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快速有效地将 ω-罗丹明 B-多磺酸基甜菜碱-PEG 共聚物递送至线粒体。

Fast and effective mitochondrial delivery of ω-Rhodamine-B-polysulfobetaine-PEG copolymers.

机构信息

Department of Materials Processing, Graduate School of Engineering, Tohoku University, 6-6-02 Aramaki-aza Aoba, Aoba-ku, Sendai, 980-8579, Japan.

Frontier Research Institute for Interdisciplinary Sciences (FRIS), Tohoku University, Aramaki aza Aoba 6-3, Aoba-ku, Sendai, 980-8578, Japan.

出版信息

Sci Rep. 2018 Jan 18;8(1):1128. doi: 10.1038/s41598-018-19598-2.

Abstract

Mitochondrial targeting and entry, two crucial steps in fighting severe diseases resulting from mitochondria dysfunction, pose important challenges in current nanomedicine. Cell-penetrating peptides or targeting groups, such as Rhodamine-B (Rho), are known to localize in mitochondria, but little is known on how to enhance their effectiveness through structural properties of polymeric carriers. To address this issue, we prepared 8 copolymers of 3-dimethyl(methacryloyloxyethyl)ammonium propane sulfonate and poly(ethyleneglycol) methacrylate, p(DMAPS-ran-PEGMA) (molecular weight, 18.0 < M  < 74.0 kg/mol) with two different endgroups. We labeled them with Rho groups attached along the chain or on one of the two endgroups (α or ω). From studies by flow cytometry and confocal fluorescence microscopy of the copolymers internalization in HeLa cells in the absence and presence of pharmacological inhibitors, we established that the polymers cross the cell membrane foremost by translocation and also by endocytosis, primarily clathrin-dependent endocytosis. The most effective mitochondrial entry was achieved by copolymers of M  < 30.0 kg/mol, lightly grafted with PEG chains (< 5 mol %) labeled with Rho in the ω-position. Our findings may be generalized to the uptake and mitochondrial targeting of prodrugs and imaging agents with a similar polymeric scaffold.

摘要

线粒体靶向和进入是治疗线粒体功能障碍引起的严重疾病的两个关键步骤,这在当前的纳米医学中提出了重要的挑战。细胞穿透肽或靶向基团,如罗丹明 B(Rho),已知定位于线粒体,但对于如何通过聚合物载体的结构特性来增强其效果知之甚少。为了解决这个问题,我们制备了 8 种 3-二甲基(甲基丙烯酰氧基乙基)铵丙烷磺酸酯和聚乙二醇甲基丙烯酸酯的共聚物,p(DMAPS-ran-PEGMA)(分子量 18.0 < M < 74.0 kg/mol),具有两种不同的端基。我们用沿链或两个端基之一(α或ω)连接的 Rho 基团标记它们。通过流式细胞术和共聚焦荧光显微镜研究共聚物在 HeLa 细胞中的内化情况,在有无药理学抑制剂的情况下,我们确定聚合物主要通过易位和内吞作用,主要是网格蛋白依赖性内吞作用穿过细胞膜。通过分子量 < 30.0 kg/mol 的共聚物,以及用 Rho 标记的、PEG 链轻度接枝(<5 mol%)的共聚物,实现了最有效的线粒体进入。我们的发现可以推广到具有类似聚合物支架的前药和成像剂的摄取和线粒体靶向。

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