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Methylated tin toxicity a reappraisal using rodents models

机译:甲基化锡毒性再用啮齿动物模型进行重新评估

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Trimethyltin-induced intoxication has a great impact on human health due to the widespread occurrence of methyltin Compounds. Acute TMT intoxication ill humans leads to a variety of neurological symptoms which involve primarily the limbic system. In the present review we summarized the neuromorphological correlates of this neurological syndrome extending the analysis to various extra-limbic regions and detailing the fine ultrastructure of TMT-induced neuronal alterations. In order to comprehend the pathophysiology of TMT-induced neuronal damage we analysed the various experimental models of TMT-induced neurotoxicity. When comparing various animal species, it seems that the variety of neuropathological correlates are not related to species difference in the sensitivity to TMT toxicity but to a different susceptibility to secondary effects produced by TMT. In fact, apart from a primary neurotoxic damage induced by TMT at neuronal level, this compound promotes the onset of limbic mid generalized seizures, which in turn add a secondary damage to that induced immediately by, TMT. Thus, the different neuropathology observed ill different animal species is produced mainly by a different sensitivity to epilepsy-induced brain damage.
机译:由于甲基锡化合物的广泛存在,三甲基锡引起的中毒对人体健康具有重大影响。患有急性TMT的人中毒会导致多种神经系统症状,主要涉及边缘系统。在本综述中,我们总结了该神经系统综合征的神经形态学相关性,将分析范围扩展到了各种边缘外区域,并详细介绍了TMT诱导的神经元改变的精细超微结构。为了理解TMT诱导的神经元损伤的病理生理,我们分析了TMT诱导的神经毒性的各种实验模型。当比较各种动物物种时,似乎各种神经病理学相关性与物种对TMT毒性的敏感性的差异无关,而是与TMT产生的对次要作用的敏感性不同。实际上,除了在神经元水平上由TMT引起的原发性神经毒性损害外,该化合物还促进了边缘性中度全身性癫痫发作的发作,继而又增加了由TMT立即引起的继发性损害。因此,对不同动物物种观察到的不同神经病理学主要是由于对癫痫诱发的脑损伤的敏感性不同而产生的。

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