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
Hypertension D006973 115 associated lipids
Ischemic Attack, Transient D002546 42 associated lipids
Glomerulosclerosis, Focal Segmental D005923 4 associated lipids
Cerebrovascular Disorders D002561 25 associated lipids
Dermatitis D003872 30 associated lipids
Gastrointestinal Diseases D005767 20 associated lipids
Vomiting D014839 21 associated lipids
Hypersensitivity, Immediate D006969 14 associated lipids
Subarachnoid Hemorrhage D013345 17 associated lipids
Pharyngitis D010612 2 associated lipids
Shock D012769 11 associated lipids
Erythema D004890 22 associated lipids
Dermatomycoses D003881 17 associated lipids
Hyperalgesia D006930 42 associated lipids
Spinal Cord Injuries D013119 34 associated lipids
Cholelithiasis D002769 16 associated lipids
Fever D005334 35 associated lipids
Amenorrhea D000568 4 associated lipids
Dermatitis, Seborrheic D012628 10 associated lipids
Thrombocytopenia D013921 15 associated lipids
Hyperlipidemias D006949 73 associated lipids
Shock, Septic D012772 11 associated lipids
Ileal Neoplasms D007078 2 associated lipids
Cough D003371 19 associated lipids
Paraproteinemias D010265 2 associated lipids
Encephalomyelitis, Autoimmune, Experimental D004681 26 associated lipids
Translocation, Genetic D014178 20 associated lipids
Catalepsy D002375 30 associated lipids
Dermatitis, Atopic D003876 19 associated lipids
Ovarian Cysts D010048 4 associated lipids
Precursor Cell Lymphoblastic Leukemia-Lymphoma D054198 10 associated lipids
Cardiomegaly D006332 31 associated lipids
Hypertension, Renal D006977 9 associated lipids
Metaplasia D008679 7 associated lipids
Burkitt Lymphoma D002051 15 associated lipids
Leukemia, T-Cell D015458 23 associated lipids
Tachycardia D013610 7 associated lipids
Cicatrix D002921 9 associated lipids
Neutropenia D009503 15 associated lipids
Peritoneal Neoplasms D010534 16 associated lipids
Arthritis, Juvenile D001171 8 associated lipids
Urticaria D014581 13 associated lipids
Behcet Syndrome D001528 7 associated lipids
Fetal Hypoxia D005311 3 associated lipids
Thrombophlebitis D013924 6 associated lipids
Cardiomyopathy, Hypertrophic D002312 6 associated lipids
HIV Seropositivity D006679 15 associated lipids
Uveitis D014605 14 associated lipids
Enterobacteriaceae Infections D004756 5 associated lipids
Alveolar Bone Loss D016301 10 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
Schmidt LE et al. Relationship between postoperative erythromycin breath test and early morbidity in liver transplant recipients. 2003 Transplantation pmid:12883193
Ernst A et al. Lung abcess complicating Legionella micdadei pneumonia in an adult liver transplant recipient: case report and review. 1998 Transplantation pmid:9448158
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
Narayanan M et al. Outcomes in African American kidney transplant patients receiving tacrolimus and mycophenolic acid immunosuppression. 2013 Transplantation pmid:23423268
Reutzel-Selke A et al. Short-term immunosuppressive treatment of the donor ameliorates consequences of ischemia/ reperfusion injury and long-term graft function in renal allografts from older donors. 2003 Transplantation pmid:12811235
Molano RD et al. Long-term islet allograft survival in nonobese diabetic mice treated with tacrolimus, rapamycin, and anti-interleukin-2 antibody. 2003 Transplantation pmid:12811239
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
Gonwa TA et al. End-stage renal disease (ESRD) after orthotopic liver transplantation (OLTX) using calcineurin-based immunotherapy: risk of development and treatment. 2001 Transplantation pmid:11773892
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
Kitayama T et al. Facilitation of tacrolimus-induced heart-allograft acceptability by pretransplant host treatment with granulocyte colony-stimulating factor: interleukin-12-restricted suppression of intragraft monokine mRNA expression. 2003 Transplantation pmid:12605126
Guo Z et al. In vivo effects of leflunomide on normal pancreatic islet and syngeneic islet graft function. 1997 Transplantation pmid:9075844
Ciancio G et al. Use of intravenous FK506 to treat acute rejection in simultaneous pancreas-kidney transplant recipients on maintenance oral FK506. 1997 Transplantation pmid:9075856
Platz KP et al. Nephrotoxicity following orthotopic liver transplantation. A comparison between cyclosporine and FK506. 1994 Transplantation pmid:7518975
Starzl TE et al. Hepatotrophic effects of FK506 in dogs. 1991 Transplantation pmid:1702912
Camirand G et al. Combined immunosuppression of mycophenolate mofetil and FK506 for myoblast transplantation in mdx mice. 2001 Transplantation pmid:11468532
Squifflet JP et al. Dose optimization of mycophenolate mofetil when administered with a low dose of tacrolimus in cadaveric renal transplant recipients. 2001 Transplantation pmid:11468536
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
Jurcevic S et al. A new enzyme-linked immunosorbent assay to measure anti-endothelial antibodies after cardiac transplantation demonstrates greater inhibition of antibody formation by tacrolimus compared with cyclosporine. 1998 Transplantation pmid:9603168
Borrows R et al. Five years of steroid sparing in renal transplantation with tacrolimus and mycophenolate mofetil. 2006 Transplantation pmid:16421488
Macphee IA et al. Tacrolimus pharmacogenetics: polymorphisms associated with expression of cytochrome p4503A5 and P-glycoprotein correlate with dose requirement. 2002 Transplantation pmid:12490779
Shapiro AM et al. Defining optimal immunosuppression for islet transplantation based on reduced diabetogenicity in canine islet autografts. 2002 Transplantation pmid:12490784
Shaffer D et al. Normal pancreas allograft function following simultaneous pancreas kidney transplantation after rescue therapy with tacrolimus (FK506). 1995 Transplantation pmid:7535958
Ahsan N et al. Randomized trial of tacrolimus plus mycophenolate mofetil or azathioprine versus cyclosporine oral solution (modified) plus mycophenolate mofetil after cadaveric kidney transplantation: results at 2 years. 2001 Transplantation pmid:11477347
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
Roelen DL et al. Differential inhibition of primed alloreactive CTLs in vitro by clinically used concentrations of cyclosporine and FK506. 1993 Transplantation pmid:7687397
Fisher NC et al. The clinical impact of nephrotoxicity in liver transplantation. 2000 Transplantation pmid:10910259
MacDonald AS Management strategies for nephrotoxicity. 2000 Transplantation pmid:10910262
Kessler L et al. Tacrolimus-associated optic neuropathy after pancreatic islet transplantation using a sirolimus/tacrolimus immunosuppressive regimen. 2006 Transplantation pmid:16495816
Reyes J et al. Long-term results after conversion from cyclosporine to tacrolimus in pediatric liver transplantation for acute and chronic rejection. 2000 Transplantation pmid:10910279
Moffatt SD and Metcalfe SM Comparison between tacrolimus and cyclosporine as immunosuppressive agents compatible with tolerance induction by CD4/CD8 blockade. 2000 Transplantation pmid:10836388
Higgins RM et al. Conversion from tacrolimus to cyclosporine in stable renal transplant patients: safety, metabolic changes, and pharmacokinetic comparison. 2000 Transplantation pmid:10836393
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
Garton T Nefazodone and cyp450 3a4 interactions with cyclosporine and tacrolimus1. 2002 Transplantation pmid:12352898
Metcalfe S and Milner J Evidence that FK506 and rapamycin block T cell activation at different sites relative to early reversible phosphorylation involving the protein phosphatases PP1 and PP2A. 1991 Transplantation pmid:1710844
Ochiai T et al. Studies of the effects of FK506 on renal allografting in the beagle dog. 1987 Transplantation pmid:2447688
Ochiai T et al. Studies of the induction and maintenance of long-term graft acceptance by treatment with FK506 in heterotopic cardiac allotransplantation in rats. 1987 Transplantation pmid:2447689
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
Ko S et al. The pharmacokinetic benefits of newly developed liposome-incorporated FK506. 1994 Transplantation pmid:7526494
White M et al. Subclinical inflammation and prothrombotic state in heart transplant recipients: impact of cyclosporin microemulsion vs. tacrolimus. 2006 Transplantation pmid:17006323
Katz IA et al. Comparison of the effects of FK506 and cyclosporine on bone mineral metabolism in the rat. A pilot study. 1991 Transplantation pmid:1716801
Inomata Y et al. The evolution of immunosuppression with FK506 in pediatric living-related liver transplantation. 1996 Transplantation pmid:8600632
Hricik DE et al. Withdrawal of steroid therapy in African American kidney transplant recipients receiving sirolimus and tacrolimus. 2003 Transplantation pmid:14508357
Hodak SP et al. QT prolongation and near fatal cardiac arrhythmia after intravenous tacrolimus administration: a case report. 1998 Transplantation pmid:9734501