epinephrine 10 mL Plastic Ampule 1.5% without epinephrine 20 mL Plastic Ampule 1.5% with epinephrine 1:200,000 30 mL ampules, 30 mL single dose solutions 2% without epinephrine 10 mL Plastic Ampule 2% with epinephrine 1:200,000 20 mL ampules, 20 mL single dose solutions 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 to 3 mL of the indicated concentration per dermatome). Caudal and Lumbar Epidural Block As a precaution against the adverse experience sometimes observed following unintentional penetration of the subarachnoid space, a test dose such as 2 to 3 mL of 1.5% lidocaine HCl 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 to 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 i …

Contraindications

openFDA Drug Labeling

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

XYLOCAINE INJECTIONS 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. Methemoglobinemia Cases of methemoglobinemia have been reported in association with local anesthetic use. Although all patients are at risk for methemoglobinemia, patients with glucose-6-phosphate dehydrogenase deficiency, congenital or idiopathic methemoglobinemia, cardiac or pulmonary compromise, infants under 6 months of age, and concurrent exposure to oxidizing agents or their metabolites are more susceptible to developing clinical manifestations of the condition. If local anesthetics must be used in these patients, close monitoring for symptoms and signs of methemoglobinemia is recommended. Signs of methemoglobinemia may occur immediately or may be delayed some hours after exposure, and are characterized by a cyanotic skin discoloration and/or abnormal coloration of the blood. Methemoglobin levels may continue to rise; therefore, immediate treatment is required to avert more serious central nervous system and cardiovascular adverse effects, including seizures, coma, arrhythmias, and death. Discontinue Xylocaine and any other oxidizing agents. Depending on the severity of the signs and symptoms, patients may respond to supportive care, i.e., oxygen therapy, hydration. A more severe clinical presentation may require treatment with methylene blue, exchange transfusion, or hyperbaric oxygen. 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. Xylocaine with epinephrine solutions contain sodium metabisulfite, a sulfite that may cause allergic-type reactions including anaphylactic symptoms and life-threatening or less severe asthmatic episodes in certain susceptible people. The overall prevalence of sulfite sensitivity in the general population is unknown and probably low. Sulfite sensitivity is seen more frequently in asthmatic than in non-ast …

Adverse Reactions

openFDA Drug Labeling

To report SUSPECTED ADVERSE REACTIONS, contact Fresenius Kabi USA, LLC at 1-800-551-7176 or FDA at 1-800-FDA-1088 or www.fda.gov/medwatch. Systemic Adverse experiences following the administration of lidocaine HCl 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 HCl 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 the multiple dose vials. Allergic reactions, including anaphylactic reactions, may occur as a result of sensitivity to lidocaine, but are infrequent. If allergic reactions do occur, they should be managed by conventional means. The detection of sensitivity by skin testing is of doubtful value. There have been no reports of cross sensitivity between lidocaine hydrochloride and procainamide or between lidocaine hydrochloride and quinidine. 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 HCl 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. H …

Description

openFDA Drug Labeling

Xylocaine (lidocaine HCl) Injections are sterile, nonpyrogenic, aqueous solutions that contain a local anesthetic agent with or without epinephrine and are administered parenterally by injection. See INDICATIONS AND USAGE section for specific uses. Xylocaine solutions contain lidocaine HCl, which is chemically designated as acetamide, 2-(diethylamino)-N-(2,6-dimethylphenyl)-, monohydrochloride and has the molecular wt. 270.8. Lidocaine HCl (C14H22N2O • HCl) has the following structural formula: Epinephrine is (-) -3, 4-Dihydroxy-α-[(methylamino) methyl] benzyl alcohol and has the molecular wt. 183.21. Epinephrine (C9H13NO3) has the following structural formula: Dosage forms listed as Xylocaine-MPF indicate single dose solutions that are Methyl Paraben Free (MPF). Xylocaine MPF is a sterile, nonpyrogenic, isotonic solution containing sodium chloride. Xylocaine in multiple dose vials: Each mL also contains 1 mg methyl­paraben as antiseptic preservative. The pH of these solutions is adjusted to approximately 6.5 (5.0 to 7.0) with sodium hydroxide and/or hydrochloric acid. Xylocaine MPF with Epinephrine is a sterile, nonpyrogenic, isotonic solution containing sodium chloride. Each mL contains lidocaine hydrochloride and epinephrine, with 0.5 mg sodium metabisulfite as an antioxidant and 0.2 mg citric acid as a stabilizer. Xylocaine with Epinephrine in multiple dose vials: Each mL also contains 1 mg methylparaben as antiseptic preservative. The pH of these solutions is adjusted to approximately 4.5 (3.3 to 5.5) with sodium hydroxide and/or hydrochloric acid. Filled under nitrogen. structure structure

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

How Supplied / Storage and Handling

openFDA Drug Labeling

NDC 51662-1644-1 300 mg per 30 mL 30 mL Single Dose Vial (10 mg per mL) For single-dose vials and ampules: Discard unused portion. All solutions should be stored at 20° to 25°C (68° to 77°F) [see USP Controlled Room Temperature]. Protect from light. Distributed by: HF Acquisition Co LLC dba HealthFirst 11629 49th PL W, Mukilteo, WA 98275

Adverse event reports

Source: openFDA FAERS
6,784
FAERS reports mentioning this drug
as of 2026-09-25T03:42:24+00:00
A report count is not a risk measure. FAERS accepts voluntary and mandatory reports without establishing causation, and reporting is influenced by how widely a drug is used, how long it has been marketed, and media attention. FDA states that reports “do not prove that the drug caused the event”. Compare rates, not totals.

Attributed to this product's most-reported active ingredient: LIDOCAINE HYDROCHLORIDE ANHYDROUS. Combination products with more than six active ingredients are not attributed, because a report count summed across a long ingredient list measures the list, not the medicine.

Shortages

Source: FDA Drug Shortages
Availability records from the FDA Drug Shortages database.
Status Availability Company Presentation Updated
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, 20 mg/1 mL (NDC 63323-495-07) September 15, 2026
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, 10 mg/1 mL (NDC 63323-492-27) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, 10 mg/1 mL (NDC 63323-492-57) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, .005 mg/1 mL; 15 mg/1 mL (NDC 63323-488-37) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, .005 mg/1 mL; 10 mg/1 mL (NDC 63323-487-17) September 15, 2026
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, 20 mg/1 mL (NDC 63323-496-97) September 15, 2026
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, 10 mg/1 mL (NDC 63323-492-31) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, 20 mg/1 mL (NDC 63323-495-27) September 15, 2026
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, .005 mg/1 mL; 20 mg/1 mL (NDC 63323-489-27) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, 5 mg/1 mL (NDC 63323-491-57) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, .005 mg/1 mL; 20 mg/1 mL (NDC 63323-489-17) September 15, 2026
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, 15 mg/1 mL (NDC 63323-493-97) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, .005 mg/1 mL; 10 mg/1 mL (NDC 63323-487-37) September 15, 2026
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, .005 mg/1 mL; 15 mg/1 mL (NDC 63323-488-17) September 15, 2026
Current Unavailable Fresenius Kabi USA, LLC Xylocaine, Injection, 15 mg/1 mL (NDC 63323-493-91) September 15, 2026
Current Available Fresenius Kabi USA, LLC Xylocaine, Injection, 10 mg/1 mL (NDC 63323-492-37) September 15, 2026

Packaging and NDCs

Source: NDC Directory
Every National Drug Code package associated with this medication. The NDC is the identifier used for dispensing, billing and pharmacovigilance in the United States.
Package NDC Product NDC Labeler Description Marketing start
51662-1644-1 51662-1644 HF Acquisition Co LLC, DBA HealthFirst 30 mL in 1 VIAL, SINGLE-DOSE (51662-1644-1) August 12, 2010
51662-1653-1 51662-1653 HF Acquisition Co LLC, DBA HealthFirst 50 mL in 1 VIAL, SINGLE-DOSE (51662-1653-1) August 12, 2010
51662-1654-1 51662-1654 HF Acquisition Co LLC, DBA HealthFirst 5 mL in 1 VIAL, SINGLE-DOSE (51662-1654-1) August 12, 2010
51662-1644 51662-1644 HF Acquisition Co LLC, DBA HealthFirst — August 12, 2010
51662-1653 51662-1653 HF Acquisition Co LLC, DBA HealthFirst — August 12, 2010
51662-1654 51662-1654 HF Acquisition Co LLC, DBA HealthFirst — August 12, 2010

Sources for this page

Every dataset that contributed a fact to this page.
Dataset Agency Used for
NDC Directory FDA Identity, ingredients, strengths, forms, routes, labelers, packages
Drugs@FDA FDA Application, sponsor, submissions, review documents, marketing status
Orange Book FDA Therapeutic equivalence codes, reference drug flags, patents, exclusivity
Drug Labeling FDA / NLM Prescribing information reproduced above
FAERS FDA Adverse event report counts
Drug Shortages FDA Supply availability

Generated September 25, 2026 · 12 sections on this page.