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用于靶向药物输送和触发药物释放的多重刺激响应智能壳聚糖基微胶囊。

Multi-stimuli responsive smart chitosan-based microcapsules for targeted drug delivery and triggered drug release.

机构信息

College of Chemistry, Jilin University, 2699 Qianjin Street, Changchun 130012, China.

College of Chemistry, Jilin University, 2699 Qianjin Street, Changchun 130012, China.

出版信息

Ultrason Sonochem. 2017 Sep;38:145-153. doi: 10.1016/j.ultsonch.2017.03.011. Epub 2017 Mar 8.

Abstract

In the present study, we designed a novel, multi-stimuli responsive, biocompatible and non-immunogenic smart carrier for targeted delivery and triggered release of hydrophobic drugs. The designed multi-stimuli responsive smart chitosan-based microcapsules (MSRS-CS-MCs) have been fabricated successfully from folic acid (FA) functionalized thiolated chitosan via a facile sonochemical method. Targeting moiety FA and red fluorescent dye (Rhodamine B isothiocyanate, RITC) were immobilized onto the shells of microcapsules. Meanwhile, oleic acid (OA) modified FeO magnetic nanoparticles (OA-FeOMNPs) and a model hydrophobic drug, green fluorescent dye (Coumarin 6, C6), were encapsulated into the microcapsules. As drug carriers, the obtained spherical MSRS-CS-MCs with the average size of 500nm showed excellent magnetic responsive ability, favorable selectively folate-receptor-mediated targeting functionality to the HeLa cells, and attractive reduction-responsive release ability for hydrophobic drugs. The integration of magnetic and reduction dual-responsiveness, folate-receptor-mediated targeting functionality and fluorescence visualization into the versatile microcapsules make MSRS-CS-MCs promising nanocarriers for future biomedical applications.

摘要

在本研究中,我们设计了一种新型的、多刺激响应的、生物相容的和非免疫原性的智能载体,用于靶向传递和触发疏水性药物的释放。设计的多刺激响应的智能壳聚糖基微胶囊(MSRS-CS-MCs)是通过简便的超声化学方法,由叶酸(FA)功能化巯基化壳聚糖成功制备的。靶向部分 FA 和红色荧光染料(异硫氰酸罗丹明 B,RITC)被固定在微胶囊的壳上。同时,油酸(OA)修饰的 FeO 磁性纳米颗粒(OA-FeOMNPs)和模型疏水性药物,绿色荧光染料(香豆素 6,C6)被包封在微胶囊内。作为药物载体,所得到的具有 500nm 平均粒径的球形 MSRS-CS-MCs 表现出优异的磁响应能力、对 HeLa 细胞具有良好的选择性叶酸受体介导的靶向功能,以及对疏水性药物具有吸引力的还原响应释放能力。将磁和还原双重响应、叶酸受体介导的靶向功能和荧光可视化集成到多功能微胶囊中,使得 MSRS-CS-MCs 成为未来生物医学应用有前途的纳米载体。

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