Literature DB >> 21076384

CYP3A5 *1 allele: impacts on early acute rejection and graft function in tacrolimus-based renal transplant recipients.

Sang-Il Min1, Seong Yup Kim, Sang Hyun Ahn, Seung-Kee Min, Si Hwa Kim, Yon Su Kim, Kyung Chul Moon, Jung Mi Oh, Sang Joon Kim, Jongwon Ha.   

Abstract

BACKGROUND: Tacrolimus is a major immunosuppressant, which has a narrow therapeutic range and wide interindividual variation. The effects of genetic polymorphisms of cytochrome P450 3A (CYP3A) 5 and Adenosine triphosphate-binding cassette subfamily B member 1 (ABCB1) genes on the achievement of target tacrolimus trough levels and clinical outcomes in renal transplants were evaluated.
METHODS: A total of 62 patients participated in this prospective study. After an initial fixed oral dose (0.08 mg/kg two times per day), tacrolimus doses were adjusted to a target range based on daily measurement of blood trough concentration. Every patient underwent 10-day scheduled biopsy. Both the patients and investigators were blinded for the genetic polymorphisms.
RESULTS: Those subjects expressing CYP3A5 (n=29) evidenced significantly lower tacrolimus trough levels between days 1 and 5 after transplantation, when compared with nonexpressers (n=33). Significantly higher overall incidences of early T-cell-mediated rejection (TCR) of at least Banff grade 1 in severity (P=0.017), including clinical rejection within 10 days and subclinical rejection in biopsies at postoperative day 10 were detected in CYP3A5 expressers. The severity of TCR according to Banff '07 classification was associated with CYP3A5 genotypes (P=0.012). Moreover, multivariate analysis identified CYP3A5 expression as an independent risk factor for TCR (odds ratio: 2.79; P=0.043). Significantly lower estimated glomerular filtration rates until 1 month and numerically lower estimated glomerular filtration rates by 12 months were noted in the CYP3A5 expressers. The genetic polymorphisms of the ABCB1 genes exerted no significant effects.
CONCLUSION: We confirmed the significant effects of CYP3A5 polymorphism on the achievement of target tacrolimus trough levels and the development of acute rejection in early period after transplantation and consequent renal allograft function.

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Year:  2010        PMID: 21076384     DOI: 10.1097/TP.0b013e3181fa93a4

Source DB:  PubMed          Journal:  Transplantation        ISSN: 0041-1337            Impact factor:   4.939


  18 in total

1.  Impact of CYP3A5 polymorphism on trough concentrations and outcomes of tacrolimus minimization during the early period after kidney transplantation.

Authors:  Khemjira Yaowakulpatana; Somratai Vadcharavivad; Atiporn Ingsathit; Nutthada Areepium; Surasak Kantachuvesiri; Bunyong Phakdeekitcharoen; Chonlaphat Sukasem; Supasil Sra-Ium; Vasant Sumethkul; Chagriya Kitiyakara
Journal:  Eur J Clin Pharmacol       Date:  2015-12-04       Impact factor: 2.953

2.  Prediction tacrolimus blood levels based on the Bayesian method in adult kidney transplant patients.

Authors:  Marie Antignac; Christine Fernandez; Benoît Barrou; Mariona Roca; Jean-Louis Favrat; Saïk Urien; Robert Farinotti
Journal:  Eur J Drug Metab Pharmacokinet       Date:  2011-02-24       Impact factor: 2.441

3.  Effect of CYP3A5 genotype on hospitalization cost for kidney transplantation.

Authors:  Suda Vannaprasaht; Chulaporn Limwattananon; Sirirat Anutrakulchai; Chitranon Chan-On
Journal:  Int J Clin Pharm       Date:  2018-11-16

Review 4.  Impact of Genetic Polymorphisms of ABCB1 (MDR1, P-Glycoprotein) on Drug Disposition and Potential Clinical Implications: Update of the Literature.

Authors:  Stefan Wolking; Elke Schaeffeler; Holger Lerche; Matthias Schwab; Anne T Nies
Journal:  Clin Pharmacokinet       Date:  2015-07       Impact factor: 6.447

5.  Therapeutic concentration achievement and allograft survival comparing usage of conventional tacrolimus doses and CYP3A5 genotype-guided doses in renal transplantation patients.

Authors:  Sirirat Anutrakulchai; Cholatip Pongskul; Kittrawee Kritmetapak; Chulaporn Limwattananon; Suda Vannaprasaht
Journal:  Br J Clin Pharmacol       Date:  2019-07-03       Impact factor: 4.335

6.  Measurement and compartmental modeling of the effect of CYP3A5 gene variation on systemic and intrarenal tacrolimus disposition.

Authors:  S Zheng; Y Tasnif; M F Hebert; C L Davis; Y Shitara; J C Calamia; Y S Lin; D D Shen; K E Thummel
Journal:  Clin Pharmacol Ther       Date:  2012-10-17       Impact factor: 6.875

Review 7.  Effect of CYP3A5*3 on kidney transplant recipients treated with tacrolimus: a systematic review and meta-analysis of observational studies.

Authors:  L Rojas; I Neumann; M José Herrero; V Bosó; J Reig; J Luis Poveda; J Megías; S Bea; S F Aliño
Journal:  Pharmacogenomics J       Date:  2014-09-09       Impact factor: 3.550

Review 8.  The role of pharmacogenetics in the disposition of and response to tacrolimus in solid organ transplantation.

Authors:  Dennis A Hesselink; Rachida Bouamar; Laure Elens; Ron H N van Schaik; Teun van Gelder
Journal:  Clin Pharmacokinet       Date:  2014-02       Impact factor: 6.447

9.  CYP3A5 and UGT1A9 Polymorphisms Influence Immunosuppressive Therapy in Pediatric Kidney Transplant Recipients.

Authors:  Paola Krall; Dominique Yañez; Angélica Rojo; Ángela Delucchi; Miguel Córdova; Jorge Morales; Pía Boza; Alonso de la Rivera; Natalie Espinoza; Natalia Armijo; Luis E Castañeda; Mauricio J Farfán; Carolina Salas
Journal:  Front Pharmacol       Date:  2021-04-22       Impact factor: 5.810

10.  Pharmacogenetics of tacrolimus: ready for clinical translation?

Authors:  Eliecer Coto; Beatriz Tavira; Beatriz Suárez-Álvarez; Carlos López-Larrea; Carmen Díaz-Corte; Francisco Ortega; Victoria Alvarez
Journal:  Kidney Int Suppl (2011)       Date:  2011-08
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