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基于 pH 响应功能开关的可编程纳米鸡尾酒用于自协同肿瘤靶向治疗。

Programmed Nanococktail Based on pH-Responsive Function Switch for Self-Synergistic Tumor-Targeting Therapy.

机构信息

Children's Hospital of Soochow University , Suzhou 215025, Peopel's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 15;9(45):39127-39142. doi: 10.1021/acsami.7b08218. Epub 2017 Nov 1.

Abstract

Tumor-targeting combination chemotherapy is an important way to improve the therapeutic index and reduce the side effects as compared to traditional cancer treatments. However, one of the major challenges in surface functionalization of nanoparticle (NP) is accomplishing multiple purposes through one single ligand. Upon such consideration, methotrexate (MTX), an anticancer drug with a targeting moiety inspired by the similar structure of folate, could be used to covalently link with lipid-polymer conjugate (DSPE-PEG) via a pH-sensitive dynamic covalent imine (CH═N) bond to synthesize the acid-induced function "targeting-anticancer" switching DSPE-PEG-CH═N-MTX. We hypothesize that using this kind of MTX prodrug to functionalize NP's surface would be conductive to combine the early phase active targeting function and the late-phase anticancer function in one nanosystem. Herein, a nanococktail is programmed for codelivery of epirubicin (EPI) and MTX by co-self-assembly of acid-dissociated EPI-phospholipid (PC) complex and acid-cleavable DSPE-PEG-CH═N-MTX conjugate. The obtained nanococktail (MTX-PEG-EPI-PC NPs) could not only actively target folate receptors-overexpressing tumor cells but also respond to acidic endo/lysosomes for triggering the on-demand release of pharmaceutically active EPI/MTX. The intracellular drug distribution also demonstrated that the system could codeliver two drugs to individual target sites of action, inducing the significant synergistic anticancer efficiency based on different anticancer mechanisms. More importantly, the in vivo tumor accumulation and anticancer efficacy of MTX-PEG-EPI-PC NPs (via cleavable imine bond) were significantly enhanced as compared to the individual free drug, both free drugs, PEG-EPI-PC NPs, and MTX-PEG-EPI-PC NPs (via the uncleavable amide bond). This self-synergistic tumor-targeting therapy might represent a promising strategy for cancer treatment.

摘要

肿瘤靶向联合化疗是提高治疗指数、降低传统癌症治疗副作用的重要途径。然而,纳米粒子(NP)表面功能化的主要挑战之一是通过单一配体实现多种目的。考虑到这一点,甲氨蝶呤(MTX),一种抗癌药物,其靶向部分受叶酸类似结构的启发,可以通过 pH 敏感的动态亚胺(CH═N)键共价连接到脂质聚合物缀合物(DSPE-PEG)上,以合成酸诱导的功能“靶向-抗癌”开关 DSPE-PEG-CH═N-MTX。我们假设使用这种 MTX 前药来功能化 NP 的表面,将有助于将纳米系统的早期主动靶向功能和晚期抗癌功能结合起来。在此,通过酸解离的表阿霉素-磷脂(PC)复合物和酸可裂解的 DSPE-PEG-CH═N-MTX 缀合物的共自组装,设计了一种纳米鸡尾酒来共递送电吡喃阿霉素(EPI)和 MTX。所得纳米鸡尾酒(MTX-PEG-EPI-PC NPs)不仅可以主动靶向叶酸受体过表达的肿瘤细胞,还可以响应酸性内体/溶酶体,触发药物活性 EPI/MTX 的按需释放。细胞内药物分布也表明,该系统可以将两种药物共递送到各自的作用靶点,基于不同的抗癌机制诱导显著的协同抗癌效率。更重要的是,与游离药物、游离药物混合物、PEG-EPI-PC NPs 和 MTX-PEG-EPI-PC NPs(通过不可裂解的酰胺键)相比,MTX-PEG-EPI-PC NPs(通过可裂解的亚胺键)的体内肿瘤积累和抗癌疗效显著增强。这种自协同肿瘤靶向治疗可能代表一种有前途的癌症治疗策略。

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