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Association of myeloperoxidase G-463A gene polymorphism with diabetic nephropathy in Japanese type 2 diabetic subjects

机译:髓过氧化物酶G-463A基因多态性与日本2型糖尿病患者的糖尿病肾病的关系

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References(25) It is possible that myeloperoxidase (MPO) contributes to the pathogenesis of diabetic nephropathy through the production of reactive oxygen species and HOCl/OCl-. In this study, we examined the relationship between renal damage and MPO G-463A gene polymorphism that is associated with its transcription activity in diabetic patients. We evaluated the association between MPO G-463A polymorphism and the prevalence of proteinuria and estimated GFR (eGFR) in 1448 Japanese type 2 diabetic subjects. The prevalence of macroalbuminuria was higher as the number of G alleles increased (GG (7.6%), GA (3.8%), AA (0.0%), p for trend=0.0269). The number of G alleles was significantly associated with macroalbuminuria (odds ratio 2.12, 95%CI 1.06-4.24, p=0.0344) even after adjustment for conventional risk factors. Inversely, eGFR was lower as the number of G alleles increased (GG (76.7±20.7 mL/min/1.73m2), GA (81.0±22.8 mL/min/1.73m2), AA (92.0±23.1 mL/min/1.73m2), p for trend=0.0025) and the number of G allele was an independent risk factor for a low eGFR (β=-0.072, p=0.003). We also examined the association between MPO expression and several stages of renal damage in a high-fat diet-induced diabetic mouse model. The proteinuria-induced increase in MPO expression was markedly enhanced in diabetic mice, and MPO expression was significantly correlated with the severity of kidney damage. In conclusion, it is likely that the G allele of the MPO G-476T polymorphism is a susceptibility allele for renal injury in type 2 diabetic patients.
机译:参考文献(25)髓过氧化物酶(MPO)可能通过产生活性氧和HOCl / OCl-来促进糖尿病性肾病的发病。在这项研究中,我们检查了糖尿病患者肾脏损害与MPO G-463A基因多态性之间的关系,该基因多态性与其转录活性有关。我们评估了1448位日本2型糖尿病受试者中MPO G-463A多态性与蛋白尿患病率和估计GFR(eGFR)之间的关联。大型白蛋白尿的患病率随G等位​​基因数目的增加而增加(GG(7.6%),GA(3.8%),AA(0.0%),p = 0.0269)。即使在对常规危险因素进行调整后,G等位基因的数量也与巨蛋白尿显着相关(比值比为2.12,95%CI为1.06-4.24,p = 0.0344)。相反,随着G等位基因数量的增加,eGFR降低(GG(76.7±20.7 mL / min / 1.73m2),GA(81.0±22.8 mL / min / 1.73m2),AA(92.0±23.1 mL / min / 1.73m2) ),趋势的p = 0.0025),G等位基因的数量是低eGFR的独立危险因素(β= -0.072,p = 0.003)。我们还检查了高脂饮食诱导的糖尿病小鼠模型中MPO表达与肾脏损害的几个阶段之间的关联。蛋白尿诱导的MPO表达增加在糖尿病小鼠中明显增强,并且MPO表达与肾脏损害的严重程度显着相关。总之,MPO G-476T多态性的G等位基因可能是2型糖尿病患者肾损伤的易感等位基因。

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