Registered South Africa · SAHPRA

TACROLIMUS 5 mg ASCENDIS

Tacrolimus

56/32.16/1228 INN generic

What it does

Tacrolimus is a medication that helps prevent the body from rejecting transplanted organs and treats certain autoimmune conditions.

Commonly used for: organ transplant rejection prevention, autoimmune diseases

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Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.

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Answers come only from this medicine's registration record, BNF monograph and interaction data - not medical advice.

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Sourcing - Kenya only

Registration & product details

Registration no.
56/32.16/1228
Registration date
2025/07/15
Expiry date
-
Status
Registered
Active ingredient
Tacrolimus
Dosage form
-
Strength
-
Pack size
-
Therapeutic class
-
Manufacturer / MAH
-
Applicant / LTR
Ascendis Pharma (Pty) Ltd
Country of origin
-

Source: South African Health Products Regulatory Authority · fetched 2026-04-15 21:29:58 · updated 2026-09-13 04:02:10

Drug Interactions

49
Check interactions

Pharmacodynamic Warnings

Tacrolimus appears in TABLE 2: Drugs that cause nephrotoxicity

Tacrolimus appears in TABLE 16: Drugs that increase serum potassium

Severe (8)

Dabigatran - increases exposure

Tacrolimus is predicted to increase the exposure to thrombin inhibitors (dabigatran). Avoid.

Severe Theoretical

Tacrolimus - decreases concentration

Brigatinib potentially decreases the concentration of tacrolimus. Avoid. Theoretical Brimonidine → see TABLE 6 p. 1518 (bradycardia), TABLE 8 p. 1518 (hypotension), TABLE 11 p. 1519 (CNS depressant ef

Severe Theoretical

Tacrolimus - increases concentration

Ciclosporinincreasestheconcentrationoftacrolimus.Avoid. rStudy →AlsoseeTABLE2p.1517 →AlsoseeTABLE16p.1521

Severe Study

Tacrolimus - increases risk of immunosuppression

Filgotinib is predicted to increase the risk of immunosuppression when given with tacrolimus. Avoid.

Severe Theoretical

Tacrolimus - increases concentration

Grapefruit juice greatly increases the concentration of tacrolimus. Avoid.

Severe Study

Tacrolimus - decreases exposure

Lumacaftorispredictedtodecreasetheexposureto tacrolimus.Avoid.rTheoretical

Severe Theoretical

Thrombin Inhibitors - increases exposure

Tacrolimus is predicted to increase the exposure to thrombin inhibitors (dabigatran). Avoid.

Severe Theoretical

Tofacitinib - increases exposure

Tacrolimus increases the exposure to tofacitinib. Avoid.

Severe Study

Moderate (16)

Tacrolimus - increases concentration

Miconazole is predicted to increase the concentration of tacrolimus. Monitor and adjust dose.

Moderate Theoretical

Tacrolimus - increases concentration

Nicardipine potentially increases the concentration of tacrolimus. Monitor concentration and adjust dose.

Moderate Anecdotal

Tacrolimus - increases concentration

Cannabidiol is predicted to increase the concentration of tacrolimus. Monitor and adjust dose. Theoretical Capecitabine → see TABLE 15 p. 1520 (myelosuppression)

Moderate Theoretical

Tacrolimus - increases concentration

Cobicistat is predicted to increase the concentration of tacrolimus. Monitor and adjust dose.

Moderate Study

Tacrolimus - increases concentration

Idelalisib is predicted to increase the concentration of tacrolimus. Monitor and adjust dose.

Moderate Study

Unknown (25)

Afatinib - increases exposure

Tacrolimusispredictedtoincreasetheexposuretoafatinib. oTheoretical

Unknown Theoretical

Lomitapide - increases exposure

Tacrolimus is predicted to increase the exposure to lomitapide. Separate administration by 12 hours.

Unknown Theoretical

Mifamurtide - affects efficacy

Tacrolimusispredictedtoaffecttheefficacyofmifamurtide. Avoid.rTheoretical Mifepristone

Unknown Theoretical

Tacrolimus - increases concentration

Amiodarone is predicted to increase the concentration of tacrolimus.

Unknown Anecdotal

Tacrolimus - increases concentration

Dronedarone is predicted to increase the concentration of tacrolimus.

Unknown Study

Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: exact

Disclaimer: This information is sourced from South African Health Products Regulatory Authority (South Africa). Always consult a qualified healthcare professional before using any medication.

About this medicine

Tacrolimus is a medication that helps prevent the body from rejecting transplanted organs and treats certain autoimmune conditions.

What it treats

  • organ transplant rejection prevention
  • autoimmune diseases

How it works

Tacrolimus works by suppressing the immune system to prevent it from attacking the transplanted organ or affecting the body's own tissues in autoimmune diseases.

Who it's for

This medication is for people who have had an organ transplant or have certain autoimmune conditions.

Cautions

  • • Be careful if taking other medicines that can harm the kidneys.
  • • Avoid drugs that may raise potassium levels in the blood.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

Clinical monograph: Tacrolimus

BNF-referenced

Tacrolimus is a macrolide immunosuppressant produced by Streptomyces tsukubaensis, primarily utilized in kidney and liver transplantation to prevent graft rejection. It is also indicated for the treatment of moderate to severe atopic dermatitis in patients who do not respond to conventional therapy. Tacrolimus is available in both oral and topical formulations.

Indications

  • Prophylaxis of graft rejection following kidney transplantation
  • Prophylaxis of graft rejection following liver transplantation
  • Rejection therapy in transplant patients
  • Short-term treatment of moderate to severe atopic dermatitis in patients aged 16 years and over

Dosage

Adults: Initially 100–200 micrograms/kg daily in 2 divided doses, or 200–300 micrograms/kg once daily, taken in the morning. Adjust according to the clinical response and specialist advice.

Mechanism of action

Tacrolimus inhibits T-lymphocyte activation by binding to an intracellular protein, FKBP-12. This complex inhibits calcineurin's phosphatase activity, preventing the dephosphorylation and translocation of nuclear factor of activated T-cells (NF-AT), which is crucial for the transcription of lymphokines. Tacrolimus also inhibits the transcription of interleukins involved in T-cell activation and reduces mediator release from mast cells and basophils.

Pharmacodynamics

Tacrolimus reduces peptidyl-prolyl isomerase activity through its binding with FKBP-12, leading to inhibition of T-lymphocyte signal transduction and interleukin-2 transcription. It is less potent than systemic steroids but provides an advantage in treating facial eczema due to its safety profile, as topical steroids can cause skin thinning. Tacrolimus effectively suppresses inflammation, making it suitable for dermatological applications.

Pharmacokinetics

Tacrolimus is absorbed through the gastrointestinal tract with peak plasma concentrations typically occurring within 1-3 hours after oral administration. It has a high protein binding rate (approximately 98-99%) and is extensively metabolized by the liver, primarily via CYP3A4. The elimination half-life is approximately 12 hours, but can vary significantly between individuals. Tacrolimus is excreted mainly in the bile and feces, with a minor amount eliminated in urine.

BNF 85 (British National Formulary) p.940 BNF 85 (British National Formulary) p.1394 BNF for Children 2019-2020 p.562 BNF for Children 2019-2020 p.792 PubChem / pathway

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Molecular reference: Tacrolimus

PubChem CID 445643

Molecular formula: C44H69NO12

Mechanism of action

The mechanism of action of tacrolimus in atopic dermatitis is not known. While the following have been observed, the clinical significance of these observations in atopic dermatitis is not known. It has been demonstrated that tacrolimus inhibits T-lymphocyte activation by first binding to an intracellular protein, FKBP-12. A complex of tacrolimus-FKBP-12, calcium, calmodulin, and calcineurin is then formed and the phosphatase activity of calcineurin is inhibited. This prevents the dephosphorylation and translocation of nuclear factor of activated T-cells (NF-AT), a nuclear component thought to initiate gene transcription for the formation of lymphokines. Tacrolimus also inhibits the transcription for genes which encode IL-3, IL-4, IL-5, GM-CSF, and TNF-, all of which are involved in the early stages of T-cell activation. Additionally, tacrolimus has been shown to inhibit the release of pre-formed mediators from skin mast cells and basophils, and to downregulate the expression of FceRI on Langerhans cells. Tacrolimus is a macrolide immunosuppressant produced by Streptomyces tsukubaensis. Tacrolimus is commercially available for topical use as a 0.03 or 0.1% ointment. The exact mechanism(s) of action of tacrolimus in the treatment of atopic dermatitis has not been elucidated but appears to involve inhibition of the activation of T cells. Tacrolimus also has been shown to inhibit release of mediators from skin mast cells and basophils and to downregulate the expression of high-affinity receptors for immunoglobulin E (IgE) on Langerhans cells. Although tacrolimus is not genotoxic and does not interact directly with DNA, the drug may impair local immunosurveillance. Tacrolimus inhibits T-lymphocyte activation, although the exact mechanism of action is not known. Experimental evidence suggests that tacrolimus binds to an intracellular protein, FKBP-12. A complex of tacrolimus-FKBP-12, calcium, calmodulin, and calcineurin is then formed and the phosphatase activity of calcineurin inhibited. This effect may prevent the dephosphorylation and translocation of nuclear factor of activated T-cells (NF-AT), a nuclear component thought to initiate gene transcription for the formation of lymphokines (such as interleukin-2, gamma interferon). The net result is the inhibition of T-lymphocyte activation (i.e., immunosuppression). The mechanism of action of tacrolimus in atopic dermatitis is not known. While the following have been observed, the clinical significance of these observations in atopic dermatitis is not known. It has been demonstrated that tacrolimus inhibits T-lymphocyte activation by first binding to an intracellular protein, FKBP-12. A complex of tacrolimus-FKBP-12, calcium, calmodulin, and calcineurin is then formed and the phosphatase activity of calcineurin is inhibited. This effect has been shown to prevent the dephosphorylation and translocation of nuclear factor of activated T-cells (NF-AT), a nuclear component thought to initiate gene transcription for the formation of lymphokines (such as interleukin-2, gamma interferon). Tacrolimus also inhibits the transcription for genes which encode IL-3, IL-4, IL-5, GM-CSF, and TNF-a, all of which are involved in the early stages of T-cell activation. Additionally, tacrolimus has been shown to inhibit the release of pre-formed mediators from skin mast cells and basophils, and to down regulate the expression of FceRI on Langerhans cells. Tacrolimus, formerly known as FK506, is a macrolide antibiotic with immunosuppressive properties. Although structurally unrelated to cyclosporin A (CsA), its mode of action is similar. It exerts its effects principally through impairment of gene expression in target cells. Tacrolimus bonds to an immunophilin, FK506 binding protein (FKBP). This complex inhibits calcineurin phosphatase. The drug inhibits calcium-dependent events, such as interleukin-2 gene transcription, nitric oxide synthase activation, cell degranulation, and apoptosis. Tacrolimus also

Pharmacodynamics

Tacrolimus acts by reducing peptidyl-prolyl isomerase activity by binding to the immunophilin FKBP-12 (FK506 binding protein) creating a new complex. This inhibits both T-lymphocyte signal transduction and IL-2 transcription. Tacrolimus has similar activity to cyclosporine but rates of rejection are lower with tacrolimus. Tacrolimus has also been shown to be effective in the topical treatment of eczema, particularly atopic eczema. It suppresses inflammation in a similar way to steroids, but is not as powerful. An important dermatological advantage of tacrolimus is that it can be used directly on the face; topical steroids cannot be used on the face, as they thin the skin dramatically there. On other parts of the body, topical steroid are generally a better treatment.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

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The same active ingredient registered across other registries we cover - including different brands.