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首页> 外文期刊>Materials science & engineering >Characterization and study of the antibacterial mechanisms of silver nanoparticles prepared with microalgal exopolysaccharides
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Characterization and study of the antibacterial mechanisms of silver nanoparticles prepared with microalgal exopolysaccharides

机译:微藻胞外多糖制备的银纳米颗粒的表征及抗菌机理研究

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摘要

The green synthesis of biomaterials is of significant interest as it enables the safe and sustainable preparation of noble metallic nanoparticles for medical applications. Microalgae polysaccharides have received attention due to their outstanding properties such as biocompatibility, biodegradability and low cost. In addition, due to their variety of remarkable biological and physicochemical properties, polysaccharide-based nanoparticles have advantageous features yet to be explored. The primary objective of the current research was to investigate exopolysaccharides isolated from green microalgae Botryococcus braunii (EPBb) and Chlorella pyrenoidosa (EPCp), as both reducing and stabilizing agents, for the green synthesis of silver nanoparticles (AgNPs). Their antibacterial activity towards Gram-positive bacteria (Staphylococcus aureus), Gram-negative bacteria (Escherichia colt), and antibiotic-resistant bacteria (methicillin-resistant Staphylococcus aureus) was studied, as well as their cytotoxicity to human dermal fibroblasts. The presently synthesized AgNPs were spherical in shape and exhibited characteristic surface plasmon resonance at 430 nm. The main population had a particle size which ranged between 5 and 15 nm as analyzed by transmission electron micrographs. Zeta potentials averaged -51.81 +/- 3.01 mV using EPBb and -12.16 +/- 2.41 mV using EPCp. More importantly, AgNPs possessed strong antibacterial activity in a dose-dependent manner, even against drug-resistant bacteria. The enhanced antibacterial activity of these particles is explained due to extensive reactive oxygen species generation and bacterial cell membrane damage. In contrast, such AgNPs were not cytotoxic at the same therapeutic range to fibroblasts (0.5-10.0 mu g/mL). In summary, these results showed that polysaccharide-capped AgNPs have a strong potential for numerous medical applications, such as antibacterial agents in pharmaceutical and biomedical areas.
机译:生物材料的绿色合成具有重大意义,因为它能够安全,可持续地制备用于医疗应用的贵金属纳米颗粒。微藻多糖由于其出色的性能如生物相容性,生物降解性和低成本而受到关注。另外,由于其多种多样的显着的生物学和物理化学特性,基于多糖的纳米颗粒具有尚待探索的有利特征。当前研究的主要目的是研究从绿色微藻(Botryococcus braunii,EPBb)和小球藻(Chlorella pyrenoidosa,EPCp)中分离得到的胞外多糖,作为还原剂和稳定剂,用于绿色合成银纳米粒子(AgNP)。研究了它们对革兰氏阳性菌(金黄色葡萄球菌),革兰氏阴性菌(大肠埃希氏菌)和抗生素耐药菌(耐甲氧西林金黄色葡萄球菌)的抗菌活性,以及​​它们对人皮肤成纤维细胞的细胞毒性。目前合成的AgNPs呈球形,并在430 nm处具有特征性的表面等离子体共振。如通过透射电子显微照片所分析的,主要种群具有在5nm和15nm之间的粒度。使用EPBb的Zeta电位平均为-51.81 +/- 3.01 mV,使用EPCp的平均-12.16 +/- 2.41 mV。更重要的是,AgNP具有剂量依赖性的强抗菌活性,甚至可以抵抗耐药细菌。由于大量的活性氧生成和细菌细胞膜损坏,可以解释这些颗粒增强的抗菌活性。相反,这些AgNP在成纤维细胞(0.5-10.0μg/ mL)的相同治疗范围内没有细胞毒性。总之,这些结果表明,多糖封端的AgNP具有广泛的潜力,可用于许多医学应用,例如制药和生物医学领域的抗菌剂。

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