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用于高效细胞内肿瘤触发药物递送的pH/氧化还原双刺激响应性可脱落纳米雏菊

pH/redox dual stimuli-responsive sheddable nanodaisies for efficient intracellular tumour-triggered drug delivery.

作者信息

John Johnson V, Uthaman Saji, Augustine Rimesh, Chen Hongyu, Park In-Kyu, Kim Il

机构信息

BK21 PLUS Center for Advanced Chemical Technology, Department of Polymer Science and Engineering, Pusan National University, Busan 609-735, Republic of Korea.

出版信息

J Mater Chem B. 2017 Jul 7;5(25):5027-5036. doi: 10.1039/c7tb00030h. Epub 2017 Jun 9.

Abstract

A series of dual stimuli-responsive poly(l-histidine)-S-S-polyurethane-S-S-poly(l-histidine) [p(His)-SS-PU-SS-p(His); n = 25, 35, 50, and 75] triblock copolymers that bear two pH-responsive p(His) end-blocks and PU middle-blocks tethered by a redox-responsive disulphide linker have been synthesized. The resulting triblock copolymers self-assemble to form micelles, nanodaisies (NDs), of uniform size (∼100 nm) and efficiently encapsulate the anticancer drug doxorubicin (Dox) with a high drug loading content (∼19%). The in vitro release profile shows an enhanced release of Dox in an acidic environment in the presence of 10 mM glutathione. The in vitro cell viability assays performed in various cell lines show that the NDs have no acute or intrinsic toxicity. Confocal microscopy images and flow cytometry results show the pH-responsive cellular uptake of Dox-loaded NDs, accelerated at pH ≤ 5.0. The tumour accumulation and in vivo bio-distribution studies of near-infrared dye (IR-820)-labeled NDs show higher tumour accumulation in CT26 tumour-bearing mice within 72 h. Furthermore, the Dox-loaded NDs effectively inhibit the CT26 tumours, suggesting that they are promising nanocarriers for cancer therapy.

摘要

一系列双刺激响应性聚(L-组氨酸)-S-S-聚氨酯-S-S-聚(L-组氨酸)[p(His)-SS-PU-SS-p(His); n = 25、35、50和75]三嵌段共聚物已被合成,该共聚物带有两个pH响应性的p(His)端基嵌段和由氧化还原响应性二硫键连接的聚氨酯中间嵌段。所得的三嵌段共聚物自组装形成尺寸均匀(约100 nm)的胶束、纳米雏菊(NDs),并能高效包封抗癌药物阿霉素(Dox),药物负载量高(约19%)。体外释放曲线表明,在10 mM谷胱甘肽存在下,酸性环境中阿霉素的释放增强。在各种细胞系中进行的体外细胞活力测定表明,NDs没有急性毒性或内在毒性。共聚焦显微镜图像和流式细胞术结果显示,负载阿霉素的NDs具有pH响应性细胞摄取,在pH≤5.0时加速。近红外染料(IR-820)标记的NDs的肿瘤蓄积和体内生物分布研究表明,在72小时内,CT26荷瘤小鼠体内肿瘤蓄积更高。此外,负载阿霉素的NDs能有效抑制CT26肿瘤,表明它们是有前景的癌症治疗纳米载体。

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