Modular Protective Materials Neutralizing Toxins (Organophosphorus Compounds and Mycotoxins) and Exhibiting Biocidity to Gram-positive and Gram-negative Bacterial Cells

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引用次数: 1

Abstract

Earlier we have developed the principle of constructing modular materials with desired properties. The aim of this work is to study the possibility of imparting bactericidal protective properties to modular materials (tissues). The experimental studies have demonstrated the possibility of combining modules containing metal carboxylates, metal nanoparticles, and enzyme nanocomplexes for multiple functionalization of the same fibrous material and/or fiber. Fibrous materials, as a result of successive application of modular formulations containing nanosized metals and enzyme nanocomplexes, to their surface acquired biocidal and antichemical protective properties. It has been established that the spray method of applying modules to the surface of the studied materials is more universal, since aerosol application makes it possible to apply liquid to any wetted material with a uniform surface layer. The bactericidal properties depended on the chosen method of fibrous material functionalization. The obtained modular fibrous materials also showed good biocatalytic characteristics with respect to various organophosphorus compounds and mycotoxins. The duration of the effect of self-disinfection and self-degassing of fibrous materials treated with modular formulations containing nanosized metals and enzyme nanocomplexes is at least 230 days. The developed materials and the method of their production can be used both in obtaining completely new fabrics for personal protective equipment and in developing new organizational, technical and methodological approaches to ensuring personal protection of personnel of the Armed Forces of the Russian Federation.
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模块化保护材料中和毒素(有机磷化合物和真菌毒素),并对革兰氏阳性和革兰氏阴性细菌细胞表现出生物杀灭性
早些时候,我们已经开发了构建具有所需性能的模块化材料的原理。这项工作的目的是研究赋予模块化材料(组织)杀菌保护性能的可能性。实验研究表明,将含有金属羧酸盐、金属纳米颗粒和酶纳米复合物的模块组合在一起,可以实现同一纤维材料和/或纤维的多重功能化。纤维材料,由于连续应用含有纳米金属和酶纳米复合物的模块化配方,在其表面获得了生物杀灭和抗化学保护性能。已经确定,将模块应用于所研究材料表面的喷雾方法更为普遍,因为气溶胶应用可以将液体应用于具有均匀表面层的任何湿材料。其杀菌性能取决于纤维材料功能化方法的选择。所制得的模块化纤维材料对各种有机磷化合物和真菌毒素也表现出良好的生物催化特性。用含有纳米金属和酶纳米复合物的模块化配方处理的纤维材料的自消毒和自脱气效果的持续时间至少为230天。所开发的材料及其生产方法既可用于获得用于个人防护装备的全新面料,也可用于开发新的组织、技术和方法方法,以确保俄罗斯联邦武装部队人员的人身保护。
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