首页> 外文期刊>Neurotoxicology and teratology >High-sensitivity quantitative analysis reveals the non-linear relationship between the dose and deposition of diphenylarsinic acid in the rat central nervous system following its subchronic exposure
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High-sensitivity quantitative analysis reveals the non-linear relationship between the dose and deposition of diphenylarsinic acid in the rat central nervous system following its subchronic exposure

机译:高敏感性定量分析揭示了次级暴露后大鼠中枢神经系统中双苯基胂酸的剂量和沉积之间的非线性关系

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摘要

In the year 2003, the residents of Kamisu, Japan, were exposed to pentavalent organic arsenic diphenylarsinic acid (DPAA[V]) via their normal drinking water. Following the exposure, they developed cerebellar and brainstem symptoms. Although the relatively high dose of DPAA(V) is assumed to have caused their symptoms, the relationship between the exposed dose of DPAA(V) and the level of their deposition in the central nervous system (CNS) remains unclear. Using liquid chromatography–tandem mass spectrometry, we examined the deposition of DPAA(V) and its pentavalent metabolites in the CNS tissues of Crl:CD(SD) rats following the administration of DPAA(V) for 28days. We found that the concentrations of DPAA(V) in the CNS were very high, given a dose of 5.0mg/kg/day. However, very low concentrations of DPAA(V) were detected at a dose of 0.3 or 1.2mg/kg/day, suggesting the absence of a linear dose-response relationship between the dose and deposition of DPAA(V). We also found that this non-linear relationship was commonly observed in various non-CNS tissues, including the excretory system. Our study showed for the first time the exact relationship between the dose and tissue deposition of the organic arsenic following its subchronic administration.
机译:在2003年,日本Kamisu的居民通过其正常的饮用水暴露于五价有机砷二苯基胂酸(DPAA [V])。暴露后,它们开发了小脑和脑干症状。虽然假设相对高剂量的DPAA(V)导致其症状,但暴露剂量的DPAA(V)之间的关系和中枢神经系统(CNS)中的沉积水平仍不清楚。使用液相色谱 - 串联质谱法,我们检查了DPAA(V)后28天后CRL:CD(SD)大鼠CNS组织中DPAA(V)及其五价代谢物的沉积。我们发现CNS中DPAA(V)的浓度非常高,给药剂量为5.0mg / kg /天。然而,在0.3或1.2mg / kg /天的剂量下检测到非常低浓度的DPAA(v),表明DPAA(V)的剂量与沉积之间没有线性剂量 - 反应关系。我们还发现,在各种非CNS组织中通常观察到这种非线性关系,包括排泄系统。我们的研究表明,第一次在其次级矫正给药后的有机砷的剂量和组织沉积之间的确切关系。

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