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用于多阶段响应性肿瘤靶向给药的原位交联智能多肽纳米颗粒

In situ crosslinked smart polypeptide nanoparticles for multistage responsive tumor-targeted drug delivery.

作者信息

Yi Huqiang, Liu Peng, Sheng Nan, Gong Ping, Ma Yifan, Cai Lintao

机构信息

Guangdong Key Laboratory of Nanomedicine, Key Lab for Health Informatics of Chinese Academy of Sciences, Shenzhen Institutes of Advance Technology, Chinese Academy of Sciences, Shenzhen 518055, PR China.

出版信息

Nanoscale. 2016 Mar 21;8(11):5985-95. doi: 10.1039/c5nr07348k.

Abstract

Smart tumor-targeted drug delivery is crucial for improving the effect of chemotherapy and reducing the adverse effects. Here, we synthesized a smart polypeptide copolymer based on n-butylamine-poly(L-lysine)-b-poly(L-cysteine) (PLL-PLC) with functionalization of folic acid (FA) and 1,2-dicarboxylic-cyclohexene anhydride (DCA) for multistage responsive tumor-targeted drug delivery. The copolymers (FA-PLL(DCA)-PLC) spontaneously crosslinked in situ to form redox and pH dual responsive FA-PLL(DCA)-PLC nanoparticles (FD-NPs), which had a reversible zeta potential around -30 mV at pH 7.4, but switched to +15 mV at pH 5.0. Moreover, FD-NPs effectively loaded DOX with a loading capacity at 15.7 wt%. At pH 7.4, only 24.5% DOX was released within 60 h. However, at pH 5.0, the presence of 10 mM DTT dramatically accelerated DOX release with over 90% of DOX released within 10 h. Although the FD-NPs only enhanced DOX uptake in FA receptor positive (FR(+)) cancer cells at pH 7.4, a weak acidic condition promoted FD-NP-facilitated DOX uptake in both FR(+) HeLa and FR(-) A549 cells, as well as significantly improving cellular binding and end/lysosomal escape. In vivo studies in a HeLa cancer model demonstrated that the charge-reversible FD-NPs delivered DOX into tumors more effectively than charge-irreversible nanoparticles. Hence, these multistage responsive FD-NPs would serve as highly efficient drug vectors for targeted cancer chemotherapy.

摘要

智能肿瘤靶向给药对于提高化疗效果和减少不良反应至关重要。在此,我们基于正丁胺-聚(L-赖氨酸)-b-聚(L-半胱氨酸)(PLL-PLC)合成了一种智能多肽共聚物,其经叶酸(FA)和1,2-二羧酸环己烯酸酐(DCA)功能化用于多阶段响应性肿瘤靶向给药。该共聚物(FA-PLL(DCA)-PLC)原位自发交联形成氧化还原和pH双重响应性的FA-PLL(DCA)-PLC纳米颗粒(FD-NPs),其在pH 7.4时具有约-30 mV的可逆zeta电位,但在pH 5.0时转变为+15 mV。此外,FD-NPs有效负载阿霉素,负载量为15.7 wt%。在pH 7.4时,60小时内仅释放24.5%的阿霉素。然而,在pH 5.0时,10 mM二硫苏糖醇(DTT)的存在显著加速了阿霉素的释放,10小时内超过90%的阿霉素被释放。尽管FD-NPs在pH 7.4时仅增强了FA受体阳性(FR(+))癌细胞对阿霉素的摄取,但弱酸性条件促进了FD-NP介导的阿霉素在FR(+)的HeLa细胞和FR(-)的A549细胞中的摄取,同时显著改善了细胞结合以及从内体/溶酶体逃逸。在HeLa癌模型中的体内研究表明,电荷可逆的FD-NPs比电荷不可逆的纳米颗粒更有效地将阿霉素递送至肿瘤。因此,这些多阶段响应性的FD-NPs将作为靶向癌症化疗的高效药物载体。

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