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一种简单高效的催化纳米酶清除剂,可用于有机磷神经毒素。

A simple and highly effective catalytic nanozyme scavenger for organophosphorus neurotoxins.

机构信息

Chemistry Department, Lomonosov Moscow State University, 1 Lenin Hills, Building 3, Moscow 119991, Russia.

Chemistry Department, Lomonosov Moscow State University, 1 Lenin Hills, Building 3, Moscow 119991, Russia.

出版信息

J Control Release. 2017 Feb 10;247:175-181. doi: 10.1016/j.jconrel.2016.12.037. Epub 2016 Dec 31.

Abstract

A simple and highly efficient catalytic scavenger of poisonous organophosphorus compounds, based on organophosphorus hydrolase (OPH, EC 3.1.8.1), is produced in aqueous solution by electrostatic coupling of the hexahistidine tagged OPH (His-OPH) and poly(ethylene glycol)-b-poly(l-glutamic acid) diblock copolymer. The resulting polyion complex, termed nano-OPH, has a spherical morphology and a diameter from 25nm to 100nm. Incorporation of His-OPH in nano-OPH preserves catalytic activity and increases stability of the enzyme allowing its storage in aqueous solution for over a year. It also decreases the immune and inflammatory responses to His-OPH in vivo as determined by anti-OPH IgG and cytokines formation in Sprague Dawley rats and Balb/c mice, respectively. The nano-OPH pharmacokinetic parameters are improved compared to the naked enzyme suggesting longer blood circulation after intravenous (iv) administrations in rats. Moreover, nano-OPH is bioavailable after intramuscular (im), intraperitoneal (ip) and even transbuccal (tb) administration, and has shown ability to protect animals from exposure to a pesticide, paraoxon and a warfare agent, VX. In particular, a complete protection against the lethal doses of paraoxon was observed with nano-OPH administered iv and ip as much as 17h, im 5.5h and tb 2h before the intoxication. Further evaluation of nano-OPH as a catalytic bioscavenger countermeasure against organophosphorus chemical warfare agents and pesticides is warranted.

摘要

一种基于有机磷水解酶(OPH,EC 3.1.8.1)的简单高效的有毒有机磷化合物催化清除剂,通过六组氨酸标记的 OPH(His-OPH)与聚乙二醇-b-聚(L-谷氨酸)两亲嵌段共聚物的静电偶联在水溶液中产生。所得的聚离子复合物,称为纳米-OPH,具有球形形态,直径为 25nm 至 100nm。His-OPH 掺入纳米-OPH 可保持酶的催化活性并提高其稳定性,允许其在水溶液中储存超过一年。它还降低了体内 His-OPH 的免疫和炎症反应,这是通过 Sprague Dawley 大鼠和 Balb/c 小鼠中抗 OPH IgG 和细胞因子形成来确定的。与裸酶相比,纳米-OPH 的药代动力学参数得到了改善,提示在大鼠中静脉(iv)给药后血液循环时间更长。此外,纳米-OPH 可通过肌肉内(im)、腹腔内(ip)甚至经颊(tb)给药,并且已显示出能够保护动物免受杀虫剂对氧磷和战争剂 VX 的暴露。特别是,在用 iv 和 ip 给予纳米-OPH 后观察到了对致死剂量对氧磷的完全保护,在中毒前 17h、im 5.5h 和 tb 2h 给予纳米-OPH。有必要进一步评估纳米-OPH 作为针对有机磷化学战剂和杀虫剂的催化生物清除对策。

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