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通过生物可降解聚合物胶束提高姜黄素的抗血管生成和抗肿瘤活性。

Improving antiangiogenesis and anti-tumor activity of curcumin by biodegradable polymeric micelles.

机构信息

State Key Laboratory of Biotherapy and Cancer Center, West China Hospital, West China Medical School, Sichuan University, Chengdu 610041, China.

出版信息

Biomaterials. 2013 Jan;34(4):1413-32. doi: 10.1016/j.biomaterials.2012.10.068. Epub 2012 Nov 17.

Abstract

For developing aqueous formulation and improving anti-tumor activity of curcumin (Cur), we prepared Cur encapsulated MPEG-PCL micelles by solid dispersion method without using any surfactants or toxic organic solvent. Cur micelles could be lyophilized into powder form without any cryoprotector or excipient, and the re-dissolved Cur micelles are homogenous and stable. Molecular modeling study suggested that Cur tended to interact with PCL serving as a core embraced by PEG as a shell. After Cur was encapsulated into polymeric micelles, cytotoxicity and cellular uptake were both increased. Cur micelles had a stronger inhibitory effect on proliferation, migration, invasion, and tube formation of HUVECs than free Cur. Besides, Cur micelles showed a sustained in vitro release behavior and slow extravasation from blood vessels in transgenic zebrafish model. Embryonic angiogenesis and tumor-induced angiogenesis were both dramatically inhibited by Cur micelles in transgenic zebrafish model. Furthermore, Cur micelles were more effective in inhibiting tumor growth and prolonged survival in both subcutaneous and pulmonary metastatic LL/2 tumor models. In pharmacokinetic and tissue distribution studies, Cur micelles showed higher concentration and longer retention time in plasma and tumors. Our findings suggested that Cur micelles may have promising applications in pulmonary carcinoma therapy.

摘要

为了开发水基制剂并提高姜黄素(Cur)的抗肿瘤活性,我们通过无表面活性剂和有毒有机溶剂的固体分散法制备了包载姜黄素的 MPEG-PCL 胶束。姜黄素胶束可以不经任何冷冻保护剂或赋形剂直接冻干成粉末形式,且再溶解的姜黄素胶束均匀稳定。分子建模研究表明,姜黄素倾向于与作为核心的 PCL 相互作用,被 PEG 作为壳包裹。姜黄素被包封到聚合物胶束中后,细胞毒性和细胞摄取均增加。与游离姜黄素相比,姜黄素胶束对 HUVECs 的增殖、迁移、侵袭和管形成的抑制作用更强。此外,姜黄素胶束在转基因斑马鱼模型中表现出持续的体外释放行为和缓慢的血管外渗。在转基因斑马鱼模型中,姜黄素胶束显著抑制胚胎血管生成和肿瘤诱导的血管生成。此外,姜黄素胶束在皮下和肺转移 LL/2 肿瘤模型中更能有效抑制肿瘤生长并延长生存期。在药代动力学和组织分布研究中,姜黄素胶束在血浆和肿瘤中的浓度更高,滞留时间更长。我们的研究结果表明,姜黄素胶束可能在肺癌治疗中有很好的应用前景。

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