Duan Xiaopin, Liu Demin, Chan Christina, Lin Wenbin
Department of Chemistry, University of Chicago, 929 E 57th St, Chicago, IL, 60637, USA.
Small. 2015 Aug 26;11(32):3962-72. doi: 10.1002/smll.201500288. Epub 2015 May 12.
Three half-sandwich iridium and ruthenium organometallic complexes with high cytotoxicity are synthesized, and their anticancer mechanisms are elucidated. The organometallic complexes can interact with DNA through coordination or intercalation, thereby inducing apoptosis and inhibiting proliferation of resistant cancer cells. The organometallic complexes are then incorporated into polymeric micelles through the polymer-metal coordination between poly(ethylene glycol)-b-poly(glutamic acid) [PEG-b-P(Glu)] and organometallic complexes to further enhance their anticancer effects as a result of the enhanced permeability and retention effect. The micelles with particle sizes of ≈60 nm are more efficiently internalized by cancer cells than the corresponding complexes, and selectively dissociate and release organometallic anticancer agents within late endosomes and lysosomes, thereby enhancing drug delivery to the nuclei of cancer cells and facilitating their interactions with DNA. Thus, the micelles display higher antitumor activity than the organometallic complexes alone with a lack of the systemic toxicity in a mouse xenograft model of cisplatin-resistant human ovarian cancer. These results suggest that the polymeric micelles carrying anticancer organometallic complexes provide a promising platform for the treatment of resistant ovarian cancer and other hard-to-treat solid tumors.
合成了三种具有高细胞毒性的半夹心铱和钌有机金属配合物,并阐明了它们的抗癌机制。这些有机金属配合物可通过配位或插入与DNA相互作用,从而诱导耐药癌细胞凋亡并抑制其增殖。然后,通过聚(乙二醇)-b-聚(谷氨酸)[PEG-b-P(Glu)]与有机金属配合物之间的聚合物-金属配位,将有机金属配合物掺入聚合物胶束中,由于增强的渗透和滞留效应,进一步增强其抗癌效果。粒径约为60 nm的胶束比相应的配合物更有效地被癌细胞内化,并在晚期内体和溶酶体内选择性解离并释放有机金属抗癌剂,从而增强药物向癌细胞核的递送并促进它们与DNA的相互作用。因此,在顺铂耐药的人卵巢癌小鼠异种移植模型中,胶束显示出比单独的有机金属配合物更高的抗肿瘤活性,且没有全身毒性。这些结果表明,携带抗癌有机金属配合物的聚合物胶束为治疗耐药卵巢癌和其他难以治疗的实体瘤提供了一个有前景的平台。