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
Leukemia D007938 74 associated lipids
Carcinoma, Hepatocellular D006528 140 associated lipids
Liver Cirrhosis D008103 67 associated lipids
Hematoma D006406 5 associated lipids
Demyelinating Diseases D003711 15 associated lipids
Peripheral Nervous System Diseases D010523 33 associated lipids
Lymphoproliferative Disorders D008232 7 associated lipids
Crohn Disease D003424 12 associated lipids
Osteoarthritis, Knee D020370 13 associated lipids
Arthritis, Infectious D001170 8 associated lipids
Leukemia, Myelogenous, Chronic, BCR-ABL Positive D015464 17 associated lipids
Cholestasis D002779 23 associated lipids
Fibrosis D005355 23 associated lipids
Osteoporosis, Postmenopausal D015663 4 associated lipids
Thyroid Diseases D013959 8 associated lipids
Sinusitis D012852 9 associated lipids
Leukocytosis D007964 9 associated lipids
Glomerulonephritis D005921 35 associated lipids
Immunologic Deficiency Syndromes D007153 8 associated lipids
Hypoglycemia D007003 13 associated lipids
Hemolytic-Uremic Syndrome D006463 2 associated lipids
Pancytopenia D010198 6 associated lipids
Nervous System Diseases D009422 37 associated lipids
Ataxia D001259 20 associated lipids
Psoriasis D011565 47 associated lipids
Urinary Tract Infections D014552 11 associated lipids
Brain Edema D001929 20 associated lipids
Pseudomonas Infections D011552 25 associated lipids
Respiratory Insufficiency D012131 10 associated lipids
Gram-Negative Bacterial Infections D016905 16 associated lipids
Erectile Dysfunction D007172 19 associated lipids
Gingivitis D005891 3 associated lipids
Periodontal Pocket D010514 9 associated lipids
Brain Infarction D020520 17 associated lipids
Infarction, Middle Cerebral Artery D020244 35 associated lipids
Stroke D020521 32 associated lipids
Liver Cirrhosis, Biliary D008105 12 associated lipids
Hyperbilirubinemia D006932 11 associated lipids
Liver Cirrhosis, Alcoholic D008104 17 associated lipids
Nephritis, Interstitial D009395 10 associated lipids
Nephrotic Syndrome D009404 11 associated lipids
Brain Ischemia D002545 89 associated lipids
Leukemia, Myeloid D007951 52 associated lipids
Ischemia D007511 18 associated lipids
Glycosuria D006029 10 associated lipids
Seizures D012640 87 associated lipids
Neuromuscular Diseases D009468 10 associated lipids
Nerve Degeneration D009410 53 associated lipids
Peptic Ulcer D010437 19 associated lipids
Cystic Fibrosis D003550 65 associated lipids
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

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Per page 10 20 50 100 | Total 15051
Authors Title Published Journal PubMed Link
Djamali A et al. Nox2 is a mediator of chronic CsA nephrotoxicity. 2012 Am. J. Transplant. pmid:22568654
Saliba F et al. Efficacy and Safety of Everolimus and Mycophenolic Acid With Early Tacrolimus Withdrawal After Liver Transplantation: A Multicenter Randomized Trial. 2017 Am. J. Transplant. pmid:28133906
Levitsky J and Feng S Sirolimus and mTOR inhibitors in liver transplantation: the wheel has come full circle. 2014 Am. J. Transplant. pmid:24620373
de Fijter JW et al. Early Conversion From Calcineurin Inhibitor- to Everolimus-Based Therapy Following Kidney Transplantation: Results of the Randomized ELEVATE Trial. 2017 Am. J. Transplant. pmid:28027625
Cavadas PC et al. Bilateral trans-humeral arm transplantation: result at 2 years. 2011 Am. J. Transplant. pmid:21521475
Dugast E et al. Failure of Calcineurin Inhibitor (Tacrolimus) Weaning Randomized Trial in Long-Term Stable Kidney Transplant Recipients. 2016 Am. J. Transplant. pmid:27367750
de Fontbrune FS et al. Veno-occlusive disease of the liver after lung transplantation. 2007 Am. J. Transplant. pmid:17697264
Asrani SK et al. De novo sirolimus and reduced-dose tacrolimus versus standard-dose tacrolimus after liver transplantation: the 2000-2003 phase II prospective randomized trial. 2014 Am. J. Transplant. pmid:24456026
Song L et al. ASP2409, A Next-Generation CTLA4-Ig, Versus Belatacept in Renal Allograft Survival in Cynomolgus Monkeys. 2017 Am. J. Transplant. pmid:27598231
Krenzien F et al. Age-Dependent Metabolic and Immunosuppressive Effects of Tacrolimus. 2017 Am. J. Transplant. pmid:27754593
Egli A et al. Renal failure five years after lung transplantation due to polyomavirus BK-associated nephropathy. 2010 Am. J. Transplant. pmid:20840474
Zafrani L et al. Incidence, risk factors and clinical consequences of neutropenia following kidney transplantation: a retrospective study. 2009 Am. J. Transplant. pmid:19538494
Touzot M et al. Renal transplantation in HIV-infected patients: the Paris experience. 2010 Am. J. Transplant. pmid:20840478
Krämer BK et al. Tacrolimus once daily (ADVAGRAF) versus twice daily (PROGRAF) in de novo renal transplantation: a randomized phase III study. 2010 Am. J. Transplant. pmid:20840480
Trunečka P et al. Once-daily prolonged-release tacrolimus (ADVAGRAF) versus twice-daily tacrolimus (PROGRAF) in liver transplantation. 2010 Am. J. Transplant. pmid:20840481
Ekberg H et al. Calcineurin inhibitor minimization in the Symphony study: observational results 3 years after transplantation. 2009 Am. J. Transplant. pmid:19563339
Wang Q et al. Biodegradable microsphere-loaded tacrolimus enhanced the effect on mice islet allograft and reduced the adverse effect on insulin secretion. 2004 Am. J. Transplant. pmid:15084166
Schubert M et al. Pharmacokinetics of sirolimus and tacrolimus in pediatric transplant patients. 2004 Am. J. Transplant. pmid:15084173
ter Meulen CG et al. Steroid-withdrawal at 3 days after renal transplantation with anti-IL-2 receptor alpha therapy: a prospective, randomized, multicenter study. 2004 Am. J. Transplant. pmid:15084178
Borrows R et al. Steroid sparing with tacrolimus and mycophenolate mofetil in renal transplantation. 2004 Am. J. Transplant. pmid:15476485
Silva HT et al. Planned randomized conversion from tacrolimus to sirolimus-based immunosuppressive regimen in de novo kidney transplant recipients. 2013 Am. J. Transplant. pmid:24266969
Ricciardelli I et al. Rapid generation of EBV-specific cytotoxic T lymphocytes resistant to calcineurin inhibitors for adoptive immunotherapy. 2013 Am. J. Transplant. pmid:24266973
Hu X et al. Chimeric Allografts Induced by Short-Term Treatment With Stem Cell-Mobilizing Agents Result in Long-Term Kidney Transplant Survival Without Immunosuppression: A Study in Rats. 2016 Am. J. Transplant. pmid:26749344
Hernández-Fisac I et al. Tacrolimus-induced diabetes in rats courses with suppressed insulin gene expression in pancreatic islets. 2007 Am. J. Transplant. pmid:17725683
Cameron AM et al. Chimeric Allografts Induced by Short-Term Treatment With Stem Cell Mobilizing Agents Result in Long-Term Kidney Transplant Survival Without Immunosuppression: II, Study in Miniature Swine. 2016 Am. J. Transplant. pmid:26748958
Budde K et al. Sotrastaurin, a novel small molecule inhibiting protein kinase C: first clinical results in renal-transplant recipients. 2010 Am. J. Transplant. pmid:20121745
Hanto DW et al. Intraoperative administration of inhaled carbon monoxide reduces delayed graft function in kidney allografts in Swine. 2010 Am. J. Transplant. pmid:20977633
Al-Massarani G et al. Impact of immunosuppressive treatment on endothelial biomarkers after kidney transplantation. 2008 Am. J. Transplant. pmid:18925903
Frassetto LA and Benet LZ Pharmacogenomics and transplantation: where are we? 2004 Am. J. Transplant. pmid:15147415
MacPhee IA et al. The influence of pharmacogenetics on the time to achieve target tacrolimus concentrations after kidney transplantation. 2004 Am. J. Transplant. pmid:15147425
Artz MA et al. Conversion from cyclosporine to tacrolimus improves quality-of-life indices, renal graft function and cardiovascular risk profile. 2004 Am. J. Transplant. pmid:15147428
Hamdy AF et al. Comparison of sirolimus with low-dose tacrolimus versus sirolimus-based calcineurin inhibitor-free regimen in live donor renal transplantation. 2005 Am. J. Transplant. pmid:16162204
Kaufman DB et al. Alemtuzumab induction and prednisone-free maintenance immunotherapy in kidney transplantation: comparison with basiliximab induction--long-term results. 2005 Am. J. Transplant. pmid:16162205
Mujtaba MA et al. Conversion from tacrolimus to belatacept to prevent the progression of chronic kidney disease in pancreas transplantation: case report of two patients. 2014 Am. J. Transplant. pmid:25179306
Schwarz A et al. Polyoma virus nephropathy in native kidneys after lung transplantation. 2005 Am. J. Transplant. pmid:16162212
Böger CA et al. Reverse diastolic intrarenal flow due to calcineurin inhibitor (CNI) toxicity. 2006 Am. J. Transplant. pmid:16889550
Tan HP et al. Living donor renal transplantation using alemtuzumab induction and tacrolimus monotherapy. 2006 Am. J. Transplant. pmid:16889606
Hesselink DA et al. Cyclosporine interacts with mycophenolic acid by inhibiting the multidrug resistance-associated protein 2. 2005 Am. J. Transplant. pmid:15816878
Byrne GW et al. Warfarin or low-molecular-weight heparin therapy does not prolong pig-to-primate cardiac xenograft function. 2005 Am. J. Transplant. pmid:15816881
Lucey MR et al. A comparison of tacrolimus and cyclosporine in liver transplantation: effects on renal function and cardiovascular risk status. 2005 Am. J. Transplant. pmid:15816894
Pillebout E et al. Renal histopathological lesions after orthotopic liver transplantation (OLT). 2005 Am. J. Transplant. pmid:15816895
Arnold R et al. Association between calcineurin inhibitor treatment and peripheral nerve dysfunction in renal transplant recipients. 2013 Am. J. Transplant. pmid:23841745
Schold JD The burden of proof in the design of early phase clinical trials. 2013 Am. J. Transplant. pmid:23802723
Chisholm-Burns MA et al. Improving outcomes of renal transplant recipients with behavioral adherence contracts: a randomized controlled trial. 2013 Am. J. Transplant. pmid:23819827
Willicombe M et al. Outcome of patients with preformed donor-specific antibodies following alemtuzumab induction and tacrolimus monotherapy. 2011 Am. J. Transplant. pmid:21299828
Muthusamy AS et al. Alemtuzumab induction and steroid-free maintenance immunosuppression in pancreas transplantation. 2008 Am. J. Transplant. pmid:18828772
Van Laecke S et al. Posttransplantation hypomagnesemia and its relation with immunosuppression as predictors of new-onset diabetes after transplantation. 2009 Am. J. Transplant. pmid:19624560
Srinivas TR et al. The noninferiority trial: don't don't do it. 2010 Am. J. Transplant. pmid:21087412
Madariaga ML et al. Kidney-induced cardiac allograft tolerance in miniature swine is dependent on MHC-matching of donor cardiac and renal parenchyma. 2015 Am. J. Transplant. pmid:25824550
Pescovitz MD et al. A randomized, double-blind, pharmacokinetic study of oral maribavir with tacrolimus in stable renal transplant recipients. 2009 Am. J. Transplant. pmid:19663892
Vanrenterghem Y et al. Minimization of immunosuppressive therapy after renal transplantation: results of a randomized controlled trial. 2005 Am. J. Transplant. pmid:15636615
Sindhi R et al. Enhanced donor-specific alloreactivity occurs independently of immunosuppression in children with early liver rejection. 2005 Am. J. Transplant. pmid:15636616
Shergill AK et al. Applicability, tolerability and efficacy of preemptive antiviral therapy in hepatitis C-infected patients undergoing liver transplantation. 2005 Am. J. Transplant. pmid:15636619
Tydén G et al. ABO incompatible kidney transplantations without splenectomy, using antigen-specific immunoadsorption and rituximab. 2005 Am. J. Transplant. pmid:15636623
Woodle ES et al. A multicenter pilot study of early (4-day) steroid cessation in renal transplant recipients under simulect, tacrolimus and sirolimus. 2005 Am. J. Transplant. pmid:15636625
Mian AN et al. Mycoplasma hominis septic arthritis in a pediatric renal transplant recipient: case report and review of the literature. 2005 Am. J. Transplant. pmid:15636628
Gregoor PS and Weimar W Tacrolimus and pure red-cell aplasia. 2005 Am. J. Transplant. pmid:15636632
Cendales L et al. Tacrolimus to Belatacept Conversion Following Hand Transplantation: A Case Report. 2015 Am. J. Transplant. pmid:25773260
Rodríguez-Perálvarez M et al. Tacrolimus exposure after liver transplantation in randomized controlled trials: too much for too long. 2013 Am. J. Transplant. pmid:23621166
Gao R et al. Effects of immunosuppressive drugs on in vitro neogenesis of human islets: mycophenolate mofetil inhibits the proliferation of ductal cells. 2007 Am. J. Transplant. pmid:17391142
Jaksch P et al. Alemtuzumab in lung transplantation: an open-label, randomized, prospective single center study. 2014 Am. J. Transplant. pmid:25039364
Neuberger JM et al. Delayed introduction of reduced-dose tacrolimus, and renal function in liver transplantation: the 'ReSpECT' study. 2009 Am. J. Transplant. pmid:19120077
Momper JD et al. The impact of conversion from prograf to generic tacrolimus in liver and kidney transplant recipients with stable graft function. 2011 Am. J. Transplant. pmid:21714845
Asrani SK and O'Leary JG Can one pill a day keep rejection away? 2015 Am. J. Transplant. pmid:25703394
Bhorade SM et al. Comparison of three tacrolimus-based immunosuppressive regimens in lung transplantation. 2003 Am. J. Transplant. pmid:14629288
Madeleine MM et al. HPV-related cancers after solid organ transplantation in the United States. 2013 Am. J. Transplant. pmid:24119294
Lemahieu WP et al. CYP3A4 and P-glycoprotein activity in healthy controls and transplant patients on cyclosporin vs. tacrolimus vs. sirolimus. 2004 Am. J. Transplant. pmid:15307840
Pondrom S The AJT report. 2008 Am. J. Transplant. pmid:18324976
Fan DM et al. Successful ABO-incompatible living-related intestinal transplantation: a 2-year follow-up. 2015 Am. J. Transplant. pmid:25808777
O'Connell PJ et al. Multicenter Australian trial of islet transplantation: improving accessibility and outcomes. 2013 Am. J. Transplant. pmid:23668890
Russ GR et al. Efficacy of sotrastaurin plus tacrolimus after de novo kidney transplantation: randomized, phase II trial results. 2013 Am. J. Transplant. pmid:23668931
Rodríguez-Perálvarez M et al. Tacrolimus trough levels, rejection and renal impairment in liver transplantation: a systematic review and meta-analysis. 2012 Am. J. Transplant. pmid:22703529
Flechner SM et al. The ORION study: comparison of two sirolimus-based regimens versus tacrolimus and mycophenolate mofetil in renal allograft recipients. 2011 Am. J. Transplant. pmid:21668635
Budde K How to use mTOR inhibitors? The search goes on. 2011 Am. J. Transplant. pmid:21668636
Luan FL et al. Comparative risk of impaired glucose metabolism associated with cyclosporine versus tacrolimus in the late posttransplant period. 2008 Am. J. Transplant. pmid:18786231
Chen G et al. Anti-CD45RB monoclonal antibody prolongs renal allograft survival in cynomolgus monkeys. 2007 Am. J. Transplant. pmid:17227555
Woywodt A et al. Different preparations of tacrolimus and medication errors. 2008 Am. J. Transplant. pmid:18786238
Servais A et al. Interstitial fibrosis evolution on early sequential screening renal allograft biopsies using quantitative image analysis. 2011 Am. J. Transplant. pmid:21672152
Senior PA et al. Changes in renal function after clinical islet transplantation: four-year observational study. 2007 Am. J. Transplant. pmid:17227560
Carenco C et al. Tacrolimus and the risk of solid cancers after liver transplant: a dose effect relationship. 2015 Am. J. Transplant. pmid:25648361
Levi Z et al. Switching from tacrolimus to sirolimus halts the appearance of new sebaceous neoplasms in Muir-Torre syndrome. 2007 Am. J. Transplant. pmid:17229076
Mulay AV et al. Impact of immunosuppressive medication on the risk of renal allograft failure due to recurrent glomerulonephritis. 2009 Am. J. Transplant. pmid:19353768
Ogawa T et al. Rho-associated kinase inhibitor reduces tumor recurrence after liver transplantation in a rat hepatoma model. 2007 Am. J. Transplant. pmid:17229077
Miriuka SG et al. mTOR inhibition induces endothelial progenitor cell death. 2006 Am. J. Transplant. pmid:16796720
Mazariegos GV et al. Dendritic cell subset ratio in tolerant, weaning and non-tolerant liver recipients is not affected by extent of immunosuppression. 2005 Am. J. Transplant. pmid:15643991
Bahra M et al. MMF and calcineurin taper in recurrent hepatitis C after liver transplantation: impact on histological course. 2005 Am. J. Transplant. pmid:15644002
Ryan CM and Swanson DP clinical research, innovative practice and IRB review: identifying and respecting boundaries. 2007 Am. J. Transplant. pmid:17331113
Rostaing L et al. Alefacept combined with tacrolimus, mycophenolate mofetil and steroids in de novo kidney transplantation: a randomized controlled trial. 2013 Am. J. Transplant. pmid:23730730
Silva HT et al. One-year results with extended-release tacrolimus/MMF, tacrolimus/MMF and cyclosporine/MMF in de novo kidney transplant recipients. 2007 Am. J. Transplant. pmid:17217442
Pallet N et al. Kidney transplant recipients carrying the CYP3A4*22 allelic variant have reduced tacrolimus clearance and often reach supratherapeutic tacrolimus concentrations. 2015 Am. J. Transplant. pmid:25588704
Levy G et al. REFINE: a randomized trial comparing cyclosporine A and tacrolimus on fibrosis after liver transplantation for hepatitis C. 2014 Am. J. Transplant. pmid:24456049
Posselt AM et al. Islet transplantation in type 1 diabetics using an immunosuppressive protocol based on the anti-LFA-1 antibody efalizumab. 2010 Am. J. Transplant. pmid:20659093
Haufroid V et al. CYP3A5 and ABCB1 polymorphisms and tacrolimus pharmacokinetics in renal transplant candidates: guidelines from an experimental study. 2006 Am. J. Transplant. pmid:17049058
Ciancio G et al. Advantage of rapamycin over mycophenolate mofetil when used with tacrolimus for simultaneous pancreas kidney transplants: randomized, single-center trial at 10 years. 2012 Am. J. Transplant. pmid:22946986
Jacobson PA et al. Lower calcineurin inhibitor doses in older compared to younger kidney transplant recipients yield similar troughs. 2012 Am. J. Transplant. pmid:22947444
Echeverri GJ et al. Endoscopic gastric submucosal transplantation of islets (ENDO-STI): technique and initial results in diabetic pigs. 2009 Am. J. Transplant. pmid:19775318
Gaston RS et al. Fixed- or controlled-dose mycophenolate mofetil with standard- or reduced-dose calcineurin inhibitors: the Opticept trial. 2009 Am. J. Transplant. pmid:19459794
Mandelbrot DA et al. Effect of Ramipril on Urinary Protein Excretion in Maintenance Renal Transplant Patients Converted to Sirolimus. 2015 Am. J. Transplant. pmid:26176342
Miller LW Cardiovascular toxicities of immunosuppressive agents. 2002 Am. J. Transplant. pmid:12392286
Chhabra D et al. Impact of calcineurin-inhibitor conversion to mTOR inhibitor on renal allograft function in a prednisone-free regimen. 2013 Am. J. Transplant. pmid:24007570