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In silico assessment of human health risks caused by cyanotoxins from cyanobacteria

机译:在Silico评估由Cyanobacteria的氰松坦引起的人类健康风险

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Harmful algal blooms (HABs) that are formed by cyanobacteria have become a serious issue worldwide in recent years. Cyanobacteria can release a type of secondary metabolites called cyanotoxins into aquatic systems which may indirectly or directly provide health risks to the environment and humans. Cyanotoxins provide some of the most powerful natural poisons including potent neurotoxins, hepatotoxins, cytotoxins, and endotoxins that may result in environmental health risks, and long-term morbidity and mortality to animals and humans. In this research, we used the chemcomputational tool Molinspiration for molecular property predictions, Pred-hERG 4.2 web software for cardiac toxicity prediction, and Pred-Skin 2.0 web software for predicting skin sensitization. We are predicting some toxicological aspects of cyanobacteria here using chemcomputational tools with the hypothesis that cyanotoxins are providing a risk to human health. We are using the tool Pred-hERG 4.2 to predict hERG channel blocking potential and the Pred-skin tool to predict skin sensitization due to cyanotoxins. The potential of anatoxin, ambigol, the microcystin group, and lyngbyatoxin A, lyngbyatoxin B, nodularin-R, and saxitoxin were predicted to cause skin sensitization in the final results (consensus model). Anatoxin-a and lyngbyatoxin were predicted to allow GI absorption and blood–brain barrier penetration. Among the 20 predicted cyanotoxins only aeruginosin 103-A, ambigol A, and ambigol were predicted by Pred-hERG 4.2 according to the applicability domain results as potential cardiotoxins with weak or moderate potency. Lyngbyatoxin shows activity through the GPCR ligand and protease, kinase, and enzyme inhibitor.
机译:近年来,蓝藻形成的有害藻类绽放(HABS)已成为全球的严重问题。蓝藻可以释放一种称为氰毒素的次级代谢产物,进入水生系统,其间接或直接为环境和人类提供健康风险。氰毒素提供一些最强大的天然毒药,包括有效的神经毒素,肝毒素,细胞毒素和内毒素,可能导致环境健康风险,以及对动物和人类的长期发病率和死亡率。在本研究中,我们使用了ChemComputational工具的分子性能预测,Pred-Herg 4.2用于心脏毒性预测的Web软件,以及用于预测皮肤致敏的Pred-Skin 2.0 Web软件。我们预测使用ChemComputationationationations的假设来预测Cyanobacteria的一些毒理学方面,所述假设是氰毒素对人体健康提供风险的风险。我们正在使用工具pred-herg 4.2来预测HERG通道阻塞电位和预测皮肤工具,以预测由于氰松坦引起的皮肤致敏。预计anaToxin,嗜水剂,微囊藻素A,Lyngbyatoxin B,Nodularin-R和Saxitoxin的潜力将导致最终结果(共识模型)引起皮肤致敏。预计anatoxin-a和淋巴结毒素允许GI吸收和血脑屏障渗透。在20个预测的氰基毒素中,通过Pred-Herg 4.2根据适用性域导致具有弱或中等效力的潜在心脏毒素来预测铜绿素毒素103-A,嗜水A和嗜水剂。 Lyngbyatoxin显示通过GPCR配体和蛋白酶,激酶和酶抑制剂的活性。

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