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Published on: August 12, 2017
Relationship of gene polymorphisms for complement components C3 and factor H and kidney allograft function
Marija Milinkovic1,2, Vladimir Perovic3, Stefan Maksimovic4,5
1Clinic for Nephrology, University Clinical Center of Serbia, Belgrade, Serbia. mm.milinkovic@gmail.com.
Insights
Genetic variations in complement genes significantly impact kidney transplant outcomes. The FH GG genotype is linked to delayed graft function, while C3 variations affect long-term kidney function after transplantation.
Area of Science:
- Immunogenetics
- Transplantation Immunology
- Renal Medicine
Background:
- Complement system activation is crucial in ischemia/reperfusion injury and allograft rejection.
- Genetic factors may influence kidney transplant outcomes, but specific associations require further investigation.
Purpose of the Study:
- To investigate the association between single nucleotide polymorphisms (SNPs) in complement genes C3 and FH and outcomes in kidney transplant recipients.
- To determine the impact of these genetic variations on delayed graft function (DGF) and long-term allograft function.
Main Methods:
- Retrospective observational study of 73 non-diabetic deceased donor kidney allograft recipients.
- Genotyping for complement component C3 (rs2230199) and Factor H (FH) (rs800292) polymorphisms.
- Analysis of associations between genotypes and outcomes including delayed graft function and creatinine clearance over five years.
Main Results:
- The FH GG genotype was significantly associated with a higher incidence of delayed graft function (p=0.022).
- Recipients with FH GG genotype showed a higher frequency of DGF compared to GA genotype carriers (67.3% vs. 38.1%).
- C3 GC/GG genotypes were linked to significantly lower creatinine clearance at 1, 3, and 5 years post-transplant compared to CC genotype (p<0.010).
Conclusions:
- Complement gene polymorphisms, specifically in FH and C3, are significant determinants of kidney allograft outcomes.
- FH genotype influences early graft function (DGF), while C3 genotype impacts long-term renal function.
- Genetic predisposition plays a critical role in post-transplant renal outcomes, highlighting potential for personalized risk assessment.
Abstract:
Complement plays a central role in organ ischemia/reperfusion injury (IRI) and allograft rejection. A retrospective observational study included a cohort of 73 non-diabetic deceased donor kidney allograft recipients. We collected data on donor and recipient demographic, clinical and laboratory parameters. The main outcomes of our study were delayed graft function (DGF) and kidney allograft function during five years posttransplant. Gene single nucleotide polymorphisms (SNPs) for complement components C3 (rs2230199, G_C) and FH (rs800292, G_A) were determined. The genotyping results for FH polymorphism (184G > A) showed a distribution of GG (71.2%) and GA (28.8%) genotypes, with the AA genotype not detected in the cohort. The genotype frequencies of the C3 polymorphism (304 C > G) were CC (71.2%), CG (26.0%) and GG (2.8%).Analysis of FH SNP demonstrated that patients with the GG genotype had a statistically higher frequency of DGF compared to those with the GA genotype (67.3% vs. 38.1%, p = 0.022). Univariate linear regression analysis confirmed that the FH GG genotype was the only significant determinant of DGF (p = 0.025). Analysis of C3 SNP showed that patients with the GC/GG genotype demonstrated significantly lower levels of creatinine clearance compared to those with the CC genotype at 1 year (p = 0.002), 3 years (p = 0.001) and 5 years (p = 0.010) posttransplant. These findings underscore the importance of genetic factors in influencing renal outcomes post-transplant.
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