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
Hemolysis D006461 131 associated lipids
Uremia D014511 33 associated lipids
Colitis, Ulcerative D003093 24 associated lipids
Stomach Ulcer D013276 75 associated lipids
Kidney Failure, Chronic D007676 51 associated lipids
Nocardia Infections D009617 6 associated lipids
Diarrhea D003967 32 associated lipids
Diabetes Mellitus D003920 90 associated lipids
Graft Occlusion, Vascular D006083 11 associated lipids
Hypercalcemia D006934 13 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
Hu T et al. Tacrolimus decreases proteinuria in patients with refractory IgA nephropathy. 2018 Medicine (Baltimore) pmid:29718866
Jin L et al. Effect of Conversion to CTLA4Ig on Tacrolimus-Induced Diabetic Rats. 2018 Transplantation pmid:29319618
Desai VCA et al. Comparative Effectiveness of Tacrolimus-Based Steroid Sparing versus Steroid Maintenance Regimens in Kidney Transplantation: Results from Discrete Event Simulation. 2017 Med Decis Making pmid:28384413
Sato K et al. Early post-transplant hyperbilirubinemia is a possible predictive factor for developing neurological complications in pediatric living donor liver transplant patients receiving tacrolimus. 2017 Pediatr Transplant pmid:27804185
Lombardi A et al. Impaired mitochondrial calcium uptake caused by tacrolimus underlies beta-cell failure. 2017 Cell Commun. Signal pmid:29132395
DaSilva I et al. Rituximab for Steroid-Dependent or Frequently Relapsing Idiopathic Nephrotic Syndrome in Adults: A Retrospective, Multicenter Study in Spain. 2017 BioDrugs pmid:28534103
Shemesh E et al. The Medication Level Variability Index (MLVI) Predicts Poor Liver Transplant Outcomes: A Prospective Multi-Site Study. 2017 Am. J. Transplant. pmid:28321975
Sadati MS et al. Recalcitrant cases of pyoderma gangrenosum, responding dramatically to systemic tacrolimus. 2017 G Ital Dermatol Venereol pmid:28409579
Genvigir FDV et al. Influence of ABCC2, CYP2C8, and CYP2J2 Polymorphisms on Tacrolimus and Mycophenolate Sodium-Based Treatment in Brazilian Kidney Transplant Recipients. 2017 Pharmacotherapy pmid:28316087
Mertens JS et al. Morphea and Eosinophilic Fasciitis: An Update. 2017 Am J Clin Dermatol pmid:28303481
Manocha GD et al. Defining the contribution of neuroinflammation to Parkinson's disease in humanized immune system mice. 2017 Mol Neurodegener pmid:28196514
Kannegieter NM et al. The Effect of Tacrolimus and Mycophenolic Acid on CD14+ Monocyte Activation and Function. 2017 PLoS ONE pmid:28122021
Trunečka P Once-daily tacrolimus in liver transplantation: a 'me-too drug', or a therapeutic advantage. 2017 Curr Opin Organ Transplant pmid:28079558
Riva N et al. Adequate exposure to tacrolimus with sublingual administration in pediatric liver transplant patients. 2017 Int J Clin Pharmacol Ther pmid:28079516
Müller F et al. Rhamnolipids form drug-loaded nanoparticles for dermal drug delivery. 2017 Eur J Pharm Biopharm pmid:28012989
Kim MJ et al. The Anti-Inflammatory Effects of Oral-Formulated Tacrolimus in Mice with Experimental Autoimmune Encephalomyelitis. 2017 J. Korean Med. Sci. pmid:28776347
Mussin N et al. Sirolimus and Metformin Synergistically Inhibits Colon Cancer In Vitro and In Vivo. 2017 J. Korean Med. Sci. pmid:28776332
Veenhof H et al. Clinical Validation of Simultaneous Analysis of Tacrolimus, Cyclosporine A, and Creatinine in Dried Blood Spots in Kidney Transplant Patients. 2017 Transplantation pmid:27906832
Wojciechowski D et al. Mycophenolate Mofetil Withdrawal With Conversion to Everolimus to Treat BK Virus Infection in Kidney Transplant Recipients. 2017 Transplant. Proc. pmid:28923623
Tourret J et al. Immunosuppressive Treatment Alters Secretion of Ileal Antimicrobial Peptides and Gut Microbiota, and Favors Subsequent Colonization by Uropathogenic Escherichia coli. 2017 Transplantation pmid:27681266