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基于乳糖基化ABC三嵌段共聚物的pH响应性三层聚乙二醇化多聚体胶束,作为一种可靶向且能破坏内体的非病毒基因载体。

pH-responsive three-layered PEGylated polyplex micelle based on a lactosylated ABC triblock copolymer as a targetable and endosome-disruptive nonviral gene vector.

作者信息

Oishi Motoi, Kataoka Kazunori, Nagasaki Yukio

机构信息

Tsukuba Research Center for Interdisciplinary Materials Science (TIMS), University of Tsukuba, 1-1-1 Ten-noudai, Tsukuba, Ibaraki 305-8573, Japan.

出版信息

Bioconjug Chem. 2006 May-Jun;17(3):677-88. doi: 10.1021/bc050364m.

Abstract

Nonviral vectors for gene therapy have recently received an increased impetus because of the inherent safety problems of the viral vectors, while their transfection efficiency is generally low compared to the viral vectors. The lack of the ability to escape from the endosomal compartments is believed to be one of the critical barriers to the intracellular delivery of noviral gene vectors. This study was devoted to the design and preparation of a novel ABC triblock copolymer for constructing a pH-responsive and targetable nonviral gene vector. The copolymer, lactosylated poly(ethylene glycol)-block-poly(silamine)-block-poly[2-(N,N-dimethylamino)ethyl methacrylate] (Lac-PEG-PSAO-PAMA), consists of lactosylated poly(ethylene glycol) (A-segment), a pH-responsive polyamine segment (B-segment), and a DNA-condensing polyamine segment (C-segment). The Lac-PEG-PSAO-PAMA spontaneously associated with plasmid DNA (pDNA) to form three-layered polyplex micelles with a PAMA/pDNA polyion complex (PIC) core, an uncomplexed PSAO inner shell, and a lactosylated PEG outer shell, as confirmed by 1H NMR spectroscopy. Under physiological conditions, the Lac-PEG-PSAO-PAMA/pDNA polyplex micelles prepared at an N/P (number of amino groups in the copolymer/number of phosphate groups in pDNA) ratio above 3 were found to be able to condense pDNA, thus adopting a relatively small size (< 150 nm) and an almost neutral surface charge (zeta approximately +5 mV). The micelle underwent a pH-induced size variation (pH = 7.4, 132.6 nm --> pH = 4.0, 181.8 nm) presumably due to the conformational changes (globule-rod transition) of the uncomplexed PSAO chain in response to pH, leading to swelling of the free PSAO inner shell at lowered pH while retaining the condensed pDNA in the PAMA/pDNA PIC core. Furthermore, the micelles exhibited a specific cellular uptake into HuH-7 cells (hepatocytes) through asialoglycoprotein (ASGP) receptor-mediated endocytosis and achieved a far more efficient transfection ability of a reporter gene compared to the Lac-PEG-PSAO/pDNA and Lac-PEG-PAMA/pDNA polyplex micelles composed of the diblock copolymers and pDNA. The effect of hydroxychloroquine as an endosomolytic agent on the transfection efficiency was not observed for the Lac-PEG-PSAO-PAMA/pDNA polyplex micelles, whereas the nigericin treatment of the cell as an inhibitor for the endosomal acidification induced a substantial decrease in the transfection efficiency, suggesting that the protonation of the free PSAO inner shell in response to a pH decrease in the endosome might lead to the disruption of the endosome through buffering of the endosomal cavity. Therefore, the polyplex micelle composed of ABC (ligand-PEG/pH-responsive segment/DNA-condensing segment) triblock copolymer would be a promising approach to a targetable and endosome disruptive nonviral gene vector.

摘要

由于病毒载体存在固有的安全问题,基因治疗的非病毒载体近来受到了更多的推动,然而与病毒载体相比,它们的转染效率通常较低。缺乏从内体区室逃逸的能力被认为是限制非病毒基因载体细胞内递送的关键障碍之一。本研究致力于设计和制备一种新型的ABC三嵌段共聚物,以构建一种pH响应型且可靶向的非病毒基因载体。该共聚物,乳糖基化聚乙二醇-嵌段-聚硅胺-嵌段-聚2-(N,N-二甲基氨基)乙基甲基丙烯酸酯,由乳糖基化聚乙二醇(A段)、一个pH响应型多胺段(B段)和一个DNA凝聚多胺段(C段)组成。通过1H NMR光谱证实,Lac-PEG-PSAO-PAMA与质粒DNA(pDNA)自发缔合形成具有PAMA/pDNA聚离子复合物(PIC)核心、未复合的PSAO内壳和乳糖基化PEG外壳的三层复合胶束。在生理条件下,发现以高于3的N/P(共聚物中氨基数量/pDNA中磷酸基团数量)比制备的Lac-PEG-PSAO-PAMA/pDNA复合胶束能够凝聚pDNA,因此具有相对较小的尺寸(<150 nm)和几乎中性的表面电荷(ζ电位约为+5 mV)。该胶束经历了pH诱导的尺寸变化(pH = 7.4时为132.6 nm --> pH = 4.0时为181.8 nm),推测这是由于未复合的PSAO链响应pH发生构象变化(球状-棒状转变),导致在较低pH下自由的PSAO内壳膨胀,同时将凝聚的pDNA保留在PAMA/pDNA PIC核心中。此外,这些胶束通过去唾液酸糖蛋白(ASGP)受体介导的内吞作用表现出对HuH-7细胞(肝细胞)的特异性细胞摄取,并且与由二嵌段共聚物和pDNA组成的Lac-PEG-PSAO/pDNA和Lac-PEG-PAMA/pDNA复合胶束相比,实现了报告基因更高的转染效率。对于Lac-PEG-PSAO-PAMA/pDNA复合胶束,未观察到作为溶酶体溶解剂的羟氯喹对转染效率的影响,而用尼日利亚菌素作为内体酸化抑制剂处理细胞会导致转染效率大幅下降,这表明内体中pH降低时自由PSAO内壳的质子化可能通过缓冲内体腔导致内体破裂。因此,由ABC(配体-PEG/pH响应段/DNA凝聚段)三嵌段共聚物组成的复合胶束将是构建可靶向且能破坏内体的非病毒基因载体的一种有前景的方法。

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