介孔二氧化硅纳米颗粒系统在促进生物医学应用中的设计考虑

D. Desai, D. Karaman, N. Prabhakar, S. Tadayon, Alain Duchanoy, D. Toivola, S. Rajput, Tuomas Näreoja, J. Rosenholm
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引用次数: 52

摘要

介孔二氧化硅纳米颗粒(MSNs)已经发展到纳米医学中多功能纳米颗粒系统的前沿,由于这种高度灵活的材料平台能够实现多种设计选择,通常以模块化的方式。药物传递能力、通过不同成像方式的可检测性和刺激反应性通常被结合到一个粒子系统中。到目前为止,已经报道了非常复杂和通用的设计以及令人印象深刻的适用性演示,但是在某种程度上,当涉及到用于生物医学目的的任何纳米颗粒的一些关键考虑因素时,缺乏共同点。在这项研究中,我们试图一瞥生物医学纳米颗粒设计的一些最关键的方面,并将它们与特异性toMSNs的应用联系起来。这些考虑包括荧光团的标记和浸出与msn的固定化、周围条件、载体的生物降解性和表面涂层有关。表面修饰策略和表面电荷调整进一步考虑到细胞摄取和血清蛋白吸附的相对量。讨论了细胞内化途径和用于评估特别是体外生物行为的生物技术。在此,我们试图提请注意在设计用于生物医学应用的MSN系统时要考虑的一些最常见的问题
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design considerations for mesoporous silica nanoparticulate systems in facilitating biomedical applications
Abstract Mesoporous silica nanoparticles (MSNs) have advanced to the forefront of multifunctional nanoparticulate systems in nanomedicine, owing to this highly fexible materials platform enabling a multitude of design options, often in a modular fashion. Drug delivery ability, detectability via diferent imaging modalities, and stimuliresponsiveness are often combined into one particle system. Very sophisticated and versatile designs along with impressive demonstrations of applicability have been reported to date, but a common ground when it comes to some critical considerations valid for any nanoparticle intended for biomedical purposes is lacking to some degree. In this study, we attempt to take a glance at some of the most crucial aspects of biomedical nanoparticulate design and relate how they apply specifically toMSNs. These considerations include fuorophore labeling and leaching with respect to immobilization to MSNs, the surrounding conditions, carrier biodegradability, and surface coating. Surface modifcation strategies and surface charge tuning are further considered in conjunction to the relative amount of cellular uptake and serum protein adsorption. Cellular internalization routes and biological techniques used to evaluate especially in vitro biobehavior are discussed. Our attempt is hereby to draw attention to some of the most frequently occurring issues to be considered in the design of MSN systems for biomedical applications
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