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由两亲性超支化多臂共聚物自组装形成的生物可还原胶束用于谷胱甘肽介导的细胞内药物递送。

Bioreducible micelles self-assembled from amphiphilic hyperbranched multiarm copolymer for glutathione-mediated intracellular drug delivery.

机构信息

School of Chemistry and Chemical Engineering, State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai, People's Republic of China.

出版信息

Biomacromolecules. 2011 May 9;12(5):1567-77. doi: 10.1021/bm200275j. Epub 2011 Apr 14.

Abstract

A new type of biodegradable micelles for glutathione-mediated intracellular drug delivery was developed on the basis of an amphiphilic hyperbranched multiarm copolymer (H40-star-PLA-SS-PEP) with disulfide linkages between the hydrophobic polyester core and hydrophilic polyphosphate arms. The resulting copolymers were characterized by nuclear magnetic resonance (NMR), Fourier transformed infrared (FTIR), gel permeation chromatography (GPC), and differential scanning calorimeter (DSC) techniques. Benefiting from amphiphilic structure, H40-star-PLA-SS-PEP was able to self-assemble into micelles in aqueous solution with an average diameter of 70 nm. Moreover, the hydrophilic polyphosphate shell of these micelles could be detached under reduction-stimulus by in vitro evaluation, which resulted in a rapid drug release due to the destruction of micelle structure. The glutathione-mediated intracellular drug delivery was investigated against a Hela human cervical carcinoma cell line. Flow cytometry and confocal laser scanning microscopy (CLSM) measurements demonstrated that H40-star-PLA-SS-PEP micelles exhibited a faster drug release in glutathione monoester (GSH-OEt) pretreated Hela cells than that in the nonpretreated cells. Cytotoxicity assay of the doxorubicin-loaded (DOX-loaded) micelles indicated the higher cellular proliferation inhibition against 10 mM of GSH-OEt pretreated Hela cells than that of the nonpretreated ones. As expected, the DOX-loaded micelles showed lower inhibition against 0.1 mM of buthionine sulfoximine (BSO) pretreated Hela cells. These reduction-responsive and biodegradable micelles show a potential to improve the antitumor efficacy of hydrophobic chemotherapeutic drugs.

摘要

一种新型的基于两亲性超支化多臂共聚物(H40-star-PLA-SS-PEP)的谷胱甘肽介导的细胞内药物递送的可生物降解胶束被开发出来,该共聚物在疏水性聚酯核和亲水性多磷酸盐臂之间具有二硫键连接。所得共聚物通过核磁共振(NMR)、傅里叶变换红外(FTIR)、凝胶渗透色谱(GPC)和差示扫描量热法(DSC)技术进行了表征。由于具有两亲性结构,H40-star-PLA-SS-PEP 能够在水溶液中自组装成平均直径为 70nm 的胶束。此外,这些胶束的亲水性多磷酸盐壳在体外评估时可以通过还原刺激而脱离,由于胶束结构的破坏,导致药物快速释放。通过体外评价考察了谷胱甘肽介导的对 Hela 人宫颈癌细胞系的细胞内药物递送。流式细胞术和共聚焦激光扫描显微镜(CLSM)测量表明,与未经预处理的细胞相比,在谷胱甘肽单酯(GSH-OEt)预处理的 Hela 细胞中,H40-star-PLA-SS-PEP 胶束表现出更快的药物释放。载多柔比星(DOX-loaded)胶束的细胞毒性测定表明,对 10mM 的 GSH-OEt 预处理的 Hela 细胞的细胞增殖抑制作用高于未经预处理的细胞。正如预期的那样,载 DOX 的胶束对 0.1mM 的丁硫氨酸亚砜(BSO)预处理的 Hela 细胞的抑制作用较低。这些还原响应和可生物降解的胶束显示出提高疏水性化疗药物抗肿瘤疗效的潜力。

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