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一种功能性纳米载体,可共同穿透细胞外基质和多层肿瘤细胞,用于序贯和深度肿瘤自噬抑制剂及化疗药物递送。

A functional nanocarrier that copenetrates extracellular matrix and multiple layers of tumor cells for sequential and deep tumor autophagy inhibitor and chemotherapeutic delivery.

作者信息

Wang Yang, Qiu Yue, Yin Sheng, Zhang Li, Shi Kairong, Gao Huile, Zhang Zhirong, He Qin

机构信息

a Key Laboratory of Drug Targeting and Drug Delivery System, Ministry of education, West China School of Pharmacy, and State Key Laboratory of Biotherapy/Collaborative Innovation Center for Biotherapy, West China Hospital, Sichuan University , Chengdu , China.

出版信息

Autophagy. 2017 Feb;13(2):359-370. doi: 10.1080/15548627.2016.1256523. Epub 2016 Dec 2.

Abstract

To further enhance the intensity of deep tumor drug delivery and integrate a combined therapy, we herein report on a core-shell nanocarrier that could simultaneously overcome the double barriers of the extracellular matrix (ECM) and multiple layers of tumor cells (MLTC). A pH-triggered reversible swelling-shrinking core and an MMP2 (matrix metallopeptidase 2) degradable shell were developed to encapsulate chemotherapeutics and macroautophagy/autophagy inhibitors, respectively. MMP2 degraded the shell, which was followed by the autophagy inhibitors' release. The exposed core could diffuse along the pore within the ECM to deliver chemotherapeutics into deep tumors, and it was able to swell in lysosomes and shrink back in the cytoplasm or ECM. The swelling of the core resulted in the rapid release of chemotherapeutics to kill autophagy-inhibited cells. After leaving the dead cells, the shrinking core could act on neighboring cells that were closer to the center of the tumor. The core thus could also cross MLTC layer by layer to deliver chemotherapeutics into the deep tumor.

摘要

为了进一步增强深部肿瘤药物递送的强度并整合联合治疗,我们在此报告一种核壳纳米载体,它能够同时克服细胞外基质(ECM)和多层肿瘤细胞(MLTC)的双重屏障。构建了一个pH触发的可逆溶胀-收缩核以及一个基质金属蛋白酶2(MMP2)可降解的壳,分别用于包裹化疗药物和自噬抑制剂。MMP2降解壳,随后自噬抑制剂释放。暴露的核可以沿着ECM内的孔隙扩散,将化疗药物递送至深部肿瘤,并且它能够在溶酶体中溶胀,在细胞质或ECM中回缩。核的溶胀导致化疗药物快速释放,以杀死自噬受抑制的细胞。离开死亡细胞后,收缩的核可以作用于更靠近肿瘤中心的邻近细胞。因此,核还可以逐层穿过MLTC,将化疗药物递送至深部肿瘤。

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