Liu Wen, Dai Jian, Xue Wei
Key Laboratory of Biomaterials of Guangdong Higher Education Institutes, Development and Engineering Technology Research Center for Drug Carrier of Guangdong Province, Department of Biomedical Engineering, Jinan University, Guangzhou 510632, China.
J Mater Chem B. 2018 Nov 14;6(42):6817-6830. doi: 10.1039/c8tb01791c. Epub 2018 Oct 11.
Stimuli-responsive nanomaterial-based drug delivery systems that are able to actively target the tumor microenvironment, enhance intratumoral accumulation and release drugs at target sites are attractive therapeutic platforms at present. Here, the first approach that uses proteins to construct dynamic-covalent targeting stimuli-responsive cationic albumin nanoclusters for the highly efficient co-delivery of siRNA and DOX in vitro and in vivo has been developed and achieved considerable efficacy in combination therapy for the growth, migration and invasion of cancer. In this study, the critical strategy of 'dynamic-covalent targeting', as previously mentioned, was developed for the active accumulation of drugs at target sites by fabricating a reversible PEG corona using a pH-sensitive borate ester so as to facilitate the formation of a compact complex and the efficient release of siRNA with or from the nanocluster. In addition, after internalization, the nanocluster can dissociate into cationic albumin via intracellular reduction in an acid environment to achieve stimuli-responsive triggered drug release. As a result, the nanocluster for the co-delivery of DOX and VEGF-siRNA exhibits highly efficient capacity for gene silencing and apoptosis-inducing ability and also markedly suppresses the migration and invasion of cancer cells. Most importantly, it displayed significant combination effects against tumor growth with minimal damage to major organs and provides an effective approach for the safe and efficient delivery of multiple cargoes at target sites.
能够主动靶向肿瘤微环境、增强肿瘤内药物蓄积并在靶位点释放药物的基于刺激响应性纳米材料的药物递送系统,是目前颇具吸引力的治疗平台。在此,已开发出第一种利用蛋白质构建动态共价靶向刺激响应性阳离子白蛋白纳米簇的方法,用于在体外和体内高效共递送siRNA和阿霉素,并在癌症生长、迁移和侵袭的联合治疗中取得了显著疗效。在本研究中,如前所述,通过使用pH敏感的硼酸酯构建可逆的聚乙二醇冠层,开发了“动态共价靶向”这一关键策略,以促进药物在靶位点的主动蓄积,从而有助于形成紧密复合物,并使siRNA在纳米簇内或从纳米簇中有效释放。此外,内化后,纳米簇可在酸性环境中通过细胞内还原作用解离为阳离子白蛋白,从而实现刺激响应触发的药物释放。结果,用于共递送阿霉素和血管内皮生长因子siRNA的纳米簇表现出高效的基因沉默能力和诱导凋亡能力,还能显著抑制癌细胞的迁移和侵袭。最重要的是,它对肿瘤生长显示出显著的联合效应,对主要器官的损伤最小,并为在靶位点安全高效地递送多种货物提供了一种有效方法。