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Rifabutin 150 mg Capsule, 100-count — NDC 59762-1350-01 package photo

Rifabutin 150 mg Capsule, 100-count

by Mylan Pharmaceuticals Inc. · 100 CAPSULE in 1 BOTTLE (59762-1350-1)
NDC 59762-1350-01
🏷️ FDA NDC (as labeled) 59762-1350-1 billing pads the package segment with a zero
Rx only Brand On market Non-controlled
🗂️ Data synced Aug 6, 2026 · sources: openFDA · FDA label (DailyMed) · FDA Orange & Purple Book · First Databank · CMS NADAC, ASP, Medicare & Medicaid · RxNorm
📋 All sources & update times →

🆔 Identity & classification

FDA NDC (as labeled) 59762-1350-1
Product NDC 59762-1350
11-digit billing NDC 59762135001
NCPDP billing unit EA — each (per item)
RxCUI 198200
UNII 1W306TDA6S
UPC 0359762135018
Application # NDA050689
SPL Set ID c2026b67-4755-4236-96b6-a6b5e7399707
Established class (EPC) Rifamycin Antimycobacterial
Chemical class Rifamycins
DEA schedule Non-controlled
Marketing category NDA AUTHORIZED GENERIC
Marketing status On market
FDA listing status Listed (active directory)
Marketing start 2014-04-07
Route ORAL
Dosage form CAPSULE
Substance RIFABUTIN
GCN Seq No 018766
GCN 29810
HICL code 007626
Ingredient (HICL) Rifabutin
HIC1 code W
Therapeutic class — broad (HIC1) Anti-Infecting Agents
HIC2 code W2
Therapeutic class — intermediate (HIC2) Antibacterials
HIC3 code W2E
Therapeutic class — specific (HIC3) Anti-Mycobacterium Agents
AHFS code 08:12.28.30
AHFS class Rifamycin Antibiotics
FDB label name RIFABUTIN 150 MG CAPSULE
FDB brand name Rifabutin
Legend status F — Federal legend — prescription drug or device
TE code (Orange Book) AB · RLD · RS
Why two NDCs? The FDA registers this code as 59762-1350-1 — 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 → 59762-1350-01. 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 Rifamycin Antimycobacterial class.

Pharmacologic class Rifamycin Antimycobacterial
Drug family (ATC) Antibiotics
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.

🏭 Manufacturer & labeler

LabelerMylan Pharmaceuticals Inc.
Application holderPFIZER INC
FDA applicationNDA050689 (NDA AUTHORIZED GENERIC)
Labeler code59762
First marketedApr 2014
Product typeHuman Prescription Drug
Portfolio473 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.

🩺 Clinical

Label name RIFABUTIN 150 MG CAPSULE Ingredient Rifabutin
📗 Our plain-language guide HelloPharmacist
  • Rifabutin is prescribed to help prevent a serious infection called disseminated MAC — short for Mycobacterium avium complex. This is a bacterial infection that can spread throughou...
  • What exactly is rifabutin protecting me from?
  • Yes, completely normal and nothing to worry about. About 30% of people taking rifabutin notice a reddish-orange or brown discoloration of their urine — it's one of the most common...
  • My urine looks orange-brown — is that normal?
📖 Read our full Rifabutin guide →
7
Nutrient depletion considerations

Rifabutin may be associated with lower levels of 7 nutrients — worth a chat with your pharmacist, not a cause for alarm.

An association is not a deficiency. Educational only — don't start or stop anything without professional guidance.
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.

🧪 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.

💡 Tap an ingredient (hover on desktop) to see what it is and why it’s used.

  • UNII 1K09F3G675
    Ferric oxide red is an inorganic iron compound used as a colorant in medicines. It gives tablets, capsules, or other dosage forms a red or reddish tint for identification and appearance.
  • UNII 70097M6I30
    Magnesium stearate is a salt made from magnesium and stearic acid, a fatty substance. It's used in tablets and capsules as a lubricant and glidant to help ingredients flow smoothly during manufacturing and prevent sticking.
  • UNII OP1R32D61U
    Microcrystalline cellulose is a purified form of cellulose, a natural fiber from plant sources. It acts as a binder and filler in tablets and capsules, helping hold ingredients together and give the medicine its shape and size.
  • UNII ETJ7Z6XBU4
    Silicon dioxide is a naturally occurring mineral used as a glidant and anti-caking agent. It helps powder ingredients flow smoothly and prevents clumping during manufacturing and storage.
  • UNII 368GB5141J
    A detergent and foaming agent derived from coconut or palm oil. In medications, it helps break down and mix oil and water-based ingredients, aids in tablet disintegration, and improves how the drug dissolves and spreads in the mouth or digestive system.
  • UNII 15FIX9V2JP
    Titanium dioxide is a bright white mineral powder commonly used as a colorant and opacifying agent. It makes pills and tablets white or lighter in color and helps make coatings non-transparent.

6 inactive ingredients listed in the exact product block matched to this NDC.

Where does this data come from?
Data sourced from official FDA Structured Product Labeling (SPL) via DailyMedingredient classCode="IACT" elements from the exact product block matched by this NDC. Label-section narrative from DailyMed / the openFDA label index is shown separately when available.

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.

💲 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 eaPer package
Retail pharmacies payNADAC · weekly $8.101 $810.09 / 100 capsules
Medicaid paysCMS SDUD · 12 mo $8.31 $830.81 / 100 capsules
Medicare drug plans payPart D · Q2 2026 $10.30 $1,030.47 / 100 capsules
NADAC price history (per ea) — tap or hover for the price & month
Sep 2023 Jan 2026 Apr 2026 Aug 2026 $10.459 $8.101
▼ Down 23% over the last 11 months.
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.

🔁 Therapeutic equivalents

ProductLabelerPackNADAC/unitTEStatusPrice vs. this
Rifabutin 150 mgthis 59762-1350-01 Mylan 100 capsules $8.101 AB Availability likely
Rifabutin 150 mg 70954-0041-10 ANI 100 capsules $8.101 AB Availability likely
Rifabutin 150 mg 72319-0010-04 i3 100 capsules $8.101 AB Availability likely
Rifabutin 150 mg 10135-0738-01 Marlex 100 capsules AB FDA listed
Rifabutin 150 mg 70518-4254-00 REMEDYREPACK 60 capsules AB FDA listed
Rifabutin 150 mg 70518-4594-00 REMEDYREPACK 60 capsules AB FDA listed
Rifabutin 150 mg 73141-0020-04 A2A 100 capsules AB FDA listed
About this product: this is an authorized generic — the brand-name product marketed without its brand name. 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

🏛️
2014
On the market since
Apr 2014
📍
2026
Currently FDA-listed
12 years listed
🔓
·
Generic versions listed
see equivalents
Generic appears available

FDA-approved generic versions are listed, and recent pricing/market data suggests they may be available — see Therapeutic equivalents.

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.

🗺️ Medicaid utilization & spend

📍 This exact package only: Medicaid data is reported per full 11-digit NDC — labeler, product and pack size — so every number here is for 59762-1350-01, not the drug overall. Other pack sizes report separately.
💊 Pharmacy benefit only: These are Medicaid outpatient pharmacy claims, billed by NDC. They exclude the medical benefit — clinic- or hospital-administered drugs billed under HCPCS J-codes — so drugs used mostly that way (e.g. Avastin, Lucentis, Keytruda) can look low or missing here. That’s expected, not an error.
📅 Q1 2025 – Q4 2025 · 4 quarters of data
ⓘ The newest quarter is usually incomplete when first published; states restate recent quarters in later CMS releases, so the latest figures typically revise upward. State coverage-policy changes can also shift quarter-to-quarter totals.
Prescriptions last 4 qtrs
3.7K
Units reimbursed last 4 qtrs
134.6K
Gross reimbursed last 4 qtrs
$1.12M
Avg / prescription
$302.67
Avg / unit
$8.3081
Latest quarter Q4 2025
1KRx
Medicaid pays / ea
$8.3081
gross reimbursed
vs
NADAC / ea
$8.1009
acquisition cost
=
Spread
+$0.2072
+3% vs cost
What Medicaid paid per ea (before rebates; includes the pharmacy’s dispensing fee) compared with NADAC — the average price pharmacies pay to buy the drug. A positive spread means Medicaid reimbursed more than the purchase price, before manufacturer rebates.
Fee-for-service vs managed care
52% FFS 48% MCO
Fee-for-service · 1,908 Rx Managed care · 1,786 Rx
State Medicaid map
Alaska: no data reported AK Maine: no data reported ME Washington: 2,536 units · 32.5 per 100k residents WA Idaho: no data reported ID Montana: no data reported MT North Dakota: no data reported ND Minnesota: 806 units · 14.0 per 100k residents MN Wisconsin: 1,336 units · 22.6 per 100k residents WI Michigan: 1,745 units · 17.4 per 100k residents MI New York: 33,648 units · 172 per 100k residents NY Vermont: no data reported VT New Hampshire: no data reported NH Oregon: 488 units · 11.5 per 100k residents OR Nevada: 1,236 units · 38.7 per 100k residents NV Wyoming: no data reported WY South Dakota: no data reported SD Iowa: no data reported IA Illinois: 4,176 units · 33.3 per 100k residents IL Indiana: 4,455 units · 64.9 per 100k residents IN Ohio: 2,875 units · 24.4 per 100k residents OH Pennsylvania: 5,204 units · 40.2 per 100k residents PA New Jersey: 7,864 units · 84.7 per 100k residents NJ Massachusetts: 5,358 units · 76.5 per 100k residents MA California: 29,063 units · 74.6 per 100k residents CA Utah: no data reported UT Colorado: no data reported CO Nebraska: no data reported NE Missouri: 2,012 units · 32.5 per 100k residents MO Kentucky: 1,474 units · 32.6 per 100k residents KY West Virginia: no data reported WV Virginia: 7,155 units · 82.1 per 100k residents VA Maryland: 6,148 units · 99.5 per 100k residents MD Connecticut: 2,756 units · 76.2 per 100k residents CT Rhode Island: no data reported RI Arizona: no data reported AZ New Mexico: no data reported NM Kansas: no data reported KS Arkansas: no data reported AR Tennessee: no data reported TN North Carolina: 2,900 units · 26.8 per 100k residents NC South Carolina: 534 units · 9.9 per 100k residents SC Delaware: no data reported DE Oklahoma: no data reported OK Louisiana: no data reported LA Mississippi: no data reported MS Alabama: no data reported AL Georgia: 238 units · 2.2 per 100k residents GA D.C.: no data reported DC Hawaii: no data reported HI Texas: 3,004 units · 9.8 per 100k residents TX Florida: 7,562 units · 33.4 per 100k residents FL
Units reimbursed · per 100k residents
2.2172
gray = no data reported
Colors are per 100,000 residents, so big states don’t automatically dominate. Tap or hover a state for its actual totals.
Tap or hover a state
…for its Medicaid breakdown
🏆 Top states by units · per 100k residents
1 New York 172 /100k
2 Maryland 99.5 /100k
3 New Jersey 84.7 /100k
4 Virginia 82.1 /100k
5 Massachusetts 76.5 /100k
6 Connecticut 76.2 /100k
7 California 74.6 /100k
8 Indiana 64.9 /100k
National units — by quarter
💵 About the dollar figures: “reimbursed” is what Medicaid paid pharmacies before confidential manufacturer rebates, so the program’s real net cost is lower than these numbers. Fee-for-service and managed-care claims are combined unless split above. Source: CMS State Drug Utilization Data; per-100k rates use 2023 Census population estimates.

📊 Medicare Part D spend CMS · PART D · 2026 (Q1)

Medicare Part D (outpatient prescription) spending for Rifabutin — the program that covers self-administered drugs. 3 manufacturers.
⚠️ Drug-level data: CMS publishes Part D spending by drug, not by NDC — these figures combine every manufacturer, strength and package size sold under the name Rifabutin. That’s a different level of aggregation than the Medicaid card above, which is specific to this exact 11-digit NDC (pack size included), so the two aren’t directly comparable.
Period
Total Part D spend
$2.16M
Claims incl. refills
5.2K
Beneficiaries
3.4K
Spend / beneficiary
$635.88
Spend / claim
$417.36
Trend by period
💵 About the dollar figures: spending is what Part D plans paid before confidential manufacturer rebates, so the program’s real net cost is lower. A blank patient count means fewer than 11 people — CMS hides counts that small to protect privacy. Source: CMS Medicare Quarterly Part D Spending by Drug (data.cms.gov), updated quarterly.

📦 Packaging — all sizes for this product

Package NDCDescription Marketing startStatus
59762-1350-01 You're viewing this 100 CAPSULE in 1 BOTTLE (59762-1350-1) 2014-04-07 Active

📄 Full prescribing information FDA SPL

The complete FDA label for this product — the official prescribing information, verbatim, section by section. Jump with a chip, search within the label, or expand everything.
🎯 Indications and Usage 23 words

INDICATIONS AND USAGE Rifabutin capsules are indicated for the prevention of disseminated Mycobacterium avium complex (MAC) disease in patients with advanced HIV infection.

⏱️ Dosage and Administration 144 words

DOSAGE AND ADMINISTRATION It is recommended that rifabutin capsules be administered at a dose of 300 mg once daily. For those patients with propensity to nausea, vomiting, or other gastrointestinal upset, administration of rifabutin at doses of 150 mg twice daily taken with food may be useful. Doses of Rifabutin capsules may be administered mixed with foods such as applesauce.

For patients with severe renal impairment (creatinine clearance less than 30 mL/min), consider reducing the dose of rifabutin by 50%, if toxicity is suspected. No dosage adjustment is required for patients with mild to moderate renal impairment. Reduction of the dose of rifabutin may also be needed for patients receiving concomitant treatment with certain other drugs (see PRECAUTIONS-Drug Interactions ).

Mild hepatic impairment does not require a dose modification. The pharmacokinetics of rifabutin in patients with moderate and severe hepatic impairment is not known.

Contraindications 39 words

CONTRAINDICATIONS Rifabutin capsules are contraindicated in patients who have had clinically significant hypersensitivity to rifabutin or to any other rifamycins. Rifabutin capsules are contraindicated in patients being treated with cabotegravir/rilpivirine prolonged-release injectable suspension (see PRECAUTIONS-Drug Interactions, Table 2 ).

⚠️ Warnings ~2 min read

WARNINGS Tuberculosis Rifabutin capsules must not be administered for MAC prophylaxis to patients with active tuberculosis. Patients who develop complaints consistent with active tuberculosis while on prophylaxis with rifabutin should be evaluated immediately, so that those with active disease may be given an effective combination regimen of anti-tuberculosis medications. Administration of rifabutin as a single agent to patients with active tuberculosis is likely to lead to the development of tuberculosis that is resistant both to rifabutin and to rifampin.

There is no evidence that rifabutin is an effective prophylaxis against M. tuberculosis . Patients requiring prophylaxis against both M. tuberculosis and Mycobacterium avium complex may be given isoniazid and rifabutin concurrently. Tuberculosis in HIV-positive patients is common and may present with atypical or extrapulmonary findings.

Patients are likely to have a nonreactive purified protein derivative (PPD) despite active disease. In addition to chest X-ray and sputum culture, the following studies may be useful in the diagnosis of tuberculosis in the HIV-positive patient: blood culture, urine culture, or biopsy of a suspicious lymph node. MAC Treatment with Clarithromycin When rifabutin is used concomitantly with clarithromycin for MAC treatment, a decreased dose of rifabutin is recommended due to the increase in plasma concentrations of rifabutin (see PRECAUTIONS-Drug Interactions, Table 2 ).

Hypersensitivity and Related Reactions Hypersensitivity reactions may occur in patients receiving rifamycins. Signs and symptoms of these reactions may include hypotension, urticaria, angioedema, acute bronchospasm, conjunctivitis, thrombocytopenia, neutropenia or flu-like syndrome (weakness, fatigue, muscle pain, nausea, vomiting, headache, fever, chills, aches, rash, itching, sweats, dizziness, shortness of breath, chest pain, cough, syncope, palpitations). There have been reports of anaphylaxis with the use of rifamycins.

Monitor patients receiving rifabutin therapy for signs and/or symptoms of hypersensitivity reactions. If these symptoms occur, administer supportive measures and discontinue rifabutin. Uveitis Due to the possible occurrence of uveitis, patients should also be carefully monitored when rifabutin is given in combination with clarithromycin (or other macrolides) and/or fluconazole and related compounds (see PRECAUTIONS-Drug Interactions, Table 2 ).

If uveitis is suspected, the patient should be referred to an ophthalmologist and, if considered necessary, treatment with rifabutin should be suspended (see also ADVERSE REACTIONS ). Clostridioides difficile Associated Diarrhea Clostridioides difficile associated diarrhea (CDAD) has been reported with use of nearly all antibacterial agents, including rifabutin capsules, USP, 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 antibacterial 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 antibacterial use not directed against C. difficile may need to be discontinued. Appropriate fluid and electrolyte management, protein supplementation, antibacterial treatment of C. difficile , and surgical evaluation should be instituted as clinically indicated.

Severe Cutaneous Adverse Reactions There have been reports of severe cutaneous adverse reactions (SCAR), such as Stevens-Johnson syndrome (SJS), toxic epidermal necrolysis (TEN), drug reac…

🤒 Adverse Reactions ~3 min read

ADVERSE REACTIONS Adverse Reactions from Clinical Trials Rifabutin capsules were generally well tolerated in the controlled clinical trials. Discontinuation of therapy due to an adverse event was required in 16% of patients receiving rifabutin, compared to 8% of patients receiving placebo in these trials. Primary reasons for discontinuation of rifabutin were rash (4% of treated patients), gastrointestinal intolerance (3%), and neutropenia (2%).

The following table enumerates adverse experiences that occurred at a frequency of 1% or greater, among the patients treated with rifabutin in studies 023 and 027. Table 3 Clinical Adverse Experiences Reported in ≥1% of Patients Treated With Rifabutin Adverse event Rifabutin (n = 566) % Placebo (n = 580) % Body as a whole Abdominal pain 4 3 Asthenia 1 1 Chest pain 1 1 Fever 2 1 Headache 3 5 Pain 1 2 Blood and lymphatic system Leucopenia 10 7 Anemia 1 2 Digestive System Anorexia 2 2 Diarrhea 3 3 Dyspepsia 3 1 Eructation 3 1 Flatulence 2 1 Nausea 6 5 Nausea and vomiting 3 2 Vomiting 1 1 Musculoskeletal system Myalgia 2 1 Nervous system Insomnia 1 1 Skin and appendages Rash 11 8 Special senses Taste perversion 3 1 Urogenital system Discolored urine 30 6 CLINICAL ADVERSE EVENTS REPORTED IN <1% OF PATIENTS WHO RECEIVED RIFABUTIN Considering data from the 023 and 027 pivotal trials, and from other clinical studies, rifabutin appears to be a likely cause of the following adverse events which occurred in less than 1% of treated patients: flu-like syndrome, hepatitis, hemolysis, arthralgia, myositis, chest pressure or pain with dyspnea, skin discoloration, thrombocytopenia, pancytopenia and jaundice.

The following adverse events have occurred in more than one patient receiving rifabutin, but an etiologic role has not been established: seizure, paresthesia, aphasia, confusion, and non-specific T wave changes on electrocardiogram. When rifabutin was administered at doses from 1050 mg/day to 2400 mg/day, generalized arthralgia and uveitis were reported. These adverse experiences abated when rifabutin was discontinued.

Mild to severe, reversible uveitis has been reported less frequently when rifabutin is used at 300 mg as monotherapy in MAC prophylaxis versus rifabutin in combination with clarithromycin for MAC treatment (see also WARNINGS ). Uveitis has been infrequently reported when rifabutin is used at 300 mg/day as monotherapy in MAC prophylaxis of HIV-infected persons, even with the concomitant use of fluconazole and/or macrolide antibacterials. However, if higher doses of rifabutin are administered in combination with these agents, the incidence of uveitis is higher.

Patients who developed uveitis had mild to severe symptoms that resolved after treatment with corticosteroids and/or mydriatic eye drops; in some severe cases, however, resolution of symptoms occurred after several weeks. When uveitis occurs, temporary discontinuance of rifabutin and ophthalmologic evaluation are recommended. In most mild cases, rifabutin may be restarted; however, if signs or symptoms recur, use of rifabutin should be discontinued (Morbidity and Mortality Weekly Report, September 9, 1994).

Corneal deposits have been reported during routine ophthalmologic surveillance of some HIV-positive pediatric patients receiving rifabutin as part of a multiple drug regimen for MAC prophylaxis. The deposits are tiny, almost transparent, asymptomatic peripheral and central corneal deposits, and do not impair vision. The following table enumerates the changes in laboratory values that were considered as laboratory abnormalities in Studies 023 and 027.

Table 4 Percentage of Patients With Laboratory Abnormalities Laboratory abnormalities Rifabutin (n = 566) % Placebo (n = 580) % Includes grades 3 or 4 toxicities as specified: Chemistry Increased alkaline phosphatase All values >450 U/L <1 3 Increased SGOT All values >150 U/L 7 12 Increased SGPT 9 11 Hematology Anemia All hemoglobin values <8.0 g/dL 6 7 Eosinophilia 1 1 Leukopenia…

🔄 Drug Interactions ~3 min read

Drug Interactions Effect of Rifabutin on the Pharmacokinetics of Other Drugs Rifabutin induces CYP3A enzymes and therefore may reduce the plasma concentrations of drugs metabolized by those enzymes. This effect may reduce the efficacy of standard doses of such drugs, which include itraconazole, clarithromycin, and saquinavir. Effect of Other Drugs on Rifabutin Pharmacokinetics Some drugs that inhibit CYP3A may significantly increase the plasma concentration of rifabutin.

Therefore, carefully monitor for rifabutin associated adverse events in those patients also receiving CYP3A inhibitors, which include fluconazole and clarithromycin. In some cases, the dosage of rifabutin may need to be reduced when it is co-administered with CYP3A inhibitors. Table 2 summarizes the results and magnitude of the pertinent drug interactions assessed with rifabutin.

The clinical relevance of these interactions and subsequent dose modifications should be judged in light of the population studied, severity of the disease, patient's drug profile, and the likely impact on the risk/benefit ratio. Table 2 Rifabutin Interaction Studies Co-administered drug Dosing regimen of co-administered drug Dosing regimen of rifabutin Study population (n) Effect on rifabutin Effect on co-administered drug Recommendation ↑ indicates increase; ↓ indicates decrease; ↔ indicates no significant change ND - No Data AUC - Area under the Concentration vs.

Time Curve; C max - Maximum serum concentration; C min – Minimum serum concentration ANTIRETROVIRALS Amprenavir 1200 mg twice a day for 10 days 300 mg once a day for 10 days Healthy male subjects (6) ↑ AUC by 193%, ↑ C max by 119% ↔ Reduce rifabutin dose by at least 50%. Monitor closely for adverse reactions. Atazanavir/Ritonavir 300/100 mg once daily 150 mg twice weekly Healthy adult subjects 48% ↑ in AUC, 149% ↑ C max of rifabutin.

990% ↑ in AUC, 677% ↑ C max of 25‑O‑desacetyl-rifabutin. No significant change in pharmacokinetics. A reduction in the dose of rifabutin (to 150 mg every other day or 3 times a week) is recommended.

Increased monitoring for adverse reactions is warranted. Bictegravir 75 mg once a day 300 mg once a day (fasted) Healthy subjects ND ↓ AUC 38% ↓ C min 56% ↓ C max 20% Co-administration of rifabutin with Biktarvy (bictegravir/emtricitabine/ tenofovir alafenamide) is not recommended due to an expected decrease in tenofovir alafenamide in addition to the reported reduction in bictegravir. Refer to Biktarvy prescribing information for additional information.

Darunavir/Ritonavir 600/100 mg twice a day for 12 days 150 mg every other day for 12 days Healthy HIV- negative adults No significant change in rifabutin pharmacokinetics. 881% ↑ in AUC, 377% ↑ C max of 25‑O‑desacetyl-rifabutin. 57% ↑ in AUC, 42% ↑ C max of darunavir.

66% ↑ in AUC, 68% ↑ C max of ritonavir. A reduction in the dose of rifabutin (to 150 mg every other day or 3 times a week) is recommended. Increased monitoring for adverse reactions is warranted.

Delavirdine 400 mg three times a day 300 mg once a day HIV-infected patients (7) ↑ AUC by 230%, ↑ C max by 128% ↓ AUC by 80%, ↓ C max by 75%, ↓ C min by 17% CONTRAINDICATED Didanosine 167 or 250 mg twice a day for 12 days 300 or 600 mg once a day for 12 days HIV-infected patients (11) ↔ ↔ Dolutegravir 50 mg daily for 14 days 300 mg daily for 14 days Healthy adult subjects ND No significant change in dolutegravir pharmacokinetics at steady state. Doravirine 100 mg single dose 300 mg once a day for 16 days Healthy subjects (12) ND ↓ 50% in AUC, ↓ 68% in C 24 ↔ in C max If concomitant use is necessary, increase the doravirine dosage as instructed in doravirine-containing product prescribing information.

Elvitegravir/Cobicistat 150/50 mg daily 300 mg daily Or 150 mg every other day Healthy subjects (12) No significant change in rifabutin pharmacokinetics. 6.3-fold ↑ in AUC, 4.8-fold ↑ C max of 25‑O‑desacetyl-rifabutin. No change in elvitegravir except 67% ↓ C trough of elvitegravir.

No change in…

🤰 Pregnancy 185 words

Pregnancy Rifabutin should be used in pregnant women only if the potential benefit justifies the potential risk to the fetus. There are no adequate and well-controlled studies in pregnant or breastfeeding women. Reproduction studies have been carried out in rats and rabbits given rifabutin using dose levels up to 200 mg/kg (about 6 to 13 times the recommended human daily dose based on body surface area comparisons).

No teratogenicity was observed in either species. In rats, given 200 mg/kg/day, (about 6 times the recommended human daily dose based on body surface area comparisons), there was a decrease in fetal viability. In rats, at 40 mg/kg/day (approximately equivalent to the recommended human daily dose based on body surface area comparisons), rifabutin caused an increase in fetal skeletal variants.

In rabbits, at 80 mg/kg/day (about 5 times the recommended human daily dose based on body surface area comparisons), rifabutin caused maternotoxicity and increase in fetal skeletal anomalies. Because animal reproduction studies are not always predictive of human response, rifabutin should be used in pregnant women only if the potential benefit justifies the potential risk to the fetus.

🧒 Pediatric Use 169 words

Pediatric Use Safety and effectiveness of rifabutin for prophylaxis of MAC in children have not been established. Limited safety data are available from treatment use in 22 HIV-positive children with MAC who received rifabutin in combination with at least two other antimycobacterials for periods from 1 to 183 weeks. Mean doses (mg/kg) for these children were: 18.5 (range 15.0 to 25.0) for infants 1 year of age, 8.6 (range 4.4 to 18.8) for children 2 to 10 years of age, and 4.0 (range 2.8 to 5.4) for adolescents 14 to 16 years of age.

There is no evidence that doses greater than 5 mg/kg daily are useful. Adverse experiences were similar to those observed in the adult population, and included leukopenia, neutropenia, and rash. In addition, corneal deposits have been observed in some patients during routine ophthalmologic surveillance of HIV-positive pediatric patients receiving rifabutin as part of a multiple-drug regimen for MAC prophylaxis.

These are tiny, almost transparent, asymptomatic peripheral and central corneal deposits which do not impair vision.

🧓 Geriatric Use 86 words

Geriatric Use Clinical studies of rifabutin did not include sufficient numbers of subjects aged 65 and over to determine whether they respond differently from younger subjects. Other reported clinical experience has not identified differences in responses between the elderly and younger patients. In general, dose selection for an elderly patient should be cautious, usually starting at the low end of the dosing range, reflecting the greater frequency of decreased hepatic, renal, or cardiac function, and of concomitant disease or other drug therapy (see CLINICAL PHARMACOLOGY ).

🆘 Overdosage 119 words

OVERDOSAGE No information is available on accidental overdosage in humans. Treatment While there is no experience in the treatment of overdose with rifabutin capsules, clinical experience with rifamycins suggests that gastric lavage to evacuate gastric contents (within a few hours of overdose), followed by instillation of an activated charcoal slurry into the stomach, may help absorb any remaining drug from the gastrointestinal tract. Rifabutin is 85% protein bound and distributed extensively into tissues (Vss:8 to 9 L/kg).

It is not primarily excreted via the urinary route (less than 10% as unchanged drug); therefore, neither hemodialysis nor forced diuresis is expected to enhance the systemic elimination of unchanged rifabutin from the body in a patient with an overdose of rifabutin.

🧬 Clinical Pharmacology ~3 min read

CLINICAL PHARMACOLOGY Pharmacokinetics Absorption Following a single oral dose of 300 mg to nine healthy adult volunteers, rifabutin was readily absorbed from the gastrointestinal tract with mean (±SD) peak plasma levels (C max ) of 375 (±267) ng/mL (range: 141 to 1033 ng/mL) attained in 3.3 (±0.9) hours (T max range: 2 to 4 hours). Absolute bioavailability assessed in five HIV-positive patients, who received both oral and intravenous doses, averaged 20%. Total recovery of radioactivity in the urine indicates that at least 53% of the orally administered rifabutin dose is absorbed from the gastrointestinal tract.

The bioavailability of rifabutin from the capsule dosage form, relative to an oral solution, was 85% in 12 healthy adult volunteers. High-fat meals slow the rate without influencing the extent of absorption from the capsule dosage form. Plasma concentrations post-C max declined in an apparent biphasic manner.

Pharmacokinetic dose-proportionality was established over the 300 mg to 600 mg dose range in nine healthy adult volunteers (crossover design) and in 16 early symptomatic human immunodeficiency virus (HIV)-positive patients over a 300 mg to 900 mg dose range. Distribution Due to its high lipophilicity, rifabutin demonstrates a high propensity for distribution and intracellular tissue uptake. Following intravenous dosing, estimates of apparent steady-state distribution volume (9.3 ±

1.5L/kg) in five HIV-positive patients exceeded total body water by approximately 15-fold. Substantially higher intracellular tissue levels than those seen in plasma have been observed in both rat and man. The lung-to-plasma concentration ratio, obtained at 12 hours, was approximately 6.5 in four surgical patients who received an oral dose.

Mean rifabutin steady-state trough levels (C p,min ss ; 24-hour post-dose) ranged from 50 to 65 ng/mL in HIV-positive patients and in healthy adult volunteers. About 85% of the drug is bound in a concentration-independent manner to plasma proteins over a concentration range of 0.05 to 1 µg/mL. Binding does not appear to be influenced by renal or hepatic dysfunction.

Rifabutin was slowly eliminated from plasma in seven healthy adult volunteers, presumably because of distribution-limited elimination, with a mean terminal half-life of 45 (±17) hours (range: 16 to 69 hours). Although the systemic levels of rifabutin following multiple dosing decreased by 38%, its terminal half-life remained unchanged. Metabolism Of the five metabolites that have been identified, 25-O-desacetyl and 31-hydroxy are the most predominant, and show a plasma metabolite:parent area under the curve ratio of 0.10 and 0.07, respectively.

The former has an activity equal to the parent drug and contributes up to 10% to the total antimicrobial activity. Excretion A mass-balance study in three healthy adult volunteers with 14 C-labeled rifabutin showed that 53% of the oral dose was excreted in the urine, primarily as metabolites. About 30% of the dose is excreted in the feces.

Mean systemic clearance (CL s /F) in healthy adult volunteers following a single oral dose was 0.69 (±0.32) L/hr/kg (range: 0.46 to

1.34L/hr/kg). Renal and biliary clearance of unchanged drug each contribute approximately 5% to CL s /F. Pharmacokinetics in Special Populations Geriatric Compared to healthy volunteers, steady-state pharmacokinetics of rifabutin are more variable in elderly patients (>70 years).

Pediatric The pharmacokinetics of rifabutin have not been studied in subjects under 18 years of age. Renal Impairment The disposition of rifabutin (300 mg) was studied in 18 patients with varying degrees of renal function. Area under plasma concentration time curve (AUC) increased by about 71% in patients with severe renal impairment (creatinine clearance below 30 mL/min) compared to patients with creatinine clearance (Cr cl ) between 61–74 mL/min.

In patients with mild to moderate renal impairment (Cr cl between 30–61 mL/min), the AUC increased by about 41…

🧬 Mechanism of Action 60 words

Mechanism of Action Rifabutin inhibits DNA-dependent RNA polymerase in susceptible strains of Escherichia coli and Bacillus subtilis but not in mammalian cells. In resistant strains of E. coli , rifabutin, like rifampin, did not inhibit this enzyme. It is not known whether rifabutin inhibits DNA-dependent RNA polymerase in Mycobacterium avium or in M. intracellulare which comprise M. avium complex (MAC).

📦 How Supplied / Storage and Handling 72 words

HOW SUPPLIED Rifabutin capsules, USP are supplied as hard gelatin capsules having an opaque red-brown cap and body, imprinted with MYCOBUTIN/PHARMACIA & UPJOHN in white ink, each containing 150 mg of rifabutin, USP. Rifabutin is available as follows: NDC 59762-1350-1 Bottles of 100 capsules Keep tightly closed and dispense in a tight container as defined in the USP. Store at 25°C (77°F); excursions permitted to 15°–30°C (59°–86°F) [see USP Controlled Room Temperature].

📦 Storage and Handling 28 words

Keep tightly closed and dispense in a tight container as defined in the USP. Store at 25°C (77°F); excursions permitted to 15°–30°C (59°–86°F) [see USP Controlled Room Temperature].

📋 Description 156 words

DESCRIPTION Rifabutin capsules for oral administration contain 150 mg of the rifamycin antimycobacterial agent rifabutin, USP, per capsule, along with the inactive ingredients, microcrystalline cellulose, magnesium stearate, red iron oxide, silica gel, sodium lauryl sulfate, titanium dioxide, and edible white ink. The chemical name for rifabutin is 1',4-didehydro-1-deoxy-1,4-dihydro-5'-(2-methylpropyl)-1-oxorifamycin XIV (Chemical Abstracts Service, 9th Collective Index) or (9 S ,12 E ,14 S ,15 R ,16 S ,17 R ,18 R ,19 R ,20 S ,21 S ,22 E ,24 Z )-6,16,18,20-tetrahydroxy-1'-isobutyl-14-methoxy-7,9,15,17,19,21,25-heptamethyl-spiro [9,4-(epoxypentadeca[1,11,13]trienimino)-2 H -furo[2',3':7,8]naphth[1,2-d] imidazole-2,4'-piperidine]-5,10,26-(3 H ,9 H )-trione-16-acetate.

Rifabutin has a molecular formula of C 46 H 62 N 4 O 11 , a molecular weight of 847.02 and the following structure: Rifabutin is a red-violet powder soluble in chloroform and methanol, sparingly soluble in ethanol, and very slightly soluble in water (0.19 mg/mL). Its log P value (the base 10 logarithm of the partition coefficient between n-octanol and water) is 3.2 (n-octanol/water). Chemical Structure

💬 Information for Patients 171 words

Information for Patients Patients should be advised of the signs and symptoms of both MAC and tuberculosis, and should be instructed to consult their physicians if they develop new complaints consistent with either of these diseases. In addition, since rifabutin may rarely be associated with myositis and uveitis, patients should be advised to notify their physicians if they develop signs or symptoms suggesting either of these disorders. Urine, feces, saliva, sputum, perspiration, tears, and skin may be colored brown-orange with rifabutin and some of its metabolites.

Soft contact lenses may be permanently stained. Patients to be treated with rifabutin should be made aware of these possibilities. Diarrhea is a common problem caused by antibacterials which usually ends when the antibacterial is discontinued.

Sometimes, after starting treatment with antibacterials, 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 antibacterial. If this occurs, patients should contact their physician as soon as possible.

Source: FDA Structured Product Labeling, mirrored from DailyMed / openFDA. Prefer the government’s original formatting? View this label on DailyMed ↗
For educational and professional reference only — not medical advice. Pricing reflects published NADAC and CMS ASP (free public data) and may differ from your acquisition cost; always verify before billing or dispensing.