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Functionalized mesoporous silica materials for controlled drug delivery

机译:功能化介孔二氧化硅材料,可控制药物输送

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In the past decade, non-invasive and biocompatible mesoporous silica materials as efficient drug delivery systems have attracted special attention. Great progress in structure control and functionalization (magnetism and luminescence) design has been achieved for biotechnological and biomedical applications. This review highlights the most recent research progress on silica-based controlled drug delivery systems, including: (i) pure mesoporous silica sustained-release systems, (ii) magnetism and/or luminescence functionalized mesoporous silica systems which integrate targeting and tracking abilities of drug molecules, and (iii) stimuli-responsive controlled release systems which are able to respond to environmental changes, such as pH, redox potential, temperature, photoirradiation, and biomolecules. Although encouraging and potential developments have been achieved, design and mass production of novel multifunctional carriers, some practical biological application, such as biodistribution, the acute and chronic toxicities, long-term stability, circulation properties and targeting efficacy in vivo are still challenging.
机译:在过去的十年中,作为高效药物输送系统的非侵入性和生物相容性介孔二氧化硅材料引起了人们的特别关注。对于生物技术和生物医学应用,在结构控制和功能化(磁性和发光)设计方面已取得了巨大进展。这篇综述重点介绍了基于二氧化硅的可控药物递送系统的最新研究进展,包括:(i)纯中孔二氧化硅缓释系统,(ii)磁性和/或发光功能化的中孔二氧化硅系统,结合了药物的靶向和跟踪能力分子,以及(iii)能够响应环境变化(例如pH值,氧化还原电势,温度,光辐照和生物分子)的刺激响应性控释系统。尽管已经取得了令人鼓舞的和潜在的发展,但是新型多功能载体的设计和批量生产,一些实际的生物学应用,例如生物分布,急性和慢性毒性,长期稳定性,循环特性和体内靶向功效仍然具有挑战性。

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