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首页> 外文期刊>Journal of industrial microbiology & biotechnology >Detoxification of the organophosphate nerve agent coumaphos using organophosphorus hydrolase immobilized on cellulose materials
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Detoxification of the organophosphate nerve agent coumaphos using organophosphorus hydrolase immobilized on cellulose materials

机译:使用固定在纤维素材料上的有机磷水解酶对有机磷酸神经毒剂库马磷进行解毒

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摘要

Neurotoxic organophosphates (OPs) are widely used as pesticides and for public health purposes, as well as being nerve gases. As a result of the widespread use of these compounds for agriculture, large volumes of wastewater are generated. Additionally, there are large stockpiles of the nerve gases soman, sarin and VX in the United States and elsewhere around the world. Organophosphorus hydrolase (OPH) is an enzyme that catalyzes the hydrolysis of OP nerve agents. To date, however, the use of this enzyme in detoxification processes has been rather limited due to the high cost of its purification and short catalytic half-life. This paper reports the development of a cost-effective method for the production and immobilization of OPH in a pilot application in an enzyme bioreactor column for detoxification of paraoxon and coumaphos in contaminated wastewaters. A fusion between OPH and a cellulose binding domain that binds selectively to cellulose was generated to allow one-step purification and immobilization of OPH on cheap and abundantly available cellulose immobilization matrices. When packed in a column bioreactor, the immobilized fusion enzyme was able to completely degrade coumaphos up to a concentration of 0.2 mM. However, stirring of OPH immobilized on cellulose materials resulted in complete OP degradation of 1.5 mM coumaphos. The bioreactor column degraded the compounds tested at high concentration, rapidly, and without loss of process productivity for about 2 months.
机译:神经毒性有机磷酸酯(OPs)以及神经毒气被广泛用作农药和公共卫生目的。这些化合物广泛用于农业的结果是产生大量废水。此外,在美国和世界其他地方也有大量的神经气体梭曼,沙林和VX。有机磷水解酶(OPH)是一种催化OP神经物质水解的酶。然而,迄今为止,由于其纯化的高成本和短的催化半衰期,该酶在排毒过程中的使用受到了很大的限制。本文报道了一种在酶生物反应器塔中进行生产和固定化OPH的低成本方法的开发,该方法可用于对受污染的废水中的对氧磷和苯并二磷进行解毒。产生OPH和选择性结合纤维素的纤维素结合域之间的融合体,以允许一步纯化和将OPH固定在便宜且可大量获得的纤维素固定基质上。当固定在柱式生物反应器中时,固定的融合酶能够完全降解甲硫磷,直至浓度为0.2 mM。然而,搅拌固定在纤维素材料上的OPH会导致1.5 mM的库马磷完全降解。生物反应器色谱柱可快速,高浓度地降解测试的化合物,并且不会降低工艺生产率约2个月。

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