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Antimicrobial activity of silver salt and silver nanoparticles in different forms against microorganisms of different taxonomic groups

机译:不同形式的银盐和银纳米颗粒对不同分类群微生物的抗菌活性

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摘要

The development of antiseptics and medical products (bandaging materials, sponges, etc.) based on silver nanoparticles is an essential task due to the growing resistance of pathogenic microorganisms to medicines long used in clinical practice. Using silver nanoparticles for the same purpose is promising, but the potential hazards and cumulative effects in the application of nanoparticles requires a thorough study of those materials. To evaluate the efficiency of antiseptics and medical products based on silver nanoparticles, it is necessary to conduct an in-depth study of the activity of silver nanoparticles in different forms and immobilized in carriers.The study examines the resistance of bacterial and fungal cultures to silver nanoparticles produced by chemical reduction and microbiological synthesis. The study of resistance was carried out in different growth phases of pathogenic microorganisms and in both liquid and solid media. Chemically and microbiologically synthesized nanoparticles were added in the form of a suspension, as well as encapsulated in chitosan-PVA matrices. It was experimentally discovered that, depending on the medium and form of the silver, the antibacterial effect would significantly differ due to changes in the mechanisms regarding the release of nanoparticles and their activity against the cells of pathogenic and potentially pathogenic microorganisms.
机译:由于病原微生物对长期用于临床的药物的抵抗力不断增强,因此开发基于银纳米颗粒的防腐剂和医疗产品(绷带材料,海绵等)是一项必不可少的任务。将银纳米粒子用于相同目的是有希望的,但是在纳米粒子应用中的潜在危害和累积效应需要对这些材料进行彻底的研究。为了评估基于银纳米颗粒的防腐剂和医疗产品的效率,有必要对固定在载体中的各种形式的银纳米颗粒的活性进行深入研究,研究细菌和真菌培养物对银的抗性化学还原和微生物合成产生的纳米颗粒。在病原微生物的不同生长阶段以及在液体和固体培养基中都进行了抗药性研究。化学和微生物合成的纳米颗粒以悬浮液的形式添加,并封装在壳聚糖-PVA基质中。实验发现,取决于银的介质和形式,由于纳米颗粒释放机理及其对病原性和潜在病原性微生物细胞的活性的变化,其抗菌效果将显着不同。

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