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生物源铁及其双金属纳米复合材料在生物医学应用中的效用:综述

Utility of Biogenic Iron and Its Bimetallic Nanocomposites for Biomedical Applications: A Review.

作者信息

Abedini Ali, Rostami Mojtaba, Banafshe Hamid Reza, Rahimi-Nasrabadi Mehdi, SobhaniNasab Ali, Ganjali Mohammad Reza

机构信息

Young Researchers and Elite club, Central Tehran Branch, Islamic Azad University, Tehran, Iran.

School of Chemistry, College of Science, University of Tehran, Tehran, Iran.

出版信息

Front Chem. 2022 Jul 1;10:893793. doi: 10.3389/fchem.2022.893793. eCollection 2022.

Abstract

Nanotechnology mainly deals with the production and application of compounds with dimensions in nanoscale. Given their dimensions, these materials have considerable surface/volume ratios, and hence, specific characteristics. Nowadays, environmentally friendly procedures are being proposed for fabrication of Fe nanoparticles because a large amount of poisonous chemicals and unfavorable conditions are needed to prepare them. This work includes an inclusive overview on the economical and green procedures for the preparation of such nanoparticles (flower, fruits, tea, carbohydrates, and leaves). Pure and bimetallic iron nanoparticles, for instance, offer a high bandwidth and excitation binding energy and are applicable in different areas ranging from antibacterial, anticancer, and bioimaging agents to drug delivery systems. Preparation of nano-sized particles, such as those of Fe, requires the application of high quantities of toxic materials and harsh conditions, and naturally, there is a tendency to develop more facile and even green pathways (Sultana, Journal of Materials Science & Technology, 2013, 29, 795-800; Bushra et al., Journal of hazardous materials, 2014, 264, 481-489; Khan et al., Ind. Eng. Chem. Res., 2015, 54, 76-82). This article tends to provide an overview on the reports describing green and biological methods for the synthesis of Fe nanoparticles. The present review mainly highlights selenium nanoparticles in the biomedical domain. Specifically, this review will present detailed information on drug delivery, bioimaging, antibacterial, and anticancer activity. It will also focus on procedures for their green synthesis methods and properties that make them potential candidates for various biomedical applications. Finally, we provide a detailed future outlook.

摘要

纳米技术主要涉及纳米尺度化合物的生产与应用。鉴于其尺寸,这些材料具有相当大的表面/体积比,因而具有特定特性。如今,人们正在提出环境友好型的方法来制备铁纳米颗粒,因为制备它们需要大量有毒化学物质和不利条件。这项工作全面概述了制备此类纳米颗粒(花朵、果实、茶叶、碳水化合物和树叶)的经济且绿色的方法。例如,纯铁纳米颗粒和双金属铁纳米颗粒具有高带宽和激发结合能,可应用于从抗菌、抗癌和生物成像剂到药物递送系统等不同领域。制备纳米尺寸的颗粒,如铁纳米颗粒,需要使用大量有毒材料并在苛刻条件下进行,自然而然地,人们倾向于开发更简便甚至绿色的途径(Sultana,《材料科学与技术杂志》,2013年,第29卷,第795 - 800页;Bushra等人,《危险材料杂志》,2014年,第264卷,第481 - 489页;Khan等人,《工业与工程化学研究》,2015年,第54卷,第76 - 82页)。本文旨在概述描述铁纳米颗粒绿色合成和生物合成方法的报告。本综述主要聚焦于生物医学领域的硒纳米颗粒。具体而言,本综述将提供有关药物递送、生物成像、抗菌和抗癌活性的详细信息。还将关注其绿色合成方法及使其成为各种生物医学应用潜在候选材料的特性。最后,我们给出详细的未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94f6/9283709/0b197e22fa55/fchem-10-893793-g001.jpg

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