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首页> 外文期刊>Journal of Hazardous Materials >Organophosphorus hydrolase-poly-β-cyclodextrin as a stable self-decontaminating bio-catalytic material for sorption and degradation of organophosphate pesticide
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Organophosphorus hydrolase-poly-β-cyclodextrin as a stable self-decontaminating bio-catalytic material for sorption and degradation of organophosphate pesticide

机译:有机磷水解酶-聚-β-环糊精是一种稳定的自污染生物催化吸附和降解有机磷酸盐农药的生物催化材料

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摘要

A region suffering from an attack of a nerve agent requires not only a highly sorptive material but also a fast acting catalyst to decontaminate the lethal chemical present. The product should be capable of high sorptive capacity, selectivity and quick response time to neutralize the long lasting harmful effects of nerve agents. Herein, we have utilized organophosphorus hydrolase (OPH) as a non-toxic bio-catalytic material held in with the supporting matrix of poly-A-cyclodextrin (PCD) as a novel sorptive reinforced self-decontaminating material against organophosphate intoxication. OPH coated PCD (OPH-PCD) will not only be providing support for holding enzyme but also would be adsorbing methyl paraoxon (MPO) used as a simulant, in a host-guest inclusion complex formation. Sorption trend for PCD revealed preference towards the more hydrophobic MPO against para-nitrophenol (pNP). The results show sorption capacity of 1.26 mg/g of 100 pM MPO with PCD which was 1.7 times higher compared to pNP. The reaction rate with immobilized OPH-PCD was found to be 23% less compared to free enzyme. With the help of OPH-PCD, continuous hydrolysis (100%) of MPO into pNP was observed for a period of 24 h through packed bed reactor with good reproducibility and stability of enzyme. The long-term stability also confirmed its stable nature for the investigation period of 4 days where it maintained activity. Combined with its fast and reactive nature, the resulting self-decontaminating regenerating material provides a promising strategy for the neutralization of nerve agents and preserving the environment.
机译:遭受神经毒剂攻击的区域不仅需要高度吸附的材料,而且还需要快速起作用的催化剂来净化存在的致命化学物质。该产品应具有高吸附能力,选择性和快速响应时间,以中和神经毒剂的长期有害作用。在这里,我们已经利用有机磷水解酶(OPH)作为与聚A-环糊精(PCD)的支撑基质保持在一起的无毒生物催化材料,作为一种新型的吸附增强的自污染材料,以防止有机磷中毒。 OPH包被的PCD(OPH-PCD)不仅会为保持酶提供支持,而且还会在宿主-客体包合物形成过程中吸附用作模拟物的甲基对氧磷(MPO)。 PCD的吸附趋势表明偏爱于对硝基苯酚(pNP)更具疏水性的MPO。结果显示,PCD对100 pM MPO的吸附容量为1.26 mg / g,是pNP的1.7倍。发现与游离酶相比,固定化OPH-PCD的反应速率低23%。在OPH-PCD的帮助下,通过填充床反应器将MPO连续水解(100%)成pNP,持续24小时,具有良好的可重复性和酶的稳定性。长期稳定性还证实了其在维持活性的4天研究期内的稳定性。结合其快速和反应性,所得的自净化再生材料为中和神经毒剂和保护环境提供了一种有前途的策略。

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