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Association of four DNA polymorphisms with acute rejection after kidney transplantation
Josep Grinyó1, Yves Vanrenterghem, Björn Nashan
1Department of Nephrology, Hospital de Bellvitge, University of Barcelona, Barcelona, Spain. jgrinyo@csub.scs.es
Abstract:
Renal transplant outcomes exhibit large inter-individual variability, possibly on account of genetic variation in immune-response mediators and genes influencing the pharmacodynamics/pharmacokinetics of immunosuppressants. We examined 21 polymorphisms from 10 genes in 237 de novo renal transplant recipients participating in an open-label, multicenter study [Cyclosporine Avoidance Eliminates Serious Adverse Renal-toxicity (CAESAR)] investigating renal function and biopsy-proven acute rejection (BPAR) with different cyclosporine A regimens and mycophenolate mofetil. Genes were selected for their immune response and pharmacodynamic/pharmacokinetic relevance and were tested for association with BPAR. Four polymorphisms were significantly associated with BPAR. The ABCB1 2677T allele tripled the odds of developing BPAR (OR: 3.16, 95% CI [1.50-6.67]; P=0.003), as did the presence of at least one IMPDH2 3757C allele (OR: 3.39, 95% CI [1.42-8.09]; P=0.006). BPAR was almost fivefold more likely in patients homozygous for IL-10 -592A (OR: 4.71, 95% CI [1.52-14.55]; P=0.007) and twice as likely in patients with at least one A allele of TNF-alpha G-308A (OR: 2.18, 95% CI [1.08-4.41]; P=0.029). There were no statistically significant interactions between polymorphisms, or the different treatment regimens. Variation in genes of immune response and pharmacodynamic/pharmacokinetic relevance may be important in understanding acute rejection after renal transplant.
Insights
Genetic variations in immune response and drug metabolism genes significantly impact kidney transplant rejection risk. Specific gene polymorphisms, including ABCB1, IMPDH2, IL-10, and TNF-alpha, are associated with biopsy-proven acute rejection (BPAR).
Area of Science:
- Pharmacogenomics
- Transplantation immunology
- Renal medicine
Background:
- Inter-individual variability in renal transplant outcomes is significant.
- Genetic factors influencing immune response and drug metabolism may contribute to this variability.
Purpose of the Study:
- To investigate the association between genetic polymorphisms in immune response and pharmacokinetic/pharmacodynamic genes and biopsy-proven acute rejection (BPAR) in de novo renal transplant recipients.
Main Methods:
- A study of 237 de novo renal transplant recipients (CAESAR trial) examined 21 polymorphisms in 10 genes.
- Associations between these polymorphisms and BPAR were analyzed.
Main Results:
- Four polymorphisms showed significant association with BPAR: ABCB1 2677T allele (OR 3.16), IMPDH2 3757C allele (OR 3.39), IL-10 -592A homozygosity (OR 4.71), and TNF-alpha G-308A allele (OR 2.18).
- No significant interactions were found between polymorphisms or treatment regimens.
Conclusions:
- Genetic variations in immune response and drug metabolism genes are important factors in understanding acute rejection after renal transplantation.
- These findings may inform personalized immunosuppression strategies to improve transplant outcomes.
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