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核心技术专利:CN118964589B侵权必究
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利用 Lysiloma acapulcensis 进行银纳米粒子的绿色合成表现出高抗菌活性。

Green synthesis of silver nanoparticles using Lysiloma acapulcensis exhibit high-antimicrobial activity.

机构信息

Cátedras Conacyt-Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Departamento de Microbiología, Ensenada, Baja California, México.

Universidad Nacional Autónoma de México (UNAM), Centro de Nanociencias y Nanotecnología, Ensenada, Baja California, México.

出版信息

Sci Rep. 2020 Jul 30;10(1):12805. doi: 10.1038/s41598-020-69606-7.


DOI:10.1038/s41598-020-69606-7
PMID:32732959
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7393152/
Abstract

The scientific community is exploiting the use of silver nanoparticles (AgNPs) in nanomedicine and other AgNPs combination like with biomaterials to reduce microbial contamination. In the field of nanomedicine and biomaterials, AgNPs are used as an antimicrobial agent. One of the most effective approaches for the production of AgNPs is green synthesis. Lysiloma acapulcensis (L. acapulcensis) is a perennial tree used in traditional medicine in Mexico. This tree contains abundant antimicrobial compounds. In the context of antimicrobial activity, the use of L. acapulcensis extracts can reduce silver to AgNPs and enhance its antimicrobial activity. In this work, we demonstrate such antimicrobial activity effect employing green synthesized AgNPs with L. acapulcensis. The FTIR and LC-MS results showed the presence of chemical groups that could act as either (i) reducing agents stabilizing the AgNPs or (ii) antimicrobial capping agents enhancing antimicrobial properties of AgNPs. The synthesized AgNPs with L. acapulcensis were crystalline with a spherical and quasi-spherical shape with diameters from 1.2 to 62 nm with an average size diameter of 5 nm. The disk diffusion method shows the magnitude of the susceptibility over four pathogenic microorganisms of clinical interest. The antimicrobial potency obtained was as follows: E. coli ≥ S. aureus ≥ P. aeruginosa > C. albicans. The results showed that green synthesized (biogenic) AgNPs possess higher antimicrobial potency than chemically produced AgNPs. The obtained results confirm a more significant antimicrobial effect of the biogenic AgNPs maintaining low-cytotoxicity than the AgNPs produced chemically.

摘要

科学界正在利用纳米医学和其他纳米材料的银纳米粒子 (AgNPs) 组合来减少微生物污染。在纳米医学和生物材料领域,AgNPs 被用作抗菌剂。生产 AgNPs 的最有效方法之一是绿色合成。Lysiloma acapulcensis(L. acapulcensis)是墨西哥传统医学中使用的多年生树木。这种树含有丰富的抗菌化合物。在抗菌活性方面,使用 L. acapulcensis 提取物可以将银还原为 AgNPs 并增强其抗菌活性。在这项工作中,我们使用 Lysiloma acapulcensis 绿色合成的 AgNPs 证明了这种抗菌活性效果。FTIR 和 LC-MS 结果表明存在可以作为(i)还原剂稳定 AgNPs 或(ii)抗菌封端剂增强 AgNPs 抗菌性能的化学基团。用 Lysiloma acapulcensis 合成的 AgNPs 是结晶的,具有球形和准球形形状,直径为 1.2 至 62nm,平均粒径为 5nm。圆盘扩散法显示了对四种临床相关致病菌的敏感性程度。获得的抗菌效力如下:大肠杆菌≥金黄色葡萄球菌≥铜绿假单胞菌>白色念珠菌。结果表明,绿色合成(生物)AgNPs 比化学合成 AgNPs 具有更高的抗菌效力。获得的结果证实了生物 AgNPs 具有更高的抗菌效果,同时保持低细胞毒性,优于化学合成的 AgNPs。

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[7]
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[8]
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[10]
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本文引用的文献

[1]
Cytokinesis-Block Micronucleus Assay Using Human Lymphocytes as a Sensitive Tool for Cytotoxicity/Genotoxicity Evaluation of AgNPs.

ACS Omega. 2020-5-21

[2]
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PLoS One. 2018-3-19

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J Colloid Interface Sci. 2005-4-15

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