Micro and Nanogels for Biomedical Applications

M. Can, O. Güven, N. Sahiner
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引用次数: 3

Abstract

Micro and nano hydrogels developed from natural and synthetic polymers have garnered great deal of attention in scientific and industrial realms due to their higher surface area, degree of swelling and active material loading capacity, softness and flexibility, as well as their similarity to natural tissues. Particularly, biocompatible, non-toxic, and biodegradable micro/nano vehicles with tailor made design and functionalization facilities their use with excellent feasibility for a variety of biomedical applications such as tissue engineering, bioimaging and drug delivery. However, these platforms require rational design and functionalization strategies to cope with barriers of in vivo environment to pass into clinical use. Firstly, an ideal carrier should be biocompatible, and capable of evasion from immune elimination, specifically target at desired sites and sustainably release the therapeutic cargo in response to microenvironment conditions. Despite the few setbacks in micro/nano vehicle design and several successful formulations translated to clinical use and majority of the carries are yet to achieve complete success for all biological criteria. In this review, design, and functionalization strategies of micro and nanogels have been summarized and the recent progress in biomedical applications of microgels and nanogels have been outlined with a primary focus placed on drug and biomolecule delivery applications.
生物医学应用的微纳米凝胶
由天然和合成聚合物发展而成的微纳米水凝胶由于具有更高的表面积、膨胀度和活性物质承载能力、柔软性和柔韧性,以及与天然组织的相似性,在科学和工业领域受到了广泛的关注。特别是具有生物相容性、无毒、可生物降解的微/纳米载体,它们具有定制的设计和功能化设施,在各种生物医学应用中具有良好的可行性,如组织工程、生物成像和药物输送。然而,这些平台需要合理的设计和功能化策略来应对体内环境的障碍,才能进入临床应用。首先,理想的载体应该具有生物相容性,能够逃避免疫消除,特异性靶向所需位点,并在微环境条件下持续释放治疗货物。尽管在微/纳米载体设计方面遇到了一些挫折,并且有一些成功的配方转化为临床使用,但大多数载体尚未达到所有生物学标准的完全成功。本文综述了微凝胶和纳米凝胶的设计和功能化策略,并概述了微凝胶和纳米凝胶在生物医学应用中的最新进展,重点介绍了微凝胶和纳米凝胶在药物和生物分子传递方面的应用。
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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