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Influence of cobalamin on arsenic metabolism in Bangladesh.

机译:钴胺素对​​孟加拉国砷代谢的影响。

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BACKGROUND: Arsenic is a carcinogen to which 35 million people in Bangladesh are chronically exposed. The enzymatic transfer of methyl groups to inorganic As (iAs) generates monomethylarsonic (MMA) and dimethylarsinic acids (DMA) and facilitates urinary As (uAs) elimination. This process is dependent on one-carbon metabolism, a pathway in which folate and cobalamin have essential roles in the recruitment and transfer of methyl groups. Although DMA(V) is the least toxic metabolite, increasing evidence suggests that MMA(III) may be the most cytotoxic and genotoxic As intermediary metabolite. OBJECTIVE: We examined the associations between plasma cobalamin and uAs metabolites. METHODS: We conducted a cross-sectional study of 778 Bangladeshi adults in which we over-sampled cobalamin-deficient participants. Participants provided blood samples for the measurement of plasma cobalamin and urine specimens for As measurements. RESULTS: Cobalamin was inversely associated with the proportion of total uAs excreted as iAs (%iAs) [unstandardized regression coefficient (b) = -0.10; 95% confidence interval (CI), -0.17 to -0.02; p = 0.01] and positively associated with %MMA (b = 0.12; 95% CI, 0.05 to 0.20; p = 0.001). Both of these associations were stronger among folate-sufficient participants (%iAs: b = -0.17; 95% CI, -0.30 to -0.03; p = 0.02. %MMA: b = 0.20; 95% CI, 0.11 to 0.30; p < 0.0001), and the differences by folate status were statistically significant. CONCLUSIONS: In this group of Bangladeshi adults, cobalamin appeared to facilitate the first As methylation step among folate-sufficient individuals. Given the toxicity of MMA(III), our findings suggest that in contrast to folate, cobalamin may not favorably influence As metabolism.
机译:背景:砷是一种致癌物质,孟加拉国有3500万人长期暴露于这种致癌物质中。甲基向无机As(iAs)的酶促转移生成单甲基ar(MMA)和二甲基ar酸(DMA),并促进尿As(uAs)的消除。这个过程取决于单碳代谢,叶酸和钴胺素在甲基的募集和转移中起着至关重要的作用。尽管DMA(V)是毒性最低的代谢产物,但越来越多的证据表明MMA(III)作为中间代谢产物可能是最具细胞毒性和遗传毒性的。目的:我们检查了血浆钴胺素与uAs代谢产物之间的关系。方法:我们对778名孟加拉国成年人进行了一项横断面研究,其中对钴胺素缺乏症参与者进行了超采样。参与者提供了用于血浆血浆钴胺素测定的血样和用于As测定的尿液样本。结果:钴胺素与以iAs(%iAs)形式排泄的uAs的比例成反比[非标准化回归系数(b)= -0.10; 95%置信区间(CI),-0.17至-0.02; p = 0.01],与%MMA正相关(b = 0.12; 95%CI,0.05至0.20; p = 0.001)。在叶酸充足的参与者中,这两个关联都更强(%iAs:b = -0.17; 95%CI,-0.30至-0.03; p = 0.02。%MMA:b = 0.20; 95%CI,0.11至0.30; p <0.0001),并且叶酸状态的差异具有统计学意义。结论:在这组孟加拉国成年人中,钴胺素似乎促进了叶酸充足个体中的第一步砷甲基化步骤。考虑到MMA(III)的毒性,我们的发现表明,与叶酸相反,钴胺素可能不利地影响As代谢。

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