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A Review of Diabetes Mellitus and Exposure to the Environmental Toxicant Cadmium with an Emphasis on Likely Mechanisms of Action

机译:糖尿病及其对环境有毒镉的暴露的研究着重于可能的作用机制

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摘要

There is increasing interest in how exposure to environmental substances can contribute to the onset of Type II diabetes mellitus (T2DM). Impaired insulin release is a hallmark of type I diabetes mellitus and is involved in the progression of T2DM. Both epidemiological and experimental studies show that exposure to the environmental pollutant cadmium (Cd), is associated with hyperglycemia, T2DM and reduced serum insulin. The goal of this review is to examine likely mechanisms of action of Cd-induced dysglycemia based on experimental studies in the literature and from the most recent findings in the Edwards lab. The primary focus of this review will examine how Cd may cause islet dysfunction and subsequent impaired insulin release. Recent findings in the Edwards lab indicate that Cd causes time-dependent and statistically significant changes in fasting leptin, Glucose-dependent Insulinotropic Polypeptide (GIP) and pancreas polypeptide hormone levels in a subchronic animal model of Cd-induced hyperglycemia. This review summarizes the most likely cellular mechanisms by which the ubiquitous environmental contaminant Cd disrupts glucose homeostasis. While individual cellular effects of Cd are reviewed it is likely that no one single mechanism is involved, rather multiple mechanisms exist and work synergistically resulting in islet dysfunction and ultimately dysglycemia.
机译:人们越来越关注暴露于环境物质如何导致II型糖尿病(T2DM)的发作。胰岛素释放受损是I型糖尿病的标志,并参与T2DM的发展。流行病学和实验研究均表明,暴露于环境污染物镉(Cd)与高血糖,T2DM和血清胰岛素降低有关。这篇综述的目的是根据文献中的实验研究以及爱德华兹实验室的最新发现,研究镉诱导的血糖异常的可能作用机制。这篇综述的主要重点将研究镉如何引起胰岛功能障碍和随后的胰岛素释放受损。 Edwards实验室的最新发现表明,Cd会在Cd诱导的高血糖亚慢性动物模型中引起空腹瘦素,葡萄糖依赖性促胰岛素多肽(GIP)和胰腺多肽激素水平的时间依赖性和统计学显着变化。这篇综述总结了普遍的环境污染物Cd破坏葡萄糖稳态的最可能的细胞机制。尽管对Cd的单个细胞作用进行了评估,但很可能没有一个单一的机制参与其中,而是存在多种机制,并且协同作用导致胰岛功能障碍,最终导致血糖异常。

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