The Role of cadmium in proteins glycation by glucose formation of methylglyoxal and hydrogen peroxide in vitro

E. Suhartono, T. Triawanti, A. Leksono, M. Djati
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引用次数: 23

Abstract

Cadmium (Cd) is a heavy metal that be a source of concern for industrial workers and it was proposed in the formation of advance glycation end products (AGEs) such as methylglyoxal (MG). MG have recently attracted much attention because of their possible clinical significance in chronic and agerelated diseases. Based on previous research, methylglyoxal formation can be accelerated by metals in vitro. The role of Cd in the formation of MG and hydrogen peroxide has not been much studied. Thus, our study aims to measure the formation rate of MG and hydrogen peroxide in the presence of Cd in vitro. This research was divided into 4 groups (1 control group and 3 treatment groups), than we set carbonyl compound assay, methylglyoxals assay, and hydrogen peroxide assay. For analyzing of the data, SPSS software version 17 was used and was examined by ANOVA and regression correlation test. For all outcomes, a nominal p-value of p < 0,05 was considered significant. We found that there are significant correlation between Cd exposure on the formation of hydrogen peroxide and methylglyoxal (p < 0,05) in nonenzymatic glycation of proteins by glucose. The increased Cd level accelerate the formation of methylglyoxal and hydrogen peroxide.
镉在葡萄糖形成甲基乙二醛和过氧化氢的蛋白质糖基化中的作用
镉(Cd)是一种引起工业工人关注的重金属,它在糖基化终产物(AGEs)如甲基乙二醛(MG)的形成中被提出。近年来,MG因其在慢性及相关疾病中可能具有的临床意义而受到广泛关注。根据以往的研究,甲基乙二醛的形成可以通过金属体外加速。Cd在MG和过氧化氢形成中的作用还没有得到很多研究。因此,我们的研究旨在测定体外镉存在下MG和过氧化氢的形成速率。本研究分为4组(1个对照组和3个治疗组),分别设置羰基化合物试验、甲基乙二醛试验和过氧化氢试验。数据分析采用SPSS软件17版,采用方差分析和回归相关检验。对于所有结果,名义p值p < 0.05被认为是显著的。我们发现Cd暴露对葡萄糖非酶糖基化蛋白质中过氧化氢和甲基乙二醛的形成有显著的相关性(p < 0.05)。增加的Cd水平加速了甲基乙二醛和过氧化氢的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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