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
Nerve Degeneration D009410 53 associated lipids
Nervous System Diseases D009422 37 associated lipids
Neuritis D009443 4 associated lipids
Neurodermatitis D009450 1 associated lipids
Neuromuscular Diseases D009468 10 associated lipids
Neuromyelitis Optica D009471 2 associated lipids
Neutropenia D009503 15 associated lipids
Nocardia Infections D009617 6 associated lipids
Obesity D009765 29 associated lipids
Oliguria D009846 2 associated lipids
Opportunistic Infections D009894 8 associated lipids
Optic Neuritis D009902 1 associated lipids
Orchitis D009920 1 associated lipids
Osteochondrodysplasias D010009 3 associated lipids
Osteomalacia D010018 5 associated lipids
Osteonecrosis D010020 5 associated lipids
Osteoporosis D010024 12 associated lipids
Ovarian Cysts D010048 4 associated lipids
Pain D010146 64 associated lipids
Pain, Intractable D010148 4 associated lipids
Pancreatic Fistula D010185 2 associated lipids
Pancytopenia D010198 6 associated lipids
Paraproteinemias D010265 2 associated lipids
Paresis D010291 2 associated lipids
Parkinson Disease D010300 53 associated lipids
Paronychia D010304 3 associated lipids
Parotitis D010309 4 associated lipids
Pemphigoid, Benign Mucous Membrane D010390 4 associated lipids
Pemphigoid, Bullous D010391 8 associated lipids
Pemphigus D010392 3 associated lipids
Peptic Ulcer D010437 19 associated lipids
Peptic Ulcer Perforation D010439 3 associated lipids
Perceptual Disorders D010468 3 associated lipids
Pericarditis D010493 6 associated lipids
Periodontal Pocket D010514 9 associated lipids
Peripheral Nervous System Diseases D010523 33 associated lipids
Peritoneal Neoplasms D010534 16 associated lipids
Pharyngitis D010612 2 associated lipids
Pityriasis D010915 3 associated lipids
Polyneuropathies D011115 3 associated lipids
Postoperative Complications D011183 5 associated lipids
Poxviridae Infections D011213 1 associated lipids
Precancerous Conditions D011230 48 associated lipids
Pregnancy Complications D011248 19 associated lipids
Priapism D011317 1 associated lipids
Proteinuria D011507 30 associated lipids
Prurigo D011536 4 associated lipids
Pruritus Ani D011538 2 associated lipids
Pruritus Vulvae D011539 1 associated lipids
Pseudohypoaldosteronism D011546 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
Per page 10 20 50 100 | Total 15051
Authors Title Published Journal PubMed Link
Shihab FS et al. Conversion from cyclosporine to tacrolimus in patients at risk for chronic renal allograft failure: 60-month results of the CRAF Study. 2008 Transplantation pmid:18475181
Rolles K et al. A pilot study of immunosuppressive monotherapy in liver transplantation: tacrolimus versus microemulsified cyclosporin. 1999 Transplantation pmid:10551650
Sugitani A et al. En bloc pancreas and kidney transplantation in a patient with limited vascular access. 1997 Transplantation pmid:9197366
Bayer ND et al. Association of metabolic syndrome with development of new-onset diabetes after transplantation. 2010 Transplantation pmid:20724958
Jordan ML et al. Results of pancreas transplantation after steroid withdrawal under tacrolimus immunosuppression. 2000 Transplantation pmid:10670637
Sakr M et al. Cytomegalovirus infection of the upper gastrointestinal tract following liver transplantation--incidence, location, and severity in cyclosporine- and FK506-treated patients. 1992 Transplantation pmid:1373535
Sindhi R et al. Sirolimus for rescue and primary immunosuppression in transplanted children receiving tacrolimus. 2001 Transplantation pmid:11571449
Tzakis AG et al. Alemtuzumab (Campath-1H) combined with tacrolimus in intestinal and multivisceral transplantation. 2003 Transplantation pmid:12792506
Koenen HJ et al. Superior T-cell suppression by rapamycin and FK506 over rapamycin and cyclosporine A because of abrogated cytotoxic T-lymphocyte induction, impaired memory responses, and persistent apoptosis. 2003 Transplantation pmid:12792519
Heilman RL et al. Impact of early conversion from tacrolimus to sirolimus on chronic allograft changes in kidney recipients on rapid steroid withdrawal. 2012 Transplantation pmid:22067270
First MR Strategies to minimize immunological and nonimmunological risk factors in the renal transplant population. 2001 Transplantation pmid:11585240
Tarumi K et al. CTLA4IgG treatment induces long-term acceptance of rat small bowel allografts. 1999 Transplantation pmid:10071020
Mourad G et al. Incidence of Posttransplantation Diabetes Mellitus in De Novo Kidney Transplant Recipients Receiving Prolonged-Release Tacrolimus-Based Immunosuppression With 2 Different Corticosteroid Minimization Strategies: ADVANCE, A Randomized Controlled Trial. 2017 Transplantation pmid:27547871
Sokal EM et al. Early signs and risk factors for the increased incidence of Epstein-Barr virus-related posttransplant lymphoproliferative diseases in pediatric liver transplant recipients treated with tacrolimus. 1997 Transplantation pmid:9392308
Luan FL et al. Rapamycin blocks tumor progression: unlinking immunosuppression from antitumor efficacy. 2002 Transplantation pmid:12042641
David-Neto E et al. Longitudinal Pharmacokinetics of Tacrolimus in Elderly Compared With Younger Recipients in the First 6 Months After Renal Transplantation. 2017 Transplantation pmid:27482958
Heilman RL et al. Results of a prospective randomized trial of sirolimus conversion in kidney transplant recipients on early corticosteroid withdrawal. 2011 Transplantation pmid:21775930
Yamazaki S et al. Transplantation-related thrombotic microangiopathy triggered by preemptive therapy for hepatitis C virus infection. 2008 Transplantation pmid:18852671
Stevens RB et al. A randomized 2×2 factorial trial, part 1: single-dose rabbit antithymocyte globulin induction may improve renal transplantation outcomes. 2015 Transplantation pmid:25083614
Roth D et al. Primary immunosuppression with tacrolimus and mycophenolate mofetil for renal allograft recipients. 1998 Transplantation pmid:9458023
Ravaioli M et al. Immunosuppression Modifications Based on an Immune Response Assay: Results of a Randomized, Controlled Trial. 2015 Transplantation pmid:25757214
Watson MJ et al. Renal function impacts outcomes after intestinal transplantation. 2008 Transplantation pmid:18622288
Miyazawa H et al. Hamster to rat kidney xenotransplantation. Effects of FK 506, cyclophosphamide, organ perfusion, and complement inhibition. 1995 Transplantation pmid:7537396
Irish W et al. Three-year posttransplant graft survival in renal-transplant patients with graft function at 6 months receiving tacrolimus or cyclosporine microemulsion within a triple-drug regimen. 2003 Transplantation pmid:14688516
Furlan V et al. Interactions between FK506 and rifampicin or erythromycin in pediatric liver recipients. 1995 Transplantation pmid:7537398
Akst LM et al. Induction of tolerance in a rat model of laryngeal transplantation. 2003 Transplantation pmid:14688529
Chisholm MA et al. Coadministration of tacrolimus with anti-acid drugs. 2003 Transplantation pmid:12973105
McDiarmid SV et al. Factors affecting growth after pediatric liver transplantation. 1999 Transplantation pmid:10030286
Shapiro R et al. A prospective, randomized trial of tacrolimus/prednisone versus tacrolimus/prednisone/mycophenolate mofetil in renal transplant recipients. 1999 Transplantation pmid:10030287
Florescu DF et al. Adenovirus infections in pediatric small bowel transplant recipients. 2010 Transplantation pmid:20467354
Vafadari R et al. Inhibitory effect of tacrolimus on p38 mitogen-activated protein kinase signaling in kidney transplant recipients measured by whole-blood phosphospecific flow cytometry. 2012 Transplantation pmid:22643331
Ericzon BG et al. Secretion and composition of bile after human liver transplantation: studies on the effects of cyclosporine and tacrolimus. 1997 Transplantation pmid:9000664
Kelly PA et al. Ciprofloxacin does not block the antiproliferative effect of tacrolimus. 1997 Transplantation pmid:9000686
Morales JM et al. Improved renal function, with similar proteinuria, after two years of early tacrolimus withdrawal from a regimen of sirolimus plus tacrolimus. 2008 Transplantation pmid:18724234
Opelz G and Döhler B Effect on kidney graft survival of reducing or discontinuing maintenance immunosuppression after the first year posttransplant. 2008 Transplantation pmid:18698238
Gallon LG et al. Long-term renal transplant function in recipient of simultaneous kidney and pancreas transplant maintained with two prednisone-free maintenance immunosuppressive combinations: tacrolimus/mycophenolate mofetil versus tacrolimus/sirolimus. 2007 Transplantation pmid:17519781
MacDonald A Improving tolerability of immunosuppressive regimens. 2001 Transplantation pmid:11833142
Molleví DG et al. Heart and liver xenotransplantation under low-dose tacrolimus: graft survival after withdrawal of immunosuppression. 2001 Transplantation pmid:11213062
Paolillo JA et al. Posttransplant diabetes mellitus in pediatric thoracic organ recipients receiving tacrolimus-based immunosuppression. 2001 Transplantation pmid:11213069
Fujishiro J et al. Immunologic benefits of longer graft in rat allogenic small bowel transplantation. 2005 Transplantation pmid:15665767
Raggi MC et al. Customized mycophenolate dosing based on measuring inosine-monophosphate dehydrogenase activity significantly improves patients' outcomes after renal transplantation. 2010 Transplantation pmid:21076373
Armitage JM et al. Preliminary experience with FK506 in thoracic transplantation. 1991 Transplantation pmid:1713363
Ueki S et al. Control of allograft rejection by applying a novel nuclear factor-kappaB inhibitor, dehydroxymethylepoxyquinomicin. 2006 Transplantation pmid:17198266
Lorber MI et al. A comparison of in vivo responses to cyclosporine, FK506, and rapamycin following allogeneic immune challenge. 1991 Transplantation pmid:1713364
Schvarcz R et al. Interaction between nelfinavir and tacrolimus after orthoptic liver transplantation in a patient coinfected with HIV and hepatitis C virus (HCV). 2000 Transplantation pmid:10852623
Mathew A et al. Reversal of steroid-resistant rejection in renal allograft recipients using FK506. 1995 Transplantation pmid:7482730
Stephen M et al. Immunosuppressive activity, lymphocyte subset analysis, and acute toxicity of FK-506 in the rat. A comparative and combination study with cyclosporine. 1989 Transplantation pmid:2463701
Fuchinoue S et al. Kidney transplantation after liver transplantation from the same donor: four cases of successful steroid withdrawal. 2002 Transplantation pmid:11923698
Gruber SA and Doshi MD Conversion to sirolimus in African American renal allograft recipients undergoing early steroid withdrawal: intermediate-term risks and benefits. 2010 Transplantation pmid:20440195
Krämer BK et al. Tacrolimus-based, steroid-free regimens in renal transplantation: 3-year follow-up of the ATLAS trial. 2012 Transplantation pmid:22858806