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Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL Suspension — NDC 17856-0496-8 (Billing 17856-0496-08)

by ATLANTIC BIOLOGICALS CORP. · 48 SYRINGE in 1 CASE / 10 mL in 1 SYRINGE

This is a package of Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL Suspension from ATLANTIC BIOLOGICALS CORP., marketed since Oct 2017 and currently FDA-listed.

NDC 17856-0496-08
🏷️ FDA NDC (as labeled) 17856-0496-8 billing pads the package segment with a zero
This package
Contains10 mL in 1 syringe Pack sizes6 compare ↓
Rx only Generic On market Non-controlled ⇄ Compare with another NDC
🗂️ FDA directory synced Oct 1, 2026 · this listing last changed Oct 1, 2026 · sources: openFDA · FDA label (DailyMed) · FDA Orange & Purple Book · First Databank · CMS NADAC, ASP, Medicare & Medicaid · RxNorm
📋 All sources & update times →
⚠️
Other active recalls for Sulfamethoxazole And Trimethoprim (different manufacturers) — 5 · tap to view
These affect other manufacturers’ products for the same ingredient — not necessarily the exact NDC on this page.
Class II · Sep 2, 2025 — Presence of a Foreign Substance: A specific lot of auxiliary polyester coil, used in product packaging by manufacturer (Amneal Pharmaceuticals LLC) was detected with presence of a micro-organism. No micro-organism was detected on any tablets. (The Harvard Drug Group LLC dba Major Pharmaceuticals and Rugby Laboratories) · FDA recall D-0625-2025
Class II · Sep 2, 2025 — Presence of a Foreign Substance: A specific lot of auxiliary polyester coil, used in product packaging by manufacturer (Amneal Pharmaceuticals LLC) was detected with presence of a micro-organism. No micro-organism was detected on any tablets. (The Harvard Drug Group LLC dba Major Pharmaceuticals and Rugby Laboratories) · FDA recall D-0624-2025
Class II · Aug 20, 2025 — Presence of a Foreign Substance: A specific lot of auxiliary polyester coil, used in product packaging by manufacturer (Amneal Pharmaceuticals LLC) was detected with presence of a micro-organism. No micro-organism was detected on any tablets. (Northwind Pharmaceuticals LLC) · FDA recall D-0654-2025
Class II · Aug 18, 2025 — Presence of a foreign substance.A specific lot of auxiliary polyester coil, used in product packaging was detected with presence of a micro-organism. No micro-organism was detected on any tablets. (Amneal Pharmaceuticals, LLC) · FDA recall D-0615-2025
Class I · Jun 2, 2025 — Microbial contamination of non-sterile products: tablets may exhibit black spots due to microbial contamination. (Amneal Pharmaceuticals, LLC) · FDA recall D-0488-2025
Each entry is an official FDA enforcement report — look up any recall number in the FDA recall database ↗

Identity & classification

Regulatory identifiers FDA, NLM and CMS codes for this package

FDA NDC (as labeled) 17856-0496-8
Product NDC 17856-0496
11-digit billing NDC 17856049608
RxCUI 313134
UNII JE42381TNV, AN164J8Y0X
Application # ANDA091348
SPL Set ID acc3df02-1e99-46e6-8a31-9b26261c6daa
Established class (EPC) Sulfonamide Antimicrobial; Dihydrofolate Reductase Inhibitor Antibacterial
Mechanism of action Cytochrome P450 2C9 Inhibitors; Dihydrofolate Reductase Inhibitors; Cytochrome P450 2C8 Inhibitors; Organic Cation Transporter 2 Inhibitors
Chemical class Sulfonamides
DEA schedule Non-controlled
Marketing category ANDA
Marketing status On market
FDA listing status Listed (active directory)
Marketing start 2017-10-04
Route ORAL
Dosage form SUSPENSION
Substance SULFAMETHOXAZOLE; TRIMETHOPRIM
TE code (Orange Book) AB · RLD · RS
Quick answers
  • RxCUI (RxNorm): 313134
Why two NDCs? The FDA registers this code as 17856-0496-8 — a 5-4-1 layout, and that's what's printed on the package and shown on DailyMed. For insurance claims, every NDC is standardized to a uniform 11-digit 5-4-2 format by adding a zero to the package segment → 17856-0496-08. Same drug, same package — only the format differs.
Where does this data come from?
Identifiers from the FDA openFDA NDC Directory and Structured Product Labeling; RxCUI from RxNorm (NLM); GPI from Medi-Span; GCN / HIC / AHFS / legend from First Databank.

RxNorm drug class

This medicine belongs to the Sulfonamide Antimicrobial class.

Pharmacologic class Sulfonamide Antimicrobial
Drug family (ATC) Intermediate-acting sulfonamides
How it works Cytochrome P450 2C9 Inhibitors
Where does this data come from?
Therapeutic classes from RxNorm RxClass (U.S. National Library of Medicine) — Established Pharmacologic Class (FDA), ATC drug family (WHO) and mechanism of action, matched by this product’s RxCUI.

Clinical

📗 Our plain-language guide HelloPharmacist
  • It’s an antibiotic combination used for infections like urinary tract infections, shigellosis and Pneumocystis pneumonia. The tablets and liquid are also used for children’s ear in...
  • Tablets and liquid are taken by mouth, usually every 12 hours. Follow the length of treatment your doctor gave you, since it varies by infection. Drinking enough fluids helps prote...
  • Nausea, vomiting, poor appetite and mild rash or hives are the most common. Call your doctor about any rash, since it can be the first sign of something serious.
  • Stop the medicine and get help for a spreading rash, blistering, fever, sore throat, cough, trouble breathing, chest pain, unusual bruising, or yellow skin or eyes. Also call about...
📖 Read our full Sulfamethoxazole / Trimethoprim guide →
Where does this data come from?
Plain-language summary from MedlinePlus (U.S. National Library of Medicine); supplement & herbal interactions and nutrient depletion data from the Natural Medicines database; our full guide is HelloPharmacist editorial content.

Pricing

A drug doesn't have one price. Each row is a different public payment system, and none is what you'd pay at the counter — that depends on your insurance. The ⓘ on each row explains what it measures.

Price systemPer mLPer package
Retail pharmacies payNADAC · weekly Not in the retail survey — common for institutional, discontinued, or low-volume packs.
Medicaid paysCMS SDUD · 12 mo No recent Medicaid claims on file for this NDC — rare and low-volume NDCs are suppressed in the public data.
Medicare drug plans payPart D · quarterly No Part D plan price is available for this NDC in our data.
ℹ️
No price is published for this exact package yet. CMS surveys NADAC per package size, so a different pack of the same drug often has one.
Try another pack size: 48 syringes 48 cups 50 cups 72 cups 72 cups
Where does this data come from?
NADAC (National Average Drug Acquisition Cost) is the CMS weekly pharmacy-acquisition-cost survey — what pharmacies pay. ASP (Average Sales Price) is the CMS Medicare Part B drug-payment file, published quarterly. Medicaid pays is computed by us from CMS State Drug Utilization Data (total reimbursed ÷ units, trailing 12 months) — gross of rebates and inclusive of dispensing fees, so it reflects what Medicaid paid, not an acquisition cost. Medicare drug plans pay is the median negotiated point-of-sale unit cost across plans listing this NDC in the CMS quarterly Prescription Drug Plan pricing files, before rebates. The VA pays is the federal contract price (FSS, and the statutory Big 4 ceiling where listed) from the VA National Acquisition Center pharmaceutical price file. All are free public government data; each measures a different payer, so the figures are not directly comparable.

Packaging — all sizes for this product

Package NDCDescription Marketing startMarketing endStatus
17856-0496-04 17856-0496-4 Main listing 72 CUP, UNIT-DOSE in 1 BOX / 5 mL in 1 CUP, UNIT-DOSE 2022-07-08 — Active
17856-0496-05 17856-0496-5 50 CUP, UNIT-DOSE in 1 BOX / 20 mL in 1 CUP, UNIT-DOSE 2022-07-08 — Active
17856-0496-06 17856-0496-6 72 CUP, UNIT-DOSE in 1 BOX / 10 mL in 1 CUP, UNIT-DOSE 2022-07-08 — Active
17856-0496-07 17856-0496-7 48 SYRINGE in 1 CASE / 5 mL in 1 SYRINGE 2026-08-05 — Active
17856-0496-08 You're viewing this 48 SYRINGE in 1 CASE / 10 mL in 1 SYRINGE 2026-08-05 — Active
17856-0496-09 17856-0496-9 48 CUP, UNIT-DOSE in 1 CASE / 20 mL in 1 CUP, UNIT-DOSE 2026-08-25 — Active

Pack size FAQ

What quantity is in this package?
This package is listed by the FDA — 48 syringe in 1 case / 10 ml in 1 syringe.
What NDC number is used to bill for this package of Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL Suspension?
Use the 11-digit billing form listed in the identifiers section of this page. Pharmacy and medical claims use the 11-digit form; the FDA label may print a shorter form of the same code.

Therapeutic equivalents

ProductLabelerPackNADAC/unitTEStatusPrice vs. this
Sulfatrim 200 mg/5mL; 40 mg/5mL 00121-0854-16 PAI 473 ml $0.056 — Availability likely —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 62135-0749-47 Chartwell 473 ml $0.056 AB Availability likely —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 66993-0727-57 Prasco 473 ml $0.056 AB Availability likely —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 70954-0258-10 ANI 473 ml $0.056 AB Availability likely —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 00121-0853-00 PAI 10 cups — — FDA listed —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mLthis 17856-0496-08 ATLANTIC 48 syringes — AB FDA listed —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 50090-0525-00 A-S 473 ml — AB FDA listed —
Sulfatrim 200 mg/5mL; 40 mg/5mL 50090-7836-00 A-S 473 ml — — FDA listed —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 60687-0442-75 American 10 cups — AB FDA listed —
Sulfamethoxazole and Trimethoprim 800 mg/20mL; 160 mg/20mL 62135-0873-24 Chartwell 10 cups — AB FDA listed —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 65862-0496-01 Aurobindo 100 ml — AB FDA listed —
Sulfatrim 200 mg/5mL; 40 mg/5mL 67296-1657-01 RedPharm 100 ml — — Discontinued —
Sulfatrim 200 mg/5mL; 40 mg/5mL 68788-7345-04 Preferred 473 ml — — FDA listed —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 68788-8607-04 Preferred 473 ml — AB FDA listed —
Sulfamethoxazole and Trimethoprim 800 mg/20mL; 160 mg/20mL 68999-0873-24 Chartwell 10 cups — AB FDA listed —
Sulfamethoxazole and Trimethoprim 200 mg/5mL; 40 mg/5mL 81033-0012-40 Kesin 40 cups — AB FDA listed —
About this product: this is a generic version of the medicine. FDA equivalence ratings are shown when available, and other versions are listed above, least expensive first.
Where does this data come from?
Equivalents are other NDCs of the same ingredient, form and route from the openFDA NDC Directory, ranked least-expensive-first by NADAC. Therapeutic-equivalence (AB) ratings come from the FDA Orange Book; biologics use the FDA Purple Book for biosimilar & interchangeable status.

Availability & generic status

🏛️
2017
On the market since
Oct 2017
📍
2026
Currently FDA-listed
9 years listed
🔓
·
Generic on the market
this product is a generic
✅This is a generic drug

This product is an FDA-approved generic. Other versions of the same drug are listed under Therapeutic equivalents, least expensive first.

Where does this data come from?
Patents and exclusivity from the FDA Orange Book (small-molecule drugs), refreshed from public FDA data. Generic launch timing is an estimate, not a guarantee.

What it looks like

Color pink
FlavorCherry
One label can cover several strengths, so colors may be combined — always confirm a loose pill against the dispensed prescription label or a pharmacist.
Where does this data come from?
Physical description (imprint, shape, color, scoring, coating) from this product’s FDA Structured Product Labeling (SPL), mirrored from DailyMed / openFDA.

Inactive Ingredients / Excipients

Inactive ingredients, also called excipients, are components of the drug product other than the active ingredient. They may include fillers, dyes, coatings, preservatives, flavors, or other formulation ingredients.

Loading inactive ingredients from the official FDA label in the background. No external source is being called by this page request.
Where does this data come from?
Source: official FDA Structured Product Labeling (SPL) via DailyMed and the openFDA label index. Structured IACT rows and label-wide narrative are kept separate; availability and product-level specificity depend on the submitted label.

Inactive ingredient FAQ

Are inactive ingredients the same for every manufacturer?
No. Inactive ingredients can differ by manufacturer, dosage form, strength, and package / product version.
Why might an inactive ingredient be missing?
Some SPLs do not provide a complete structured inactive-ingredient list, and older or unusual labels may only include the information in narrative text.
Can inactive ingredients matter?
Yes. They can matter for allergies, intolerances, dyes, gluten / lactose concerns, preservatives, and formulation differences — but confirm with a pharmacist or the manufacturer when it’s clinically important.

Manufacturer & labeler

LabelerATLANTIC BIOLOGICALS CORP.
Application holderAUROBINDO PHARMA LTD
FDA applicationANDA091348 (ANDA)
Labeler code17856
First marketedOct 2017
Product typeHuman Prescription Drug
Portfolio109 products on file
The labeler markets the product; the application holder owns the FDA approval. They’re often the same company but can differ (e.g. a repackager or an authorized generic). A mailing address / phone appears here when the manufacturer includes it in the product’s FDA label (not all do).
Where does this data come from?
Labeler, application holder and registered establishment from the FDA openFDA NDC Directory and Drugs@FDA; address/contact from the product’s FDA label.

Full prescribing information FDA SPL

The complete FDA label for this product — the official prescribing information, verbatim, section by section. Very long sections are excerpted here and marked; the full text is on DailyMed (linked in the sources below). Jump with a chip, search within the label, or expand everything.
🎯 Indications and Usage ~2 min read ▾

INDICATIONS AND USAGE To reduce the development of drug-resistant bacteria and maintain the effectiveness of sulfamethoxazole and trimethoprim oral suspension, USP and other antibacterial drugs, sulfamethoxazole and trimethoprim oral suspension, USP should be used only to treat or prevent infections that are proven or strongly suspected to be caused by susceptible bacteria. When culture and susceptibility information are available, they should be considered in selecting or modifying antibacterial therapy. In the absence of such data, local epidemiology and susceptibility patterns may contribute to empiric selection of therapy.

Urinary Tract Infections For the treatment of urinary tract infections due to susceptible strains of the following organisms: Escherichia coli, Klebsiella species, Enterobacter species, Morganella morganii, Proteus mirabilis and Proteus vulgaris. It is recommended that initial episodes of uncomplicated urinary tract infections be treated with a single effective antibacterial agent rather than the combination. Acute Otitis Media For the treatment of acute otitis media in pediatric patients due to susceptible strains of Streptococcus pneumoniae or Haemophilus influenzae when in the judgment of the physician sulfamethoxazole and trimethoprim offers some advantage over the use of other antimicrobial agents.

To date, there are limited data on the safety of repeated use of sulfamethoxazole and trimethoprim oral suspension, USP in pediatric patients under two years of age. Sulfamethoxazole and trimethoprim oral suspension, USP is not indicated for prophylactic or prolonged administration in otitis media at any age. Acute Exacerbations of Chronic Bronchitis in Adults For the treatment of acute exacerbations of chronic bronchitis due to susceptible strains of Streptococcus pneumoniae or Haemophilus influenzae when a physician deems that sulfamethoxazole and trimethoprim oral suspension, USP could offer some advantage over the use of a single antimicrobial agent.

Shigellosis For the treatment of enteritis caused by susceptible strains of Shigella flexneri and Shigella sonnei when antibacterial therapy is indicated. Pneumocystis jiroveci Pneumonia For the treatment of documented Pneumocystis jiroveci pneumonia and for prophylaxis against P. jiroveci pneumonia in individuals who are immunosuppressed and considered to be at an increased risk of developing P. jiroveci pneumonia. Traveler's Diarrhea in Adults For the treatment of traveler’s diarrhea due to susceptible strains of enterotoxigenic E. coli.

⏱️ Dosage and Administration ~2 min read ▾

DOSAGE AND ADMINISTRATION Sulfamethoxazole and trimethoprim oral suspension is contraindicated in pediatric patients less than 2 months of age. Urinary Tract Infections and Shigellosis in Adults and Pediatric Patients, and Acute Otitis Media in Children Adults The usual adult dosage in the treatment of urinary tract infections is four teaspoonfuls (20 mL) sulfamethoxazole and trimethoprim oral suspension every 12 hours for 10 to 14 days. An identical daily dosage is used for 5 days in the treatment of shigellosis.

Children The recommended dose for children with urinary tract infections or acute otitis media is 40 mg/kg sulfamethoxazole and 8 mg/kg trimethoprim per 24 hours, given in two divided doses every 12 hours for 10 days. An identical daily dosage is used for 5 days in the treatment of shigellosis. The following table is a guideline for the attainment of this dosage: Children 2 months of age or older: Weight Dose–every 12 hours lb kg Teaspoonfuls 22 10 1 (5 mL) 44 20 2 (10 mL) 66 30 3 (15 mL) 88 40 4 (20 mL) For Patients with Impaired Renal Function When renal function is impaired, a reduced dosage should be employed using the following table: Creatinine Clearance (mL/min) Recommended Dosage Regimen Above 30 Usual standard regimen 15 to 30 ½ the usual regimen Below 15 Use not recommended Acute Exacerbations of Chronic Bronchitis in Adults The usual adult dosage in the treatment of acute exacerbations of chronic bronchitis is four teaspoonfuls (20 mL) sulfamethoxazole and trimethoprim oral suspension every 12 hours for 14 days.

Pneumocystis Jiroveci Pneumonia T reatment Adults and Children The recommended dosage for treatment of patients with documented Pneumocystis jiroveci pneumonia is 75 to 100 mg/kg sulfamethoxazole and 15 to 20 mg/kg trimethoprim per 24 hours given in equally divided doses every 6 hours for 14 to 21 days. 11 The following table is a guideline for the upper limit of this dosage: Weight Dose–every 6 hours lb kg Teaspoonfuls 18 8 1 (5 mL) 35 16 2 (10 mL) 53 24 3 (15 mL) 70 32 4 (20 mL) 88 40 5 (25 mL) 106 48 6 (30 mL) 141 64 8 (40 mL) 176 80 10 (50 mL) For the lower limit dose (75 mg/kg sulfamethoxazole and 15 mg/kg trimethoprim per 24 hours) administer 75% of the dose in the above table.

Prophylaxis Adults The recommended dosage for prophylaxis in adults is four teaspoonfuls (20 mL) of the suspension daily. 12 Children For children, the recommended dose is 750 mg/m 2 /day sulfamethoxazole with 150 mg/m 2 /day trimethoprim given orally in equally divided doses twice a day, on 3 consecutive days per week. The total daily dose should not exceed 1600 mg sulfamethoxazole and 320 mg trimethoprim.

13 The following table is a guideline for the attainment of this dosage in children: Body Surface Area Dose–every 12 hours (m 2 ) Teaspoonfuls 0.26 ½ (2.5 mL) 0.53 1 (5 mL) 1.06 2 (10 mL) Traveler’s Diarrhea in Adults For the treatment of traveler’s diarrhea, the usual adult dosage is four teaspoonfuls (20 mL) of the suspension every 12 hours for 5 days.

⛔ Contraindications 86 words ▾

CONTRAINDICATIONS Sulfamethoxazole and trimethoprim oral suspension is contraindicated in patients with a known hypersensitivity to trimethoprim or sulfonamides, in patients with a history of drug-induced immune thrombocytopenia with use of trimethoprim and/or sulfonamides, and in patients with documented megaloblastic anemia due to folate deficiency. Sulfamethoxazole and trimethoprim oral suspension is contraindicated in pediatric patients less than 2 months of age. Sulfamethoxazole and trimethoprim oral suspension is also contraindicated in patients with marked hepatic damage or with severe renal insufficiency when renal function status cannot be monitored.

⚠️ Warnings ~2 min read ▾

WARNINGS Embryofetal Toxicity Some epidemiologic studies suggest that exposure to sulfamethoxazole and trimethoprim during pregnancy may be associated with an increased risk of congenital malformations, particularly neural tube defects, cardiovascular malformations, urinary tract defects, oral clefts, and club foot. If sulfamethoxazole and trimethoprim is used during pregnancy, or if the patient becomes pregnant while taking this drug, the patient should be advised of the potential hazards to the fetus. Hypersensitivity and Other Fatal Reactions Fatalities associated with the administration of sulfonamides, although rare, have occurred due to severe reactions, including Stevens-Johnson syndrome, toxic epidermal necrolysis, fulminant hepatic necrosis, agranulocytosis, aplastic anemia and other blood dyscrasias.

Sulfonamides, including sulfonamide-containing products such as sulfamethoxazole and trimethoprim, should be discontinued at the first appearance of skin rash or any sign of adverse reaction. In rare instances, a skin rash may be followed by a more severe reaction, such as Stevens-Johnson syndrome, toxic epidermal necrolysis, hepatic necrosis, and serious blood disorders (see PRECAUTIONS ). Clinical signs, such as rash, sore throat, fever, arthralgia, pallor, purpura or jaundice may be early indications of serious reactions.

Cough, shortness of breath, and pulmonary infiltrates are hypersensitivity reactions of the respiratory tract that have been reported in association with sulfonamide treatment. Thrombocytopenia Sulfamethoxazole and trimethoprim-induced thrombocytopenia may be an immune-mediated disorder. Severe cases of thrombocytopenia that are fatal or life threatening have been reported.

Thrombocytopenia usually resolves within a week upon discontinuation of sulfamethoxazole and trimethoprim. Streptococcal Infections and Rheumatic Fever The sulfonamides should not be used for treatment of group A β-hemolytic streptococcal infections. In an established infection, they will not eradicate the streptococcus and, therefore, will not prevent sequelae such as rheumatic fever.

Clostridium Difficile Associated Diarrhea Clostridium difficile associated diarrhea (CDAD) has been reported with use of nearly all antibacterial agents, including sulfamethoxazole and trimethoprim, and may range in severity from mild diarrhea to fatal colitis. Treatment with antibacterial agents alters the normal flora of the colon leading to overgrowth of C. difficile . C. difficile produces toxins A and B which contribute to the development of CDAD.

Hypertoxin producing strains of C. difficile cause increased morbidity and mortality, as these infections can be refractory to antimicrobial therapy and may require colectomy. CDAD must be considered in all patients who present with diarrhea following antibiotic use. Careful medical history is necessary since CDAD has been reported to occur over two months after the administration of antibacterial agents.

If CDAD is suspected or confirmed, ongoing antibiotic use not directed against C. difficile may need to be discontinued. Appropriate fluid and electrolyte management, protein supplementation, antibiotic treatment of C. difficile, and surgical evaluation should be instituted as clinically indicated. Adjunctive Treatment with Leucovorin for Pneumocystis jiroveci Pneumonia Treatment failure and excess mortality were observed when trimethoprim-sulfamethoxazole was used concomitantly with leucovorin for the treatment of HIV positive patients with Pneumocystis jiroveci pneumonia in a randomized placebo controlled trial.

6 Co-administration of trimethoprim-sulfamethoxazole and leucovorin during treatment of Pneumocystis jiroveci pneumonia should be avoided.

🤒 Adverse Reactions ~1 min read ▾

ADVERSE REACTIONS The most common adverse effects are gastrointestinal disturbances (nausea, vomiting, anorexia) and allergic skin reactions (such as rash and urticaria). FATALITIES ASSOCIATED WITH THE ADMINISTRATION OF SULFONAMIDES, ALTHOUGH RARE, HAVE OCCURRED DUE TO SEVERE REACTIONS, INCLUDING STEVENS-JOHNSON SYNDROME, TOXIC EPIDERMAL NECROLYSIS, FULMINANT HEPATIC NECROSIS, AGRANULOCYTOSIS, APLASTIC ANEMIA AND OTHER BLOOD DYSCRASIAS (SEE WARNINGS SECTION). Hematologic Agranulocytosis, aplastic anemia, thrombocytopenia, leukopenia, neutropenia, hemolytic anemia, megaloblastic anemia, hypoprothrombinemia, methemoglobinemia, eosinophilia.

Allergic Reactions Stevens-Johnson syndrome, toxic epidermal necrolysis, anaphylaxis, allergic myocarditis, erythema multiforme, exfoliative dermatitis, angioedema, drug fever, chills, Henoch-Schoenlein purpura, serum sickness-like syndrome, generalized allergic reactions, generalized skin eruptions, photosensitivity, conjunctival and scleral injection, pruritus, urticaria and rash. In addition, periarteritis nodosa and systemic lupus erythematosus have been reported. Gastrointestinal Hepatitis (including cholestatic jaundice and hepatic necrosis), elevation of serum transaminase and bilirubin, pseudomembranous enterocolitis, pancreatitis, stomatitis, glossitis, nausea, emesis, abdominal pain, diarrhea, anorexia.

Genitourinary Renal failure, interstitial nephritis, BUN and serum creatinine elevation, toxic nephrosis with oliguria and anuria, crystalluria and nephrotoxicity in association with cyclosporine. Metabolic and Nutritional Hyperkalemia, hyponatremia (see PRECAUTIONS: Electrolyte Abnormalities ). Neurologic Aseptic meningitis, convulsions, peripheral neuritis, ataxia, vertigo, tinnitus, headache.

Psychiatric Hallucinations, depression, apathy, nervousness. Endocrine The sulfonamides bear certain chemical similarities to some goitrogens, diuretics (acetazolamide and the thiazides) and oral hypoglycemic agents. Cross-sensitivity may exist with these agents.

Diuresis and hypoglycemia have occurred rarely in patients receiving sulfonamides. Musculoskeletal Arthralgia and myalgia. Isolated cases of rhabdomyolysis have been reported with sulfamethoxazole and trimethoprim, mainly in AIDS patients.

Respiratory Cough, shortness of breath and pulmonary infiltrates (see WARNINGS ). Miscellaneous Weakness, fatigue, insomnia. Postmarketing Experience The following adverse reactions have been identified during post-approval use of trimethoprim-sulfamethoxazole.

Because these reactions were reported voluntarily from a population of uncertain size, it is not possible to reliably estimate their frequency or establish a causal relationship to drug exposure: Thrombotic thrombocytopenia purpura Idiopathic thrombocytopenic purpura QT prolongation resulting in ventricular tachycardia and torsade de pointes

🔄 Drug Interactions ~2 min read ▾

Drug Interactions Potential for Sulfamethoxazole and Trimethoprim to Affect Other Drugs Trimethoprim is an inhibitor of CYP2C8 as well as OCT2 transporter. Sulfamethoxazole is an inhibitor of CYP2C9. Caution is recommended when sulfamethoxazole and trimethoprim is co-administered with drugs that are substrates of CYP2C8 and 2C9 or OCT2.

In elderly patients concurrently receiving certain diuretics, primarily thiazides, an increased incidence of thrombocytopenia with purpura has been reported. It has been reported that sulfamethoxazole and trimethoprim may prolong the prothrombin time in patients who are receiving the anticoagulant warfarin (a CYP2C9 substrate). This interaction should be kept in mind when sulfamethoxazole and trimethoprim is given to patients already on anticoagulant therapy, and the coagulation time should be reassessed.

Sulfamethoxazole and trimethoprim may inhibit the hepatic metabolism of phenytoin (a CYP2C9 substrate). Sulfamethoxazole and trimethoprim, given at a common clinical dosage, increased the phenytoin half-life by 39% and decreased the phenytoin metabolic clearance rate by 27%. When administering these drugs concurrently, one should be alert for possible excessive phenytoin effect.

Sulfonamides can also displace methotrexate from plasma protein binding sites and can compete with the renal transport of methotrexate, thus increasing free methotrexate concentrations. There have been reports of marked but reversible nephrotoxicity with coadministration of sulfamethoxazole and trimethoprim and cyclosporine in renal transplant recipients. Increased digoxin blood levels can occur with concomitant sulfamethoxazole and trimethoprim therapy, especially in elderly patients.

Serum digoxin levels should be monitored. Increased sulfamethoxazole blood levels may occur in patients who are also receiving indomethacin. Occasional reports suggest that patients receiving pyrimethamine as malaria prophylaxis in doses exceeding 25 mg weekly may develop megaloblastic anemia if sulfamethoxazole and trimethoprim is prescribed.

The efficacy of tricyclic antidepressants can decrease when coadministered with sulfamethoxazole and trimethoprim. Sulfamethoxazole and trimethoprim potentiates the effect of oral hypoglycemics that are metabolized by CYP2C8 (e.g., pioglitazone, repaglinide, and rosiglitazone) or CYP2C9 (e.g., glipizide and glyburide) or eliminated renally via OCT2 (e.g., metformin). Additional monitoring of blood glucose may be warranted.

In the literature, a single case of toxic delirium has been reported after concomitant intake of sulfamethoxazole and trimethoprim and amantadine (an OCT2 substrate). Cases of interactions with other OCT2 substrates, memantine and metformin, have also been reported. In the literature, three cases of hyperkalemia in elderly patients have been reported after concomitant intake of sulfamethoxazole and trimethoprim and an angiotensin converting enzyme inhibitor.

8,9

🔄 Drug / Laboratory Test Interactions 79 words ▾

Drug/Laboratory Test Interactions Sulfamethoxazole and trimethoprim, specifically the trimethoprim component, can interfere with a serum methotrexate assay as determined by the competitive binding protein technique (CBPA) when a bacterial dihydrofolate reductase is used as the binding protein. No interference occurs, however, if methotrexate is measured by a radioimmunoassay (RIA). The presence of sulfamethoxazole and trimethoprim may also interfere with the Jaffé alkaline picrate reaction assay for creatinine, resulting in overestimations of about 10% in the range of normal values.

🤰 Pregnancy ~2 min read ▾

Pregnancy While there are no large, well-controlled studies on the use of sulfamethoxazole and trimethoprim in pregnant women, Brumfitt and Pursell, 10 in a retrospective study, reported the outcome of 186 pregnancies during which the mother received either placebo or sulfamethoxazole and trimethoprim. The incidence of congenital abnormalities was 4.5% (3 of 66) in those who received placebo and 3.3% (4 of 120) in those receiving sulfamethoxazole and trimethoprim. There were no abnormalities in the 10 children whose mothers received the drug during the first trimester.

In a separate survey, Brumfitt and Pursell also found no congenital abnormalities in 35 children whose mothers had received oral sulfamethoxazole and trimethoprim at the time of conception or shortly thereafter. Because sulfamethoxazole and trimethoprim may interfere with folic acid metabolism, sulfamethoxazole and trimethoprim should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus. Teratogenic Effects Pregnancy Category D Human Data While there are no large prospective, well controlled studies in pregnant women and their babies, some retrospective epidemiologic studies suggest an association between first trimester exposure to sulfamethoxazole and trimethoprim with an increased risk of congenital malformations, particularly neural tube defects, cardiovascular abnormalities, urinary tract defects, oral clefts, and club foot.

These studies, however, were limited by the small number of exposed cases and the lack of adjustment for multiple statistical comparisons and confounders. These studies are further limited by recall, selection, and information biases, and by limited generalizability of their findings. Lastly, outcome measures varied between studies, limiting cross-study comparisons.

Alternatively, other epidemiologic studies did not detect statistically significant associations between sulfamethoxazole and trimethoprim exposure and specific malformations. Animal Data In rats, oral doses of either 533 mg/kg sulfamethoxazole or 200 mg/kg trimethoprim produced teratologic effects manifested mainly as cleft palates. These doses are approximately 5 and 6 times the recommended human total daily dose on a body surface area basis.

In two studies in rats, no teratology was observed when 512 mg/kg of sulfamethoxazole was used in combination with 128 mg/kg of trimethoprim. In some rabbit studies, an overall increase in fetal loss (dead and resorbed conceptuses) was associated with doses of trimethoprim 6 times the human therapeutic dose based on body surface area. Nonteratogenic Effects See CONTRAINDICATIONS section.

🧒 Pediatric Use 20 words ▾

Pediatric Use Sulfamethoxazole and trimethoprim is contraindicated for infants younger than 2 months of age (see INDICATIONS and CONTRAINDICATIONS sections).

🧓 Geriatric Use ~1 min read ▾

Geriatric Use Clinical studies of sulfamethoxazole and trimethoprim did not include sufficient numbers of subjects aged 65 and over to determine whether they respond differently from younger subjects. There may be an increased risk of severe adverse reactions in elderly patients, particularly when complicating conditions exist, e.g., impaired kidney and/or liver function, possible folate deficiency, or concomitant use of other drugs. Severe skin reactions, generalized bone marrow suppression (see WARNINGS and ADVERSE REACTIONS sections), a specific decrease in platelets (with or without purpura), and hyperkalemia are the most frequently reported severe adverse reactions in elderly patients.

In those concurrently receiving certain diuretics, primarily thiazides, an increased incidence of thrombocytopenia with purpura has been reported. Increased digoxin blood levels can occur with concomitant sulfamethoxazole and trimethoprim therapy, especially in elderly patients. Serum digoxin levels should be monitored.

Hematological changes indicative of folic acid deficiency may occur in elderly patients. These effects are reversible by folinic acid therapy. Appropriate dosage adjustments should be made for patients with impaired kidney function and duration of use should be as short as possible to minimize risks of undesired reactions (see DOSAGE AND ADMINISTRATION section).

The trimethoprim component of sulfamethoxazole and trimethoprim may cause hyperkalemia when administered to patients with underlying disorders of potassium metabolism, with renal insufficiency or when given concomitantly with drugs known to induce hyperkalemia, such as angiotensin converting enzyme inhibitors. Close monitoring of serum potassium is warranted in these patients. Discontinuation of sulfamethoxazole and trimethoprim treatment is recommended to help lower potassium serum levels.

Pharmacokinetics parameters for sulfamethoxazole were similar for geriatric subjects and younger adult subjects. The mean maximum serum trimethoprim concentration was higher and mean renal clearance of trimethoprim was lower in geriatric subjects compared with younger subjects (see CLINICAL PHARMACOLOGY: Geriatric Pharmacokinetics ).

🆘 Overdosage 220 words ▾

OVERDOSAGE Acute The amount of a single dose of sulfamethoxazole and trimethoprim that is either associated with symptoms of overdosage or is likely to be life-threatening has not been reported. Signs and symptoms of overdosage reported with sulfonamides include anorexia, colic, nausea, vomiting, dizziness, headache, drowsiness and unconsciousness. Pyrexia, hematuria and crystalluria may be noted.

Blood dyscrasias and jaundice are potential late manifestations of overdosage. Signs of acute overdosage with trimethoprim include nausea, vomiting, dizziness, headache, mental depression, confusion and bone marrow depression. General principles of treatment include the institution of gastric lavage or emesis, forcing oral fluids, and the administration of intravenous fluids if urine output is low and renal function is normal.

Acidification of the urine will increase renal elimination of trimethoprim. The patient should be monitored with blood counts and appropriate blood chemistries, including electrolytes. If a significant blood dyscrasia or jaundice occurs, specific therapy should be instituted for these complications.

Peritoneal dialysis is not effective and hemodialysis is only moderately effective in eliminating sulfamethoxazole and trimethoprim. Chronic Use of sulfamethoxazole and trimethoprim at high doses and/or for extended periods of time may cause bone marrow depression manifested as thrombocytopenia, leukopenia and/or megaloblastic anemia. If signs of bone marrow depression occur, the patient should be given leucovorin 5 to 15 mg daily until normal hematopoiesis is restored.

🧬 Clinical Pharmacology ~3 min read ▾

CLINICAL PHARMACOLOGY Sulfamethoxazole and trimethoprim is rapidly absorbed following oral administration. Both sulfamethoxazole and trimethoprim exist in the blood as unbound, protein-bound and metabolized forms; sulfamethoxazole also exists as the conjugated form. Sulfamethoxazole is metabolized in humans to at least 5 metabolites: the N 4 -acetyl-, N 4 -hydroxy-, 5-methylhydroxy-, N 4 -acetyl-5-methylhydroxy-sulfamethoxazole metabolites, and an N-glucuronide conjugate.

The formulation of N 4 -hydroxy metabolite is mediated via CYP2C9. Trimethoprim is metabolized in vitro to 11 different metabolites, of which, five are glutathione adducts and six are oxidative metabolites, including the major metabolites, 1- and 3-oxides and the 3- and 4-hydroxy derivatives. The free forms of sulfamethoxazole and trimethoprim are considered to be the therapeutically active forms.

In vitro studies suggest that trimethoprim is a substrate of P-glycoprotein, OCT1 and OCT2, and that sulfamethoxazole is not a substrate of P-glycoprotein. Approximately 70% of sulfamethoxazole and 44% of trimethoprim are bound to plasma proteins. The presence of 10 mg percent sulfamethoxazole in plasma decreases the protein binding of trimethoprim by an insignificant degree; trimethoprim does not influence the protein binding of sulfamethoxazole.

Peak blood levels for the individual components occur 1 to 4 hours after oral administration. The mean serum half-lives of sulfamethoxazole and trimethoprim are 10 and 8 to 10 hours, respectively. However, patients with severely impaired renal function exhibit an increase in the half-lives of both components, requiring dosage regimen adjustment (see DOSAGE AND ADMINISTRATION section).

Detectable amounts of sulfamethoxazole and trimethoprim are present in the blood 24 hours after drug administration. During administration of 800 mg sulfamethoxazole and 160 mg trimethoprim b.i.d., the mean steady-state plasma concentration of trimethoprim was 1.72 mcg/mL. The steady-state mean plasma levels of free and total sulfamethoxazole were 57.4 mcg/mL and 68 mcg/mL, respectively.

These steady-state levels were achieved after three days of drug administration. 1 Excretion of sulfamethoxazole and trimethoprim is primarily by the kidneys through both glomerular filtration and tubular secretion. Urine concentrations of both sulfamethoxazole and trimethoprim are considerably higher than are the concentrations in the blood.

The average percentage of the dose recovered in urine from 0 to 72 hours after a single oral dose of sulfamethoxazole and trimethoprim is 84.5% for total sulfonamide and 66.8% for free trimethoprim. Thirty percent of the total sulfonamide is excreted as free sulfamethoxazole, with the remaining as N 4 -acetylated metabolite. 2 When administered together as sulfamethoxazole and trimethoprim, neither sulfamethoxazole nor trimethoprim affects the urinary excretion pattern of the other.

Both sulfamethoxazole and trimethoprim distribute to sputum, vaginal fluid and middle ear fluid; trimethoprim also distributes to bronchial secretion, and both pass the placental barrier and are excreted in human milk. Geriatric Pharmacokinetics The pharmacokinetics of sulfamethoxazole 800 mg and trimethoprim 160 mg were studied in 6 geriatric subjects (mean age: 78.6 years) and 6 young healthy subjects (mean age: 29.3 years) using a non-U.S. approved formulation. Pharmacokinetic values for sulfamethoxazole in geriatric subjects were similar to those observed in young adult subjects.

The mean renal clearance of trimethoprim was significantly lower in geriatric subjects compared with young adult subjects (19 mL/h/kg vs. 55 mL/h/kg). However, after normalizing by body weight, the apparent total body clearance of trimethoprim was on average 19% lower in geriatric subjects compared with young adult subjects.

3 Microbiology Sulfamethoxazole inhibits bacterial synthesis of dihydrofolic acid by competing with para-aminobenzoic acid (PABA). Trimethop… [Excerpted — this section continues on DailyMed.]

📦 How Supplied / Storage and Handling 134 words ▾

HOW SUPPLIED Sulfamethoxazole and Trimethoprim Oral Suspension, USP contains 200 mg sulfamethoxazole and 40 mg trimethoprim in each teaspoonful (5 mL). Available as a pink, cherry-flavored syrup suspension. NDC 17856-0496-01 SULFAMETHOXAZOLE/TRIMETH 200/40MG/5ML - 5 ML CUP 72 ct UD NDC 17856-0496-02 SULFAMETHOXAZOLE/TRIMETH 200/40MG/5ML - 10 ML CUP 72 ct UD NDC 17856-0496-03 SULFAMETHOXAZOLE/TRIMETH 200/40MG/5ML - 20 ML CUP 50 ct UD NDC 17856-0496-07 SULFAMETHOXAZOLE/TRIMETH 200/40MG/5ML - 5 ML ENFIT SYRINGE 48 ct UD NDC 17856-0496-08 SULFAMETHOXAZOLE/TRIMETH 200/40MG/5ML - 10 ML ENFIT SYRINGE 48 ct UD NDC 17856-0496-09 SULFAMETHOXAZOLE/TRIMETH 200/40MG/5ML - 20 ML CUP 48 ct UD Store at 20º to 25ºC (68º to 77ºF) [see USP Controlled Room Temperature] and protect from light.

SHAKE WELL BEFORE USING. Dispense in a tight, light-resistant container as defined in the USP, with a child-resistant closure (as required).

📋 Description 167 words ▾

DESCRIPTION Sulfamethoxazole and trimethoprim oral suspension, USP is a synthetic antibacterial combination product containing 200 mg sulfamethoxazole and 40 mg trimethoprim in each teaspoonful (5 mL). Sulfamethoxazole is N 1 -(5-methyl-3-isoxazolyl)sulfanilamide; the molecular formula is C 10 H 11 N 3 O 3 S. It is a white to off-white, practically odorless, crystalline powder, tasteless compound with a molecular weight of 253.28 and the following structural formula: Trimethoprim is 2,4-diamino-5-(3,4,5-trimethoxybenzyl)pyrimidine; the molecular formula is C 14 H 18 N 4 O 3 .

It is a white or cream-colored crystals or crystalline powder with a molecular weight of 290.3 and the following structural formula: Each teaspoonful (5 mL) of the oral suspension contains 200 mg sulfamethoxazole and 40 mg trimethoprim as well as the following inactive ingredients: alcohol 0.04% (v/v), carboxymethylcellulose sodium, citric acid anhydrous, colloidal silicon dioxide, FD&C Red #40, flavour cherry #557, glycerin, methyl paraben, microcrystalline cellulose and carboxymethylcellulose sodium, polysorbate 80, purified water, saccharin sodium, sodium benzoate, and sorbitol solution.

STRU 1 STRU 2

💬 Information for Patients 203 words ▾

Information for Patients Patients should be counseled that antibacterial drugs including sulfamethoxazole and trimethoprim oral suspension should only be used to treat bacterial infections. It does not treat viral infections (e.g., the common cold). When sulfamethoxazole and trimethoprim oral suspension is prescribed to treat a bacterial infection, patients should be told that although it is common to feel better early in the course of therapy, the medication should be taken exactly as directed.

Skipping doses or not completing the full course of therapy may (1) decrease the effectiveness of the immediate treatment and (2) increase the likelihood that bacteria will develop resistance and will not be treatable by sulfamethoxazole and trimethoprim oral suspension or other antibacterial drugs in the future. Patients should be instructed to maintain an adequate fluid intake in order to prevent crystalluria and stone formation. Diarrhea is a common problem caused by antibiotics which usually ends when the antibiotic is discontinued.

Sometimes after starting treatment with antibiotics, patients can develop watery and bloody stools (with or without stomach cramps and fever) even as late as two or more months after having taken the last dose of the antibiotic. If this occurs, patients should contact their physician as soon as possible.

⚠️ Precautions ~2 min read ▾

PRECAUTIONS Development of Drug Resistant Bacteria Prescribing sulfamethoxazole and trimethoprim oral suspension in the absence of a proven or strongly suspected bacterial infection or a prophylactic indication is unlikely to provide benefit to the patient and increases the risk of the development of drug-resistant bacteria. Folate Deficiency Sulfamethoxazole and trimethoprim should be given with caution to patients with impaired renal or hepatic function, to those with possible folate deficiency (e.g., the elderly, chronic alcoholics, patients receiving anticonvulsant therapy, patients with malabsorption syndrome, and patients in malnutrition states) and to those with severe allergies or bronchial asthma.

Hematological changes indicative of folic acid deficiency may occur in elderly patients or in patients with preexisting folic acid deficiency or kidney failure. These effects are reversible by folinic acid therapy. Hemolysis In glucose-6-phosphate dehydrogenase deficient individuals, hemolysis may occur.

This reaction is frequently dose-related (see CLINICAL PHARMACOLOGY and DOSAGE AND ADMINISTRATION ). Hypoglycemia Cases of hypoglycemia in non-diabetic patients treated with sulfamethoxazole and trimethoprim are seen rarely, usually occurring after a few days of therapy. Patients with renal dysfunction, liver disease, malnutrition or those receiving high doses of sulfamethoxazole and trimethoprim are particularly at risk.

Phenylalanine Metabolism Trimethoprim has been noted to impair phenylalanine metabolism, but this is of no significance in phenylketonuric patients on appropriate dietary restriction. Porphyria and Hypothyroidism As with all drugs containing sulfonamides, caution is advisable in patients with porphyria or thyroid dysfunction. Use in the Treatment of and Prophylaxis for Pneumocystis jiroveci Pneumonia in Patients with Acquired Immunodeficiency Syndrome (AIDS) AIDS patients may not tolerate or respond to sulfamethoxazole and trimethoprim in the same manner as non-AIDS patients.

The incidence of side effects, particularly rash, fever, leukopenia and elevated aminotransferase (transaminase) values, with sulfamethoxazole and trimethoprim therapy in AIDS patients who are being treated for P. jiroveci pneumonia has been reported to be greatly increased compared with the incidence normally associated with the use of sulfamethoxazole and trimethoprim in non-AIDS patients. Adverse effects are generally less severe in patients receiving sulfamethoxazole and trimethoprim for prophylaxis. A history of mild intolerance to sulfamethoxazole and trimethoprim in AIDS patients does not appear to predict intolerance of subsequent secondary prophylaxis.

7 However, if a patient develops skin rash or any sign of adverse reaction, therapy with sulfamethoxazole and trimethoprim should be reevaluated (see WARNINGS ). Co-administration of sulfamethoxazole and trimethoprim and leucovorin should be avoided with P. jiroveci pneumonia (see WARNINGS ). Electrolyte Abnormalities High dosage of trimethoprim, as used in patients with P. jiroveci pneumonia, induces a progressive but reversible increase of serum potassium concentrations in a substantial number of patients.

Even treatment with recommended doses may cause hyperkalemia when trimethoprim is administered to patients with underlying disorders of potassium metabolism, with renal insufficiency, or if drugs known to induce hyperkalemia are given concomitantly. Close monitoring of serum potassium is warranted in these patients. Severe and symptomatic hyponatremia can occur in patients receiving sulfamethoxazole and trimethoprim, particularly for the treatment of P. jiroveci pneumonia.

Evaluation for hyponatremia and appropriate correction is necessary in symptomatic patients to prevent life-threatening complications. During treatment, adequate fluid intake and urinary output should be ensured to prevent crystalluria. Patients who are “slow acetylators” may be more prone to idiosyncratic… [Excerpted — this section continues on DailyMed.]

🍼 Nursing Mothers 60 words ▾

Nursing Mothers Levels of trimethoprim and sulfamethoxazole in breast milk are approximately 2 to 5% of the recommended daily dose for infants over 2 months of age. Caution should be exercised when sulfamethoxazole and trimethoprim is administered to a nursing woman, especially when breastfeeding, jaundiced, ill, stressed, or premature infants because of the potential risk of bilirubin displacement and kernicterus.

🧬 Pharmacokinetics 101 words ▾

Geriatric Pharmacokinetics The pharmacokinetics of sulfamethoxazole 800 mg and trimethoprim 160 mg were studied in 6 geriatric subjects (mean age: 78.6 years) and 6 young healthy subjects (mean age: 29.3 years) using a non-U.S. approved formulation. Pharmacokinetic values for sulfamethoxazole in geriatric subjects were similar to those observed in young adult subjects. The mean renal clearance of trimethoprim was significantly lower in geriatric subjects compared with young adult subjects (19 mL/h/kg vs.

55 mL/h/kg). However, after normalizing by body weight, the apparent total body clearance of trimethoprim was on average 19% lower in geriatric subjects compared with young adult subjects. 3

📄 Carcinogenesis, Mutagenesis, Impairment of Fertility ~1 min read ▾

Carcinogenesis, Mutagenesis, Impairment of Fertility Carcinogenesis Sulfamethoxazole was not carcinogenic when assessed in a 26-week tumorigenic mouse (Tg-rasH2) study at doses up to 400 mg/kg/day sulfamethoxazole; equivalent to 2.4-fold the human systemic exposure (at a daily dose of 800 mg sulfamethoxazole b.i.d. ). Mutagenesis In vitro reverse mutation bacterial tests according to the standard protocol have not been performed with sulfamethoxazole and trimethoprim in combination. An in vitro chromosomal aberration test in human lymphocytes with sulfamethoxazole and trimethoprim was negative.

In in vitro and in vivo tests in animal species, sulfamethoxazole and trimethoprim did not damage chromosomes. In vivo micronucleus assays were positive following oral administration of sulfamethoxazole and trimethoprim. Observations of leukocytes obtained from patients treated with sulfamethoxazole and trimethoprim revealed no chromosomal abnormalities.

Sulfamethoxazole alone was positive in an in vitro reverse mutation bacterial assay and in in vitro micronucleus assays using cultured human lymphocytes. Trimethoprim alone was negative in in vitro reverse mutation bacterial assays and in in vitro chromosomal aberration assays with Chinese Hamster ovary or lung cells with or without S9 activation. In in vitro Comet, micronucleus and chromosomal damage assays using cultured human lymphocytes, trimethoprim was positive.

In mice following oral administration of trimethoprim, no DNA damage in Comet assays of liver, kidney, lung, spleen, or bone marrow was recorded. Impairment of Fertility No adverse effects on fertility or general reproductive performance were observed in rats given oral dosages as high as 350 mg/kg/day sulfamethoxazole plus 70 mg/kg/day trimethoprim, doses roughly two times the recommended human daily dose on a body surface area basis.

📚 References ~2 min read ▾

REFERENCES Kremers P, Duvivier J, Heusghem C. Pharmacokinetic Studies of Co-Trimoxazole in Man after Single and Repeated Doses. J Clin Pharmacol .

Feb-Mar 1974; 14:112–117. Kaplan SA, et al. Pharmacokinetic Profile of Trimethoprim-Sulfamethoxazole in Man.

J Infect Dis . Nov 1973; 128 (Suppl): S547–S555. Varoquaux O, et al.

Pharmacokinetics of the trimethoprim-sulfamethoxazole combination in the elderly. Br J Clin Pharmacol . 1985;20:575–581.

Rudoy RC, Nelson JD, Haltalin KC. Antimicrobial Agents Chemother . May 1974;5:439–443.

Clinical and Laboratory Standards Institute. Methods for Dilution Antimicrobial Susceptibility Tests for Bacteria that Grow Aerobically; Approved Standard – 9 th ed. CLSI document M07– A9, CLSI, Wayne, PA, 2012.

Safrin S, Lee BL, Sande MA. Adjunctive folinic acid with trimethoprim-sulfamethoxazole for Pneumocystis carinii pneumonia in AIDS patients is associated with an increased risk of therapeutic failure and death. J Infect Dis .

1994 Oct;170(4):912-7. Hardy DW, et al. A controlled trial of trimethoprim-sulfamethoxazole or aerosolized pentamidine for secondary prophylaxis of Pneumocystis carinii pneumonia in patients with the acquired immunodeficiency syndrome .

N Engl J Med . 1992; 327: 1842–1848. Marinella Mark A.

1999. Trimethoprim-induced hyperkalemia: An analysis of reported cases. Gerontol .

45:209–212. Margassery, S. and B. Bastani.

2002. Life threatening hyperkalemia and acidosis secondary to trimethoprim-sulfamethoxazole treatment . J.

Nephrol . 14:410–414. Brumfitt W, Pursell R.

Trimethoprim/Sulfamethoxazole in the Treatment of Bacteriuria in Women. J Infect Dis . Nov 1973; 128 (Suppl):S657–S663.

Masur H. Prevention and treatment of Pneumocystis pneumonia . N Engl J Med .

1992; 327: 1853–1880. Recommendations for prophylaxis agains t Pneumocystis carinii pneumonia for adults and adolescents infected with human immunodeficiency virus . MMWR.

1992; 41(RR-4):1–11. CDC Guidelines for prophylaxis agains t Pneumocystis carinii pneumonia for children infected with human immunodeficiency virus . MMWR .

1991; 40(RR-2):1–13. Clinical and Laboratory Standards Institute. Performance Standards for Antimicrobial Disk Susceptibility Tests; Approved Standard – 11 th ed.

CLSI document M02–A11, CLSI, Wayne, PA, 2012. Clinical and Laboratory Standards Institute (CLSI). Performance Standards for Antimicrobial Susceptibility Testing; Twenty-third Informational Supplement , CLSI document M100–S23.

CLSI document M100–S23, Clinical and Laboratory Standards Institute, 950 West Valley Road, Suite 2500, Wayne, Pennsylvania 19087, USA, 2013. Distributed by: Atlantic Biologicals Corps Miami, Fl 33179

📄 Package Label / Principal Display Panel 18 words ▾

PACKAGE LABEL-PRINCIPAL DISPLAY PANEL 17856-0496-01 17856-0496-02 17856-0496-03 17856-0496-07 17856-0496-08 17856-0496-09 1 image description image description 7 8 9

Source: FDA Structured Product Labeling, mirrored from DailyMed / openFDA. Prefer the government’s original formatting? View this label on DailyMed ↗

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