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
Muscular Dystrophies D009136 10 associated lipids
Alveolar Bone Loss D016301 10 associated lipids
Glycosuria D006029 10 associated lipids
Respiratory Insufficiency D012131 10 associated lipids
Fatigue D005221 10 associated lipids
Dermatitis, Seborrheic D012628 10 associated lipids
Dry Eye Syndromes D015352 10 associated lipids
Long QT Syndrome D008133 10 associated lipids
Neuromuscular Diseases D009468 10 associated lipids
Vision Disorders D014786 10 associated lipids
Nephritis, Interstitial D009395 10 associated lipids
Precursor Cell Lymphoblastic Leukemia-Lymphoma D054198 10 associated lipids
Dyspnea D004417 10 associated lipids
Hemophilia A D006467 10 associated lipids
Hypertension, Renal D006977 9 associated lipids
Tachycardia, Ventricular D017180 9 associated lipids
Rhabdomyolysis D012206 9 associated lipids
Inflammatory Bowel Diseases D015212 9 associated lipids
Sinusitis D012852 9 associated lipids
Leukocytosis D007964 9 associated lipids
Cicatrix D002921 9 associated lipids
Thyroiditis, Autoimmune D013967 9 associated lipids
Periodontal Pocket D010514 9 associated lipids
Urination Disorders D014555 9 associated lipids
Skin Diseases, Bacterial D017192 8 associated lipids
Arthritis, Juvenile D001171 8 associated lipids
Pemphigoid, Bullous D010391 8 associated lipids
Mycobacterium Infections, Nontuberculous D009165 8 associated lipids
Lupus Nephritis D008181 8 associated lipids
Thyroid Diseases D013959 8 associated lipids
Fistula D005402 8 associated lipids
Renal Insufficiency D051437 8 associated lipids
Bronchiolitis Obliterans D001989 8 associated lipids
Opportunistic Infections D009894 8 associated lipids
Arthritis, Infectious D001170 8 associated lipids
Candidiasis, Vulvovaginal D002181 8 associated lipids
Immunologic Deficiency Syndromes D007153 8 associated lipids
Food Hypersensitivity D005512 7 associated lipids
Psychoses, Substance-Induced D011605 7 associated lipids
Chronic Disease D002908 7 associated lipids
Metaplasia D008679 7 associated lipids
Dyslipidemias D050171 7 associated lipids
Gingival Overgrowth D019214 7 associated lipids
Biliary Tract Neoplasms D001661 7 associated lipids
Behcet Syndrome D001528 7 associated lipids
Hepatitis C D006526 7 associated lipids
Dementia, Vascular D015140 7 associated lipids
Mycobacterium Infections D009164 7 associated lipids
Lymphoproliferative Disorders D008232 7 associated lipids
Sleep Wake Disorders D012893 7 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
Tümgör G et al. A case of uneventful ABO-incompatible liver transplantation from a deceased donor managed with routine immunosuppressive treatment. 2014 Turk J Gastroenterol pmid:25599790
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Sommerer C et al. Design and rationale of the ATHENA study--A 12-month, multicentre, prospective study evaluating the outcomes of a de novo everolimus-based regimen in combination with reduced cyclosporine or tacrolimus versus a standard regimen in kidney transplant patients: study protocol for a randomised controlled trial. 2016 Trials pmid:26888217
Nashan B et al. Evaluating the efficacy, safety and evolution of renal function with early initiation of everolimus-facilitated tacrolimus reduction in de novo liver transplant recipients: Study protocol for a randomized controlled trial. 2015 Trials pmid:25873064
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Report from the 4th International Workshop on Clinical Pharmacology of HIV Therapy. Drug levels in PHAs who receive liver transplants. 2003 Apr-May TreatmentUpdate pmid:17216847
Rosen HR et al. Significance of early aminotransferase elevation after liver transplantation. 1998 Transplantation pmid:9448146
McCune TR et al. Effects of tacrolimus on hyperlipidemia after successful renal transplantation: a Southeastern Organ Procurement Foundation multicenter clinical study. 1998 Transplantation pmid:9448150
Frassetto LA et al. Best single time point correlations with AUC for cyclosporine and tacrolimus in HIV-infected kidney and liver transplant recipients. 2014 Transplantation pmid:24389906
Fung JJ Tacrolimus and transplantation: a decade in review. 2004 Transplantation pmid:15201685
Kee TY et al. Treatment of subclinical rejection diagnosed by protocol biopsy of kidney transplants. 2006 Transplantation pmid:16861939
Sawabe T et al. Sinus arrest during tacrolimus (FK506) and digitalis treatment in a bone marrow transplant recipient. 1997 Transplantation pmid:9233725
Kim YI et al. Stimulation of liver regeneration by pretreatment with azathioprine as well as cyclosporine and FK506. 1992 Transplantation pmid:1373539
Drachenberg CB et al. Islet cell damage associated with tacrolimus and cyclosporine: morphological features in pancreas allograft biopsies and clinical correlation. 1999 Transplantation pmid:10459544
Heffron TG et al. Pediatric liver transplantation with daclizumab induction. 2003 Transplantation pmid:12829908
Gonwa T et al. Randomized trial of tacrolimus + mycophenolate mofetil or azathioprine versus cyclosporine + mycophenolate mofetil after cadaveric kidney transplantation: results at three years. 2003 Transplantation pmid:12829910
Shihab FS et al. Mechanism of fibrosis in experimental tacrolimus nephrotoxicity. 1997 Transplantation pmid:9422427
Vu MD et al. Tacrolimus (FK506) and sirolimus (rapamycin) in combination are not antagonistic but produce extended graft survival in cardiac transplantation in the rat. 1997 Transplantation pmid:9422432
Murase N et al. Suppression of allograft rejection with FK506. I. Prolonged cardiac and liver survival in rats following short-course therapy. 1990 Transplantation pmid:1696405
Oz HS et al. Provocative effects of the immunosuppressants rapamycin, tacrolimus, and dexamethasone on pneumonitis in contrast to the anti- pneumonitis effects of mycophenolate mofetil. 2001 Transplantation pmid:11685124
Staatz CE et al. Population pharmacokinetics of tacrolimus in children who receive cut-down or full liver transplants. 2001 Transplantation pmid:11579300
Tsuchiya T et al. Comparison of pharmacokinetics and pathology for low-dose tacrolimus once-daily and twice-daily in living kidney transplantation: prospective trial in once-daily versus twice-daily tacrolimus. 2013 Transplantation pmid:23792649
Mueller AR et al. Neurotoxicity after orthotopic liver transplantation. A comparison between cyclosporine and FK506. 1994 Transplantation pmid:7518974
Hirano Y et al. The effects of FK506 and cyclosporine on the exocrine function of the rat pancreas. 1992 Transplantation pmid:1279850
Takaya S et al. Liver transplantation in positive cytotoxic crossmatch cases using FK506, high-dose steroids, and prostaglandin E1. 1992 Transplantation pmid:1279851
Wasik M et al. Effect of FK506 versus cyclosporine on human natural and antibody-dependent cytotoxicity reactions in vitro. 1991 Transplantation pmid:1702910
Hilbrands R et al. Predictive factors of allosensitization after immunosuppressant withdrawal in recipients of long-term cultured islet cell grafts. 2013 Transplantation pmid:23857001
Ahuja M et al. Polyoma virus infection after renal transplantation. Use of immunostaining as a guide to diagnosis. 2001 Transplantation pmid:11349723
Pérgola PE et al. Kidney transplantation during the first trimester of pregnancy: immunosuppression with mycophenolate mofetil, tacrolimus, and prednisone. 2001 Transplantation pmid:11349738
Opelz G Comparison of FK506 and cyclosporine. 1996 Transplantation pmid:8830844
Yoshimura N et al. Effect of a new immunosuppressive agent, FK506, on human lymphocyte responses in vitro. I. Inhibition of expression of alloantigen-activated suppressor cells, as well as induction of alloreactivity. 1989 Transplantation pmid:2465592
Yoshimura N et al. Effect of a new immunosuppressive agent, FK506, on human lymphocyte responses in vitro. II. Inhibition of the production of IL-2 and gamma-IFN, but not B cell-stimulating factor 2. 1989 Transplantation pmid:2465593
Neumann UP et al. Significance of a T-lymphocytotoxic crossmatch in liver and combined liver-kidney transplantation. 2001 Transplantation pmid:11374419
Rajesh KG et al. Mitochondrial permeability transition-pore inhibition enhances functional recovery after long-time hypothermic heart preservation. 2003 Transplantation pmid:14627909
Sato T et al. Diabetes mellitus after transplant: relationship to pretransplant glucose metabolism and tacrolimus or cyclosporine A-based therapy. 2003 Transplantation pmid:14627910
Arroyo Hornero R et al. CD45RA Distinguishes CD4+CD25+CD127-/low TSDR Demethylated Regulatory T Cell Subpopulations With Differential Stability and Susceptibility to Tacrolimus-Mediated Inhibition of Suppression. 2017 Transplantation pmid:28118317
Ochiai T et al. Effects of combination treatment with FK506 and cyclosporine on survival time and vascular changes in renal-allograft-recipient dogs. 1989 Transplantation pmid:2474209
Tan HP et al. Pediatric living donor kidney transplantation under alemtuzumab pretreatment and tacrolimus monotherapy: 4-year experience. 2008 Transplantation pmid:19104412
Blakolmer K et al. Chronic liver allograft rejection in a population treated primarily with tacrolimus as baseline immunosuppression: long-term follow-up and evaluation of features for histopathological staging. 2000 Transplantation pmid:10868635
Neuhaus P et al. Quadruple tacrolimus-based induction therapy including azathioprine and ALG does not significantly improve outcome after liver transplantation when compared with standard induction with tacrolimus and steroids: results of a prospective, randomized trial. 2000 Transplantation pmid:10868638
Miller J et al. Safety and efficacy of tacrolimus in combination with mycophenolate mofetil (MMF) in cadaveric renal transplant recipients. FK506/MMF Dose-Ranging Kidney Transplant Study Group. 2000 Transplantation pmid:10755543
Mohamed MA et al. TGF-beta expression in renal transplant biopsies: a comparative study between cyclosporin-A and tacrolimus. 2000 Transplantation pmid:10755567
Ciancio G et al. A randomized long-term trial of tacrolimus and sirolimus versus tacrolimus and mycophenolate mofetil versus cyclosporine (NEORAL) and sirolimus in renal transplantation. I. Drug interactions and rejection at one year. 2004 Transplantation pmid:14742989
Ekberg H et al. Relationship of tacrolimus exposure and mycophenolate mofetil dose with renal function after renal transplantation. 2011 Transplantation pmid:21562449