Li Ke, Xiao Gao, Richardson Joseph J, Tardy Blaise L, Ejima Hirotaka, Huang Wen, Guo Junling, Liao Xuepin, Shi Bi
Department of Biomass Chemistry and Engineering Sichuan University Chengdu 610065 China.
Laboratory of Ethnopharmacology Regenerative Medicine Research Center West China Hospital Sichuan University Chengdu Sichuan 610041 China.
Adv Sci (Weinh). 2019 Jan 15;6(5):1801688. doi: 10.1002/advs.201801688. eCollection 2019 Mar 6.
The targeted therapy of metastatic melanoma is an important yet challenging goal that has received only limited attention to date. Herein, green tea polyphenols, (-)-epigallocatechin-3-gallate (EGCG), and lanthanide metal ions (Sm) are used as building blocks to engineer self-assembled Sm-EGCG nanocomplexes with synergistically enhanced tumor inhibitory properties. These nanocomplexes have negligible systemic toxic effects on healthy cells but cause a significant reduction in the viability of melanoma cells by efficiently regulating their metabolic pathways. Moreover, the wound-induced migration of melanoma cells can be efficiently inhibited by Sm-EGCG, which is a key criterion for metastatic melanoma therapy. In a mouse melanoma tumor model, Sm-EGCG is directly compared with a clinical anticancer drug, 5-fluorouracil and shows remarkable tumor inhibition. Moreover, the targeted therapy of Sm-EGCG is shown to prevent metastatic lung melanoma from spreading to main organs with no adverse side effects on the body weight or organs. These in vivo results demonstrate significant advantages of Sm-EGCG over its clinical counterpart. The results suggest that these green tea-based, self-assembled nanocomplexes possess all of the key traits of a clinically promising candidate to address the challenges associated with the treatment of advanced stage metastatic melanoma.
转移性黑色素瘤的靶向治疗是一个重要但具有挑战性的目标,迄今为止受到的关注有限。在此,绿茶多酚、(-)-表没食子儿茶素-3-没食子酸酯(EGCG)和镧系金属离子(Sm)被用作构建模块,以设计具有协同增强肿瘤抑制特性的自组装Sm-EGCG纳米复合物。这些纳米复合物对健康细胞的全身毒性可忽略不计,但通过有效调节其代谢途径,可显著降低黑色素瘤细胞的活力。此外,Sm-EGCG可有效抑制伤口诱导的黑色素瘤细胞迁移,这是转移性黑色素瘤治疗的关键标准。在小鼠黑色素瘤肿瘤模型中,将Sm-EGCG与临床抗癌药物5-氟尿嘧啶直接比较,显示出显著的肿瘤抑制作用。此外,Sm-EGCG的靶向治疗可防止转移性肺黑色素瘤扩散至主要器官,对体重或器官无不良副作用。这些体内结果证明了Sm-EGCG相对于其临床对照物的显著优势。结果表明,这些基于绿茶的自组装纳米复合物具备临床有前景的候选物的所有关键特性,可应对与晚期转移性黑色素瘤治疗相关的挑战。