A scientific review on the correlation of the silver nanoparticle synthesis methods with host cytotoxicity

Mariana Homem de Mello Santos, G. Nakazato, Thiago Hideo Endo, R. Kobayashi
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Abstract

Silver nanoparticles have been extensively researched and have several applications such as antimicrobial and anticancer, and can be used in the agricultural, biomedical, pharmaceutical, textile area, among others, but its toxicity is still little understood. Nanoparticles can measure between 1 – 100 nm and the most currently studied is the silver nanoparticle (AgNP). The main methods of synthesis are the chemical and the biogenic pathway, or green, which is less environmentally polluting, more environmentally friendly, and simpler, although standardization is more complex. Morphological and physical-chemical characteristics differ according to the synthesis method and, consequently, present different degrees of toxicity. Nanotoxicology studies the toxicity of nanoparticles on living organisms and scientists seek to know about the physical-chemical properties and their influence on interaction with the environment. It is known that there are several parameters that influence toxicity, such as dose, particle size, shape, morphology, surface chemistry, agglomeration/aggregation state, synthesis method, cell type and organism in which it is tested. Therefore, this article aims to address the main ways of synthesis of AgNPs, discuss the advantages and disadvantages of each method, the parameters that influence toxicity and examples of studies.
银纳米粒子合成方法与宿主细胞毒性相关性的科学综述
银纳米颗粒已被广泛研究,具有抗菌和抗癌等多种应用,可用于农业、生物医学、制药、纺织等领域,但其毒性仍知之甚少。纳米颗粒的尺寸可以在1–100 nm之间,目前研究最多的是银纳米颗粒(AgNP)。主要的合成方法是化学和生物途径,或绿色,这对环境污染较小,更环保,更简单,尽管标准化更复杂。形态和物理化学特征因合成方法而异,因此呈现不同程度的毒性。纳米毒理学研究纳米颗粒对生物体的毒性,科学家们试图了解其物理化学性质及其对与环境相互作用的影响。众所周知,有几个参数会影响毒性,如剂量、粒度、形状、形态、表面化学、凝聚/聚集状态、合成方法、细胞类型和测试生物体。因此,本文旨在介绍AgNPs的主要合成方法,讨论每种方法的优缺点、影响毒性的参数以及研究实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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