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Targeted delivery of platinum-taxane combination therapy in ovarian cancer

机译:卵巢癌铂-紫杉烷联合治疗的靶向交付

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Biodegradable polypeptide-based nanogels have been developed from amphiphilic block copolymers, poly(ethylene glycol)-b-poly(L-glutamic acid)-b-poly(L-phenylalanine), which effectively co-incorporate cisplatin and paclitaxel, the clinically used drug combination for the treatment of advanced ovarian cancer. In order to target both drugs selectively to the tumor cells, we explored the benefits of ligand-mediated drug delivery by targeting folate receptors, which are overexpressed in most ovarian cancers. Drug-loaded nanogels were surface-functionalized with folic acid (FA) with the help of a PEG spacer without affecting the ligand binding affinity and maintaining the stability of the carrier system. FA-decorated nanogels significantly suppressed the growth of intraperitoneal ovarian tumor xenografts outperforming their nontargeted counterparts without extending their cytotoxicity to the normal tissues. We also confirmed that synchronized co-delivery of the platinum-taxane drug combination via single carrier to the same targeted cells is more advantageous than a combination of targeted single drug formulations administered at the same drug ratio. Lastly, we demonstrated that the same platform can also be used for localized chemotherapy. Our data indicate that intraperitoneal administration can be more effective in the context of targeted combination therapy. Our findings suggest that multifunctional nanogels are promising drug delivery carriers for improvement of current treatment for ovarian cancer. (C) 2015 Elsevier B.V. All rights reserved.
机译:由两亲性嵌段共聚物,聚(乙二醇)-b-聚(L-谷氨酸)-b-聚(L-苯丙氨酸)开发的可生物降解的基于多肽的纳米凝胶可有效地将顺铂和紫杉醇共同掺入临床使用药物组合治疗晚期卵巢癌。为了将两种药物选择性地靶向肿瘤细胞,我们通过靶向在大多数卵巢癌中过度表达的叶酸受体,探索了配体介导的药物递送的益处。在PEG间隔基的帮助下,用叶酸(FA)对载有药物的纳米凝胶进行表面功能化处理,而不会影响配体结合亲和力并保持载体系统的稳定性。用FA装饰的纳米凝胶可显着抑制腹膜内卵巢肿瘤异种移植物的生长,其生长优于未靶向的对应物,而不会将其细胞毒性扩展至正常组织。我们还证实,铂-紫杉烷药物组合通过单一载体向相同靶细胞的同步共递送比以相同药物比例施用的靶向单一药物制剂的组合更有利。最后,我们证明了相同的平台也可以用于局部化疗。我们的数据表明,在靶向联合治疗的背景下腹膜内给药可能更有效。我们的研究结果表明,多功能纳米凝胶是有望改善目前卵巢癌治疗的药物输送载体。 (C)2015 Elsevier B.V.保留所有权利。

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