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Enzyme Stabilization in Nanostructured Materials, for Use in Organophosphorus Nerve Agent Detoxification and Prophylaxis

机译:纳米结构材料稳定化,用于有机磷神经剂解毒和预防

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Enzyme immobilization and encapsulation in various nanostructures has drawn great interest as it offers both increased stability and reusability without significant loss in activity. Although we are still at the beginning of exploring the use of these materials for biocatalysis, by now several nanostructures have been tested as hosts for enzyme immobilization. The beneficial application of enzyme stabilization in nanostructured materials for use in nerve agent detoxification and pre-treatment is reviewed and discussed in this article. Enzymes hydrolyzing organophosphorus compounds (e.g. OPAA, OPH, Paraoxonase) are capable of detoxifying neurotoxic chemical warfare (CW) agents, i.e. G-type, V-type, and related organophosphorus (OP)-based industrial materials. The nano-encapsulation of OP-hydrolyzing enzymes with mesoporous materials or dendritic polymers can provide a very stable and convenient formulation for use in chemical agent detoxification. Nano-encapsulated enzymes demonstrated the ability to retain their activity in the presence of a number of organic solvents, commercial disinfectants and antimicrobial agents and foams, making them suitable for personnel decontamination and individual protection applications. OP-hydrolyzing enzymes also show great promise as catalytic bioscavengers to be used as safe and effective medical coun-termeasures to OP intoxication. Novel enzyme-complexed nano-delivery systems, particularly polymeric nanocapsules and sterically stabilized liposomes, can be used to carry these metabolizing enzymes to the circulation. Thus, it is possible to avoid the physiological disposition and potential immunological reactions of these bacterial derived enzymes. Nanostructured delivery systems, consequently, allows for increasing the enzymes efficacy by extending their circulatory life and in some cases also their specific activity.
机译:各种纳米结构中的酶固定化和包封具有很大的兴趣,因为它提供了增加的稳定性和可重用性,而无需在活动中的显着损失。虽然我们仍然在探索生物催化中使用这些材料的开始,现在几个纳米结构已经过测试,作为酶固定化的主机。在本文中综述并讨论了用于神经剂解毒和预处理的纳米结构材料中纳米结构材料的有益施用。酶水解的有机磷化合物(例如OPAA,OPH,对氧磷酶)能够解毒神经毒性化学战(CW)剂,即G型,V型,以及相关的有机磷(OP)基工业材料。纳米封装具有中孔材料或树枝状聚合物的Op-水解酶可以提供非常稳定和方便的配方,用于化学试剂排毒。纳米囊封的酶表现出保留在许多有机溶剂中,商业消毒剂和抗菌剂和泡沫的存在下其活性的能力,使得它们适用于去污的人员和个人保护应用。 OP水解酶也表现出极大的承诺作为催化bioscavengers用作安全和有效的医疗COUN-termeasures到OP中毒。可以使用新型酶络合物纳米递送系统,特别是聚合物纳米胶囊和空间稳定的脂质体,以将这些代谢酶携带到循环中。因此,可以避免这些细菌衍生酶的生理分化和潜在的免疫反应。因此,纳米结构递送系统通过延长其循环寿命和在某些情况下,允许增加酶功效。

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