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Recent trends in development of biosensors for detection of microcystin.

机译:用于检测微囊藻毒素的生物传感器的最新发展趋势。

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Increased cyanobacterial blooms, a source of cyanotoxins are linked with climate change and eutrophication in aquatic bodies, a major concern worldwide. Microcystins are potently hepatotoxic, nephrotoxic as well as carcinogenic. Thus microcystins are threat to tourism, agriculture and animal's health. However, there is a still lacuna in the knowledge of regulation of microcystins production. Presence of toxic and non-toxic cyanobacterial strains together and occurrence of various microcystin variants in aquatic bodies compounded the problem. Although several analytical techniques for microcystin detection such as bioassay, ELISA, HPLC and LC-MS etc. have been already prevalent, the development of biosensors offered rapid and accurate detection, high reproducibility and portability. Sequencing of Microcystis spp., opened the new vistas towards the development of biosensor at molecular and genetic level. This review incorporates the current trends in the development of biosensors for microcystin detection in the light of state-of-the-art techniques.
机译:蓝藻藻华的增加(一种蓝藻毒素的来源)与气候变化和水生生物富营养化有关,这是世界范围内的一个主要问题。微囊藻毒素具有强肝毒性,肾毒性和致癌性。因此,微囊藻毒素对旅游业,农业和动物健康构成威胁。然而,在调节微囊藻毒素生产的知识上仍然存在空白。有毒和无毒的蓝细菌菌株的共同存在以及水体中各种微囊藻毒素变体的出现使问题更加复杂。尽管微囊藻毒素检测的几种分析技术,例如生物测定,ELISA,HPLC和LC-MS等已经很普遍,但是生物传感器的发展提供了快速,准确的检测,高重现性和便携性。微囊藻属的测序,为在分子和遗传水平上生物传感器的发展打开了新的前景。这篇综述结合了根据最新技术检测微囊藻毒素的生物传感器的当前趋势。

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