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用于治疗药物递送与成像的多功能多孔硅

Multifunctional porous silicon for therapeutic drug delivery and imaging.

作者信息

Santos Hélder A, Bimbo Luis M, Lehto Vesa-Pekka, Airaksinen Anu J, Salonen Jarno, Hirvonen Jouni

机构信息

Division of Pharmaceutical Technology, University of Helsinki, Finland.

出版信息

Curr Drug Discov Technol. 2011 Sep;8(3):228-49. doi: 10.2174/157016311796799053.

Abstract

Major challenges in drug formulation are the poor solid state stability of drug molecules, poor dissolution/solubility and/or poor pharmacokinetic properties (bioavailability), which may lead to unreliable in vitro-in vivo (IVIV) correlation. To improve current therapeutical strategies, novel means to deliver poorly water soluble active pharmaceutical ingredients, as well as to target them to specific sites or cells in the body are needed. Biomedical applications of porous silicon (PSi) have been actively investigated during the last 10 years, especially in the areas of drug delivery and imaging, due to the biocompatibility and biodegradability of PSi materials, which makes them a potential candidate for controlled drug release. In addition, the unique pore sizes and easily functionalized surface properties of PSi materials allow high drug payloads and controlled kinetics from the drug release formulations. Modification of the PSi surface properties also facilitates biofunctionalization of the surface and the possibility to attach targeting moieties (e.g., antibodies and peptides), thus enabling effective targeting of the payload. In this review, we briefly address the production methodologies of PSi, and we will mainly present and discuss several examples about the biocompatibility of PSi, the most recent in vitro and in vivo applications of PSi as a carrier in drug/protein/peptide delivery and tissue engineering, as well as PSi as a platform for drug targeting and imaging.

摘要

药物制剂面临的主要挑战包括药物分子的固态稳定性差、溶出度/溶解度不佳和/或药代动力学性质(生物利用度)差,这可能导致体外-体内(IVIV)相关性不可靠。为了改进当前的治疗策略,需要新的方法来递送水溶性差的活性药物成分,并将它们靶向输送到体内的特定部位或细胞。在过去十年中,多孔硅(PSi)的生物医学应用受到了积极研究,特别是在药物递送和成像领域,这是因为PSi材料具有生物相容性和生物可降解性,使其成为控释药物的潜在候选材料。此外,PSi材料独特的孔径和易于功能化的表面性质使得药物释放制剂能够实现高载药量和可控的动力学。对PSi表面性质的修饰还促进了表面的生物功能化以及连接靶向部分(如抗体和肽)的可能性,从而实现对载药的有效靶向。在本综述中,我们简要介绍了PSi的制备方法,并且将主要展示和讨论几个关于PSi生物相容性的例子、PSi作为载体在药物/蛋白质/肽递送和组织工程中最新的体外和体内应用,以及PSi作为药物靶向和成像平台的应用。

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