A Review on Toxicity and Challenges in Transferability of Surface-functionalized Metallic Nanoparticles from Animal Models to Humans

M. Asghar, R. Yousuf, M. Shoaib, M. Asghar, N. Mumtaz
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引用次数: 6

Abstract

The unique size and surface morphology of nanoparticles (NPs) have substantially influenced all aspects of human life, making nanotechnology a novel and promising field for various applications in biomedical sciences. Metallic NPs have gained immense interest over the last few decades due to their promising optical, electrical, and biological properties. However, the aggregation and the toxic nature of these NPs have restricted their utilization in more optimized applications. The optimum selection of biopolymers and biological macromolecules for surface functionalization of metallic NPs will significantly improve their biological applicability and biocompatibility. The present mini-review attempts to stress the overview of recent strategies involved in surface functionalization of metallic NPs, their specific biomedical applications, and comparison of their in vitro, ex vivo, and in vivo toxicities with non-functionalized metallic NPs. In addition, this review also discusses the various challenges for metallic NPs to undergo human clinical trials.
表面功能化金属纳米颗粒从动物模型向人体转移的毒性和挑战综述
纳米粒子的独特尺寸和表面形态极大地影响了人类生活的各个方面,使纳米技术在生物医学科学的各种应用中成为一个新的和有前途的领域。在过去的几十年里,金属纳米粒子由于其具有良好的光学、电学和生物学特性而获得了极大的兴趣。然而,这些NPs的聚集性和毒性限制了它们在更优化的应用中的利用。优化选择生物聚合物和生物大分子进行金属纳米粒子的表面功能化,将显著提高金属纳米粒子的生物适用性和生物相容性。本综述试图强调金属NPs表面功能化的最新策略概述,它们的特定生物医学应用,以及它们与非功能化金属NPs在体外、离体和体内毒性的比较。此外,本文还讨论了金属NPs进行人体临床试验所面临的各种挑战。
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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CiteScore
5.40
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