微藻绿色合成金属纳米颗粒

Tuğçe Mutaf, G. Çalışkan, S. Öncel, M. Elibol
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引用次数: 0

摘要

利用生物资源绿色合成金属纳米颗粒是近年来研究的热点。其主要原因是,许多有毒化学物质作为还原剂和稳定剂被用于物理和化学方法,即传统方法。植物、真菌、细菌和藻类等生物是绿色纳米颗粒合成的替代来源,因为它们更环保,不会对人类健康构成威胁。微藻作为水生微生物,因其富含蛋白质、维生素、色素、脂肪酸、胞内和胞外多糖等高附加值的代谢产物,已被广泛应用于食品、化妆品和药品的配方中。此外,由于微藻具有金属离子积累能力、植物修复能力以及丰富的细胞内和细胞外代谢物将金属离子还原为元素态,因此在生物源纳米颗粒合成方面具有很高的潜力。近年来,以多种微藻为原料,通过胞内和胞外途径合成银、金、钛、锌、铁等纳米颗粒的研究越来越多。本文简要介绍了微藻和蓝藻在纳米颗粒合成方面的研究概况,微藻合成纳米颗粒的不同途径,纳米颗粒合成的机理,以及绿色合成纳米颗粒的基本表征原理和抗菌活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green synthesis of metal nanoparticles by microalgae
Green synthesis of metal nanoparticles through biological resources has attracted attention in recent years. The main reason for that, a lot of toxic chemicals as reducing and stabilizing agents are used in physical and chemical methods which are known as conventional methods. Organisms such as plants, fungi, bacteria, and algae are alternative sources for green nanoparticle synthesis because of their more eco-friendly nature and not be a threat to human health. Microalgae as aquatic microorganisms have been added into the formulations of food, cosmetics, and pharmaceutical for many years, due to their high value-added metabolites such as proteins, vitamins, pigments, fatty acids, intracellular and extracellular polysaccharides. In addition, microalgae have a high potential in biogenic nanoparticle synthesis because of their metal ions accumulation capability, phytoremediation potential, and rich in intracellular and extracellular metabolites that will reduce metal ions to elemental state. In recent years, the number of studies, focused on silver, gold, titanium, zinc, iron, etc. nanoparticle synthesis from many microalgae species by intracellular and extracellular pathways has increased. This review article aims to provide a brief outline of microalgae and cyanobacteria species studied in the context of nanoparticle synthesis, different approaches for nanoparticle synthesis from microalgae, the mechanism of nanoparticle synthesis, and basic characterization principles and antimicrobial activities of nanoparticles produced by green synthesis.
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