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分子刷作为一种具有可调形状的单分子载体用于光热癌症治疗。

Molecular bottlebrush as a unimolecular vehicle with tunable shape for photothermal cancer therapy.

机构信息

School of Materials Science and Engineering, Center for Functional Biomaterials, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Sun Yat-sen University, Guangzhou 510275, China.

School of Materials Science and Engineering, Center for Functional Biomaterials, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

Biomaterials. 2018 Sep;178:620-629. doi: 10.1016/j.biomaterials.2018.03.032. Epub 2018 Mar 19.

Abstract

Morphology of delivery nanovehicle plays a significant role in bioavailability of drug. Molecular bottlebrush (MBB)-based unimolecular micelle, with tunable morphologies including sphere, rod, and worm, offers a new aspect to uncover the relationship between morphology and bio-behaviors. In this study, a series of MBB as unimolecular micelle with core-shell structures were tailor-made through controlled/living polymerization and click chemistry, and served as carriers of IR780 photothermal agent. With an excellent IR780 loading content of up to ca. 25%, these molecular nanovehicles still maintained their molecular morphologies and did not aggregate in cell culture medium. Among three MBB, the rodlike one exhibited best performance in cell uptake in the 2D and also in spheroid penetration in 3D cell culture. Furthermore, this rodlike system had preferential accumulation in tumor in vivo and excellent effect on photothermal cancer therapy which effectively inhibited tumor growth. These results demonstrated an important role of nanoparticle shape on bio-behaviors and the unimolecular micelle could be a promising nanovehicle with precisely defined structure for biomedicine applications.

摘要

给药纳米载体的形态在药物的生物利用度方面起着重要作用。基于分子刷(MBB)的单分子胶束,具有可调节的形态,包括球体、棒体和蠕虫体,为揭示形态与生物行为之间的关系提供了新的视角。在这项研究中,通过控制/活性聚合和点击化学,定制了一系列具有核壳结构的 MBB 作为 IR780 光热剂的载体。这些分子纳米载体具有高达约 25%的优异 IR780 负载含量,在细胞培养基中仍保持其分子形态且不聚集。在三种 MBB 中,棒状 MBB 在 2D 细胞摄取和 3D 细胞培养中的球体穿透方面表现出最佳性能。此外,这种棒状体系在体内肿瘤中有优先积累,并且对光热癌症治疗有很好的效果,有效地抑制了肿瘤的生长。这些结果表明纳米颗粒形状对生物行为有重要作用,单分子胶束可以成为一种有前途的纳米载体,具有精确定义的结构,可用于生物医学应用。

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