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Mechanisms and Effects Posed by Neurotoxic Products of Cyanobacteria/Microbial Eukaryotes/Dinoflagellates in Algae Blooms: a Review

机译:藻类植物中的蓝藻/微生物真核生物/微生物真核碱/堇青蛋白酶诱导的机制和效果:促进综述

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摘要

Abstract Environmental toxins produced by cyanobacteria and dinoflagellates have increasingly become a public health concern due to their ability to damage several tissues in humans. In particular, emerging evidence has called attention to the neurodegenerative effects of the cyanobacterial toxin β- N -methylamino- l -alanine (BMAA). Furthermore, other toxins such as anatoxin, saxitoxin, microcystin, nodularin and ciguatoxin also have a different range of effects on human tissues, including hepatotoxicity, neurotoxicity and gastrointestinal irritation. However, the vast majority of known environmental toxins have not yet been examined in the context of neurodegenerative disease. This review aims to investigate whether neurotoxic mechanisms can be demonstrated in all aforementioned toxins, and whether there exists a link to neurodegeneration. Management of toxin exposure and potential neuroprotective compounds is also discussed. Collectively, all aforementioned microbial toxins are likely to exert some form of neuronal damage, with many of their modes of action consistent with neurodegeneration. This is important in advancing our current understanding of the cytotoxic potential of environmental toxins upon human brain function, particularly in the context of age-related neurodegenerative disease.
机译:摘要由于损伤人类损害了几种组织的能力,蓝色细菌和Dinoflagellates产生的摘要环境毒素越来越成为公共卫生问题。特别是,新兴的证据称为蓝藻毒素β-n-甲基氨基 - l- alanine(BMAA)的神经变性作用。此外,其他毒素如芍药蛋白,撒克西蛋白,微囊藻,核心和川芎嗪,对人组织的影响也具有不同的影响,包括肝毒性,神经毒性和胃肠刺激。然而,尚未在神经退行性疾病的背景下检查绝大多数已知的环境毒素。该审查旨在调查神经毒性机制是否可以在所有上述毒素中证明,以及是否存在与神经变性的联系。还讨论了毒素暴露的管理和潜在的神经保护化合物。集体,所有上述微生物毒素可能会施加某种形式的神经元损伤,其中许多作用方式与神经变性一致。这对于推进我们目前对人脑功能的对环境毒素的细胞毒性潜力的理解是重要的,特别是在与年龄相关的神经变性疾病的背景下。

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