tacrolimus

Tacrolimus is a lipid of Polyketides (PK) class. Tacrolimus is associated with abnormalities such as Renal glomerular disease. The involved functions are known as inhibitors, Fungicidal activity, Metabolic Inhibition, Excretory function and Dephosphorylation. Tacrolimus often locates in Hepatic, Mitochondrial matrix and Inner mitochondrial membrane. The associated genes with Tacrolimus are RHOA gene and BGN gene.

Cross Reference

Introduction

To understand associated biological information of tacrolimus, we collected biological information of abnormalities, associated pathways, cellular/molecular locations, biological functions, related genes/proteins, lipids and common seen animal/experimental models with organized paragraphs from literatures.

What diseases are associated with tacrolimus?

tacrolimus is suspected in Renal glomerular disease, Candidiasis, Mycoses, PARKINSON DISEASE, LATE-ONSET, Morphologically altered structure, Skin Diseases, Infectious and other diseases in descending order of the highest number of associated sentences.

Related references are mostly published in these journals:

Disease Cross reference Weighted score Related literature
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Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with tacrolimus

MeSH term MeSH ID Detail
Dermatitis, Allergic Contact D017449 20 associated lipids
Drug Hypersensitivity D004342 20 associated lipids
Translocation, Genetic D014178 20 associated lipids
HIV Infections D015658 20 associated lipids
Ataxia D001259 20 associated lipids
Gastrointestinal Diseases D005767 20 associated lipids
Parkinsonian Disorders D020734 20 associated lipids
Brain Edema D001929 20 associated lipids
Hyperglycemia D006943 21 associated lipids
Bacterial Infections D001424 21 associated lipids
Anemia D000740 21 associated lipids
Vomiting D014839 21 associated lipids
Erythema D004890 22 associated lipids
Hypoxia-Ischemia, Brain D020925 22 associated lipids
Hypersensitivity D006967 22 associated lipids
Fibrosis D005355 23 associated lipids
Cystitis D003556 23 associated lipids
Leukemia, T-Cell D015458 23 associated lipids
Neoplasm Invasiveness D009361 23 associated lipids
Cholestasis D002779 23 associated lipids
Genetic Predisposition to Disease D020022 24 associated lipids
Colitis, Ulcerative D003093 24 associated lipids
Arthritis, Experimental D001169 24 associated lipids
Lymphoma, B-Cell D016393 24 associated lipids
Cardiovascular Diseases D002318 24 associated lipids
Pseudomonas Infections D011552 25 associated lipids
Cerebrovascular Disorders D002561 25 associated lipids
Ascites D001201 25 associated lipids
Leukemia-Lymphoma, Adult T-Cell D015459 25 associated lipids
Encephalomyelitis, Autoimmune, Experimental D004681 26 associated lipids
Brain Diseases D001927 27 associated lipids
Autoimmune Diseases D001327 27 associated lipids
Endotoxemia D019446 27 associated lipids
Ventricular Remodeling D020257 28 associated lipids
Obesity D009765 29 associated lipids
Kidney Diseases D007674 29 associated lipids
Catalepsy D002375 30 associated lipids
Dermatitis D003872 30 associated lipids
Drug Eruptions D003875 30 associated lipids
Proteinuria D011507 30 associated lipids
Liver Diseases D008107 31 associated lipids
Cardiomegaly D006332 31 associated lipids
Stroke D020521 32 associated lipids
Diarrhea D003967 32 associated lipids
Neurodegenerative Diseases D019636 32 associated lipids
Memory Disorders D008569 33 associated lipids
Uremia D014511 33 associated lipids
Peripheral Nervous System Diseases D010523 33 associated lipids
Ventricular Dysfunction, Left D018487 33 associated lipids
Neurotoxicity Syndromes D020258 34 associated lipids
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PubChem Associated disorders and diseases

What pathways are associated with tacrolimus

There are no associated biomedical information in the current reference collection.

PubChem Biomolecular Interactions and Pathways

Link to PubChem Biomolecular Interactions and Pathways

What cellular locations are associated with tacrolimus?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
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What functions are associated with tacrolimus?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with tacrolimus?

Related references are published most in these journals:

Lipid concept Cross reference Weighted score Related literatures
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What genes are associated with tacrolimus?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with tacrolimus?

There are no associated biomedical information in the current reference collection.

NCBI Entrez Crosslinks

All references with tacrolimus

Download all related citations
Per page 10 20 50 100 | Total 15051
Authors Title Published Journal PubMed Link
Chen CH et al. Comparison of tuberculosis infection rates in a national database of renal transplant patients with data from a single center in Taiwan. 2014 Transplant. Proc. pmid:24656019
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Bechstein WO et al. Tacrolimus (FK 506) therapy is associated with a significant reduction in immunosuppressive treatment failures following primary liver transplantation. 1996 Transplant. Proc. pmid:8623211
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Morales JM et al. Ten years of treatment with tacrolimus is related to an excellent renal function, allowing monotherapy in a large proportion of cases: unicentric results of the tacrolimus versus cyclosporine A European Multicentric Study in kidney transplant patients. 2005 Transplant. Proc. pmid:16386523
Oishi M et al. A case of hyperkalemic distal renal tubular acidosis secondary to tacrolimus in living donor liver transplantation. 2000 Transplant. Proc. pmid:11120143
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Barreto P et al. Conversion From Twice-Daily to Once-Daily Tacrolimus in Stable Kidney Graft Recipients. 2016 Transplant. Proc. pmid:27742278
Stratta RJ Late acute rejection episodes after vascularized pancreas transplantation. 1998 Transplant. Proc. pmid:9636633
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Kim SJ et al. A 6-month, multicenter, single-arm pilot study to evaluate the efficacy and safety of generic tacrolimus (TacroBell) after primary renal transplantation. 2009 Transplant. Proc. pmid:19545705
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Gaweco AS et al. Common and sequential overexpression patterns of T-helper cytokines during acute (cellular) rejection, and correlation of proinflammatory cytokine expression with chronic (ductopenic) rejection of human liver allografts: a study under cyclosporine, FK 506, and quadruple BT 563 immunosuppression. 1995 Transplant. Proc. pmid:7533370
Tze WJ et al. FK 506--an effective immunosuppressant in achieving long-term functional islet allograft survival in diabetic rats. 1992 Transplant. Proc. pmid:1376509
Rao PN et al. Prediction of early graft function by effluent levels of hyaluronic acid in clinical liver transplantation. 1993 Transplant. Proc. pmid:7682366
Armstrong VW et al. Metabolic liver function and lipoprotein metabolism after orthotopic liver transplantation in patients on immunosuppressive therapy with FK 506 or cyclosporine. 1995 Transplant. Proc. pmid:7533371
Takai K et al. Delayed graft function after renal transplantation from a non-heart-beating donors. 2003 Transplant. Proc. pmid:12591320
Takaori K et al. Effects of FK 506 on in vivo immunity in comparison to cyclosporine. 1991 Transplant. Proc. pmid:1721322
Jordan ML et al. Inhibition of T-cell function by FK 506 and cyclosporine is not accompanied by alterations in intracellular calcium. 1991 Transplant. Proc. pmid:1721323
Mayer AD Chronic rejection and graft half-life: five-year follow-up of the European Tacrolimus Multicenter Renal Study. 2002 Transplant. Proc. pmid:12176452
Sugitani A et al. Long-term results of tacrolimus therapy for renal transplantation in patients with diabetic nephropathy in Japan. 2005 Transplant. Proc. pmid:15919459
Carmellini M et al. Excellent long-term results in de novo renal transplant recipients treated with proliferation signal inhibitors and reduced calcineurin inhibitors exposure. 2008 Jul-Aug Transplant. Proc. pmid:18675070
Funayama Y et al. Changes in cell adhesion molecules after small bowel transplantation in rats. 1995 Transplant. Proc. pmid:7533426
Paul AA et al. CMV retinitis and the use of FK 506. 1991 Transplant. Proc. pmid:1721354
Nanni G et al. Lack of correlation between serum levels of mycophenolate mofetil and kidney transplant outcome in tacrolimus-based immunosupression. 2002 Transplant. Proc. pmid:12270323
Miyagi M et al. Comparison of the therapeutic effects between CsA and FK506 on chronic renal allograft injury and TGF-beta expression. 2002 Transplant. Proc. pmid:12176497
van Hooff JP et al. Benelux experience with a combination of tacrolimus and mycophenolate mofetil: 4-year results. 2002 Transplant. Proc. pmid:12176498
Bartlomiejczyk I et al. Therapeutic monitoring of tacrolimus concentrations in blood of renal and liver transplant recipients: comparison of microparticle enzyme immunoassay and enzyme multiplied immunoassay methods. 2006 Jan-Feb Transplant. Proc. pmid:16504673
Falkiewicz K et al. Renal function and tubular phosphate handling in long-term cyclosporine- and tacrolimus-based immunosuppression in kidney transplantation. 2006 Jan-Feb Transplant. Proc. pmid:16504680
Takayama J et al. Living related liver transplantation in patients with ABO incompatibility. 1998 Transplant. Proc. pmid:9838537
Wu MS et al. Cyclosporine, but not FK 506 and rapamycin, enhances cell proliferation in mouse medullary thick ascending cultured cells. 1998 Transplant. Proc. pmid:9838561
Scott JS et al. Tacrolimus: a cause of hypertrophic cardiomyopathy in pediatric heart transplant recipients? 1999 Feb-Mar Transplant. Proc. pmid:10083017
Meiser BM et al. The efficacy of the combination of tacrolimus and mycophenolate mofetil for prevention of acute myocardial rejection is dependent on routine monitoring of mycophenolic acid trough acid levels. 1999 Feb-Mar Transplant. Proc. pmid:10083018
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Okano K et al. Ameliorative effect of FK 506 on cold ischemia reperfusion injury of the rat liver. 1994 Transplant. Proc. pmid:7520635
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Thomson AW et al. Immunosuppressive activity, T-cell subset analysis, and acute toxicity of FK-506 in rats. 1989 Transplant. Proc. pmid:2468203
Hossein-Nia M et al. Urinary proteins as a marker of drug-induced renal damage following treatment with cyclosporine or FK 506. 1991 Transplant. Proc. pmid:1721388
Youbin Z et al. Tumor Necrosis Factor-α-Induced Protein 8-Like 2 Gene Overexpression Prolongs the Survival of Rat Allogeneic Heart Allografts. 2015 Transplant. Proc. pmid:26518962
Citterio F et al. Steroid withdrawal from tacrolimus-based therapy in renal transplant patients. 2002 Transplant. Proc. pmid:12176545
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Nakao A et al. Cytokine mRNA expression on rat small bowel allograft treated with tacrolimus and simultaneous bone marrow transplantation via the portal vein. 2000 Transplant. Proc. pmid:10995965
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Tojimbara T et al. Cyclosporine and tacrolimus both suppress activation of Kupffer cells in vitro. 1996 Transplant. Proc. pmid:8658704
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Abu-Elmagd K et al. FK 506: a new therapeutic agent for severe recalcitrant psoriasis. 1991 Transplant. Proc. pmid:1721449
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Fung JJ et al. Conversion of liver allograft recipients from cyclosporine to FK 506-based immunosuppression: benefits and pitfalls. 1991 Transplant. Proc. pmid:1703682
Bing P et al. Comparison of expression of TGF-beta1, its receptors TGFbeta1R-I and TGFbeta1R-II in rat kidneys during chronic nephropathy induced by cyclosporine and tacrolimus. 2006 Transplant. Proc. pmid:16980036
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Kliem V et al. Tacrolimus for steroid- and OKT3-resistant rejection in kidney recipients. 1998 Transplant. Proc. pmid:9636509