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
Cardiomyopathy, Restrictive D002313 1 associated lipids
Paraparesis, Tropical Spastic D015493 1 associated lipids
Neurodermatitis D009450 1 associated lipids
Posterior Leukoencephalopathy Syndrome D054038 1 associated lipids
Ecthyma, Contagious D004474 1 associated lipids
Priapism D011317 1 associated lipids
Vulvar Lichen Sclerosus D007724 1 associated lipids
Mediastinal Diseases D008477 1 associated lipids
Hypophosphatemia D017674 1 associated lipids
Leukemia, Myeloid, Chronic-Phase D015466 1 associated lipids
Myelinolysis, Central Pontine D017590 1 associated lipids
Protoporphyria, Erythropoietic D046351 1 associated lipids
Smooth Muscle Tumor D018235 1 associated lipids
Coproporphyria, Hereditary D046349 1 associated lipids
Ichthyosiform Erythroderma, Congenital D016113 1 associated lipids
Panniculitis, Lupus Erythematosus D015435 1 associated lipids
Retrognathia D063173 1 associated lipids
Lacerations D022125 1 associated lipids
Megacolon, Toxic D008532 1 associated lipids
Tinea Capitis D014006 1 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
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Authors Title Published Journal PubMed Link
Cacciarelli TV et al. An analysis of pretransplantation variables associated with long-term allograft outcome in pediatric liver transplant recipients receiving primary tacrolimus (FK506) therapy. 1999 Transplantation pmid:10507484
Shirakata Y et al. Inhibitory effect of plasma FKBP12 on immunosuppressive activity of FK506. 1995 Transplantation pmid:8545894
Burke GW et al. Advances in pancreas transplantation. 2004 Transplantation pmid:15201688
Méndez A et al. Pharmacokinetic study of conversion from tacrolimus twice-daily to tacrolimus once-daily in stable lung transplantation. 2014 Transplantation pmid:24492423
Moss MC et al. Lithium use for bipolar disorder post renal transplant: is mood stabilization without toxicity possible? 2014 Transplantation pmid:24492429
Fridell JA et al. Steroid withdrawal for pancreas after kidney transplantation in recipients on maintenance prednisone immunosuppression. 2006 Transplantation pmid:16906038
Boldt A et al. The influence of immunosuppressive drugs on T- and B-cell apoptosis via p53-mediated pathway in vitro and in vivo. 2006 Transplantation pmid:16906043
Narayanan M et al. Outcomes in African American kidney transplant patients receiving tacrolimus and mycophenolic acid immunosuppression. 2013 Transplantation pmid:23423268
Moffatt SD et al. Potential for improved therapeutic index of FK506 in liposomal formulation demonstrated in a mouse cardiac allograft model. 1999 Transplantation pmid:10342309
Fujita T et al. Prolonged survival of rat skin allograft by treatment with FK506 ointment. 1997 Transplantation pmid:9326422
Yoshihara S et al. Successful treatment of life-threatening human herpesvirus-6 encephalitis with donor lymphocyte infusion in a patient who had undergone human leukocyte antigen-haploidentical nonmyeloablative stem cell transplantation. 2004 Transplantation pmid:15077022
Jain AB et al. Pregnancy after kidney and kidney-pancreas transplantation under tacrolimus: a single center's experience. 2004 Transplantation pmid:15077034
Briggs D et al. Effects of immediate switch from cyclosporine microemulsion to tacrolimus at first acute rejection in renal allograft recipients. 2003 Transplantation pmid:12829912
Bierer BE et al. Mechanisms of immunosuppression by FK506. Preservation of T cell transmembrane signal transduction. 1990 Transplantation pmid:1694317
Eiras G et al. Species differences in sensitivity of T lymphocytes to immunosuppressive effects of FK 506. 1990 Transplantation pmid:1694318
Utsugi R et al. Induction of transplantation tolerance with a short course of tacrolimus (FK506): I. Rapid and stable tolerance to two-haplotype fully mhc-mismatched kidney allografts in miniature swine. 2001 Transplantation pmid:11391221
Yin DP et al. Lewis rat pancreas, but not cardiac xenografts, are resistant to anti-gal antibody mediated hyperacute rejection. 2001 Transplantation pmid:11391223
Bruce DS et al. Multicenter survey of daclizumab induction in simultaneous kidney-pancreas transplant recipients. 2001 Transplantation pmid:11726823
Egeland EJ et al. High Tacrolimus Clearance Is a Risk Factor for Acute Rejection in the Early Phase After Renal Transplantation. 2017 Transplantation pmid:28452920
Hsiau M et al. Monitoring nonadherence and acute rejection with variation in blood immunosuppressant levels in pediatric renal transplantation. 2011 Transplantation pmid:21857278
Yates CJ et al. Screening for new-onset diabetes after kidney transplantation: limitations of fasting glucose and advantages of afternoon glucose and glycated hemoglobin. 2013 Transplantation pmid:23902993
Jordan ML et al. Long-term results of pancreas transplantation under tacrolius immunosuppression. 1999 Transplantation pmid:10075592
Kaplan B et al. Frequency of hyperkalemia in recipients of simultaneous pancreas and kidney transplants with bladder drainage. 1996 Transplantation pmid:8900321
Min DI et al. Circadian variation of tacrolimus disposition in liver allograft recipients. 1996 Transplantation pmid:8900327
Jindal RM et al. Diabetogenicity of FK506 versus cyclosporine in liver transplant recipients. 1994 Transplantation pmid:7519799
Newell KA et al. Posttransplant lymphoproliferative disease in pediatric liver transplantation. Interplay between primary Epstein-Barr virus infection and immunosuppression. 1996 Transplantation pmid:8779685
Lufft V et al. Incidence of Pneumocystis carinii pneumonia after renal transplantation. Impact of immunosuppression. 1996 Transplantation pmid:8779695
Yu S et al. Influence of CYP3A5 gene polymorphisms of donor rather than recipient to tacrolimus individual dose requirement in liver transplantation. 2006 Transplantation pmid:16421475
Borrows R et al. Five years of steroid sparing in renal transplantation with tacrolimus and mycophenolate mofetil. 2006 Transplantation pmid:16421488
Kadry Z et al. Kaposi's sarcoma in liver transplant recipients on FK506. 1998 Transplantation pmid:9583882
Ho ET et al. Once-daily extended-release versus twice-daily standard-release tacrolimus in kidney transplant recipients: a systematic review. 2013 Transplantation pmid:23542469
Porrini E et al. Prediabetes in patients receiving tacrolimus in the first year after kidney transplantation: a prospective and multicenter study. 2008 Transplantation pmid:18431233
Veroux M et al. Impact of conversion to a once daily tacrolimus-based regimen in kidney transplant recipients with gastrointestinal complications. 2012 Transplantation pmid:22298033
Kessler L et al. Tacrolimus-associated optic neuropathy after pancreatic islet transplantation using a sirolimus/tacrolimus immunosuppressive regimen. 2006 Transplantation pmid:16495816
Yang H et al. Liposomal encapsulation significantly enchances the immunosuppressive effect of tacrolimus in a discordant islet xenotransplant model. 2002 Transplantation pmid:11907415
Klein IH et al. Different effects of tacrolimus and cyclosporine on renal hemodynamics and blood pressure in healthy subjects. 2002 Transplantation pmid:11907418
St A Nunes FA and Lucey MR Searching for a balance when applying immunosuppression after liver transplantation. 2001 Transplantation pmid:11258425
Ringe B et al. A novel management strategy of steroid-free immunosuppression after liver transplantation: efficacy and safety of tacrolimus and mycophenolate mofetil. 2001 Transplantation pmid:11258429
Meiser BM The best dosing for initial tacrolimus application is trough level adapted! 2005 Transplantation pmid:15714162
Podesser BK et al. Comparison of low and high initial tacrolimus dosing in primary heart transplant recipients: a prospective European multicenter study. 2005 Transplantation pmid:15714171
Steinmüller TM et al. The effect of FK506 versus cyclosporine on glucose and lipid metabolism--a randomized trial. 1994 Transplantation pmid:7524203
Singh N et al. Infectious complications in liver transplant recipients on tacrolimus. Prospective analysis of 88 consecutive liver transplants. 1994 Transplantation pmid:7524204
Sonoda T et al. Outcome of 3 years of immunosuppression with tacrolimus in more than 1,000 renal transplant recipients in japan. 2003 Transplantation pmid:12548123
Roberti I et al. Evidence that the systematic analysis of bile cytology permits monitoring of hepatic allograft rejection. 1992 Transplantation pmid:1384182
Langrehr JM et al. Evidence that indefinite survival of small bowel allografts achieved by a brief course of cyclosporine or FK506 is not due to systemic hyporesponsiveness. 1992 Transplantation pmid:1384185
Jain A et al. The absence of chronic rejection in pediatric primary liver transplant patients who are maintained on tacrolimus-based immunosuppression: a long-term analysis. 2003 Transplantation pmid:12698091
Peng Y et al. Donor-derived mesenchymal stem cells combined with low-dose tacrolimus prevent acute rejection after renal transplantation: a clinical pilot study. 2013 Transplantation pmid:23263506
Kuypers DR et al. Improved adherence to tacrolimus once-daily formulation in renal recipients: a randomized controlled trial using electronic monitoring. 2013 Transplantation pmid:23263559
White M et al. Subclinical inflammation and prothrombotic state in heart transplant recipients: impact of cyclosporin microemulsion vs. tacrolimus. 2006 Transplantation pmid:17006323
Murase N et al. Graft-versus-host disease after brown Norway-to-Lewis and Lewis-to-Brown Norway rat intestinal transplantation under FK506. 1993 Transplantation pmid:7678353