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制备用于阿霉素递送的核交联聚合物胶束纳米载体:自组装、二硒化物复分解及氧化还原响应性药物释放

Fabrication of Core Crosslinked Polymeric Micelles as Nanocarriers for Doxorubicin Delivery: Self-Assembly, Diselenide Metathesis and Redox-Responsive Drug Release.

作者信息

Birhan Yihenew Simegniew, Darge Haile Fentahun, Hanurry Endiries Yibru, Andrgie Abegaz Tizazu, Mekonnen Tefera Worku, Chou Hsiao-Ying, Lai Juin-Yih, Tsai Hsieh-Chih

机构信息

Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei 106, Taiwan.

Advanced Membrane Materials Center, National Taiwan University of Science and Technology, Taipei 106, Taiwan.

出版信息

Pharmaceutics. 2020 Jun 23;12(6):580. doi: 10.3390/pharmaceutics12060580.

Abstract

Polymeric micelles (PMs) have been used to improve the poor aqueous solubility, slow absorption and non-selective biodistribution of chemotherapeutic agents (CAs), albeit, they suffer from disassembly and premature release of payloads in the bloodstream. To alleviate the thermodynamic instability of PMs, different core crosslinking approaches were employed. Herein, we synthesized the poly(ethylene oxide)--poly((2-aminoethyl)diselanyl)ethyl l-aspartamide)--polycaprolactone (mPEG-P(LA-DSeDEA)-PCL) copolymer which self-assembled into monodispersed nanoscale, 156.57 ± 4.42 nm, core crosslinked micelles (CCMs) through visible light-induced diselenide metathesis reaction between the pendant selenocystamine moieties. The CCMs demonstrated desirable doxorubicin (DOX)-loading content (7.31%) and encapsulation efficiency (42.73%). Both blank and DOX-loaded CCMs (DOX@CCMs) established appreciable colloidal stability in the presence of bovine serum albumin (BSA). The DOX@CCMs showed redox-responsive drug releasing behavior when treated with 5 and 10 mM reduced glutathione (GSH) and 0.1% HO. Unlike the DOX-loaded non-crosslinked micelles (DOX@NCMs) which exhibited initial burst release, DOX@CCMs demonstrated a sustained release profile in vitro where 71.7% of the encapsulated DOX was released within 72 h. In addition, the in vitro fluorescent microscope images and flow cytometry analysis confirmed the efficient cellular internalization of DOX@CCMs. The in vitro cytotoxicity test on HaCaT, MDCK, and HeLa cell lines reiterated the cytocompatibility (≥82% cell viability) of the mPEG-P(LA-DSeDEA)-PCL copolymer and DOX@CCMs selectively inhibit the viabilities of 48.85% of HeLa cells as compared to 15.75% of HaCaT and 7.85% of MDCK cells at a maximum dose of 10 µg/mL. Overall, all these appealing attributes make CCMs desirable as nanocarriers for the delivery and controlled release of DOX in tumor cells.

摘要

聚合物胶束(PMs)已被用于改善化疗药物(CAs)水溶性差、吸收缓慢和非选择性生物分布的问题,尽管如此,它们在血液中存在解体和所载药物过早释放的问题。为了缓解PMs的热力学不稳定性,人们采用了不同的核心交联方法。在此,我们合成了聚环氧乙烷-聚((2-氨基乙基)二硒基)乙基-L-天冬酰胺-聚己内酯(mPEG-P(LA-DSeDEA)-PCL)共聚物,该共聚物通过可见光诱导的侧链硒代胱胺部分之间的二硒化物复分解反应自组装成单分散的纳米级(156.57±4.42 nm)核心交联胶束(CCMs)。CCMs表现出理想的阿霉素(DOX)负载量(7.31%)和包封率(42.73%)。空白和负载DOX的CCMs(DOX@CCMs)在牛血清白蛋白(BSA)存在下都具有可观的胶体稳定性。当用5和10 mM还原型谷胱甘肽(GSH)以及0.1% H₂O₂处理时,DOX@CCMs表现出氧化还原响应性药物释放行为。与表现出初始突释的负载DOX的非交联胶束(DOX@NCMs)不同,DOX@CCMs在体外呈现出持续释放曲线,72小时内71.7%的包封DOX被释放。此外,体外荧光显微镜图像和流式细胞术分析证实了DOX@CCMs能有效地被细胞内化。对HaCaT、MDCK和HeLa细胞系的体外细胞毒性测试再次表明,mPEG-P(LA-DSeDEA)-PCL共聚物具有细胞相容性(细胞活力≥82%),在最大剂量为10 µg/mL时,DOX@CCMs选择性地抑制48.85%的HeLa细胞活力,相比之下,HaCaT细胞的抑制率为15.75%,MDCK细胞的抑制率为7.85%。总体而言,所有这些吸引人的特性使得CCMs成为在肿瘤细胞中递送和控释DOX的理想纳米载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4022/7356386/1591b1d94a57/pharmaceutics-12-00580-sch001.jpg

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