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纳米结构的肽毒素作为天然的促氧化剂,通过放大氧化应激诱导癌细胞死亡。

Nanostructured Peptidotoxins as Natural Pro-Oxidants Induced Cancer Cell Death via Amplification of Oxidative Stress.

机构信息

College of Pharmacy, University of Manitoba , 750 McDermot Avenue, Winnipeg, Manitoba R3E 0T5, Canada.

State Key Laboratory of Natural Medicines, Department of Pharmaceutics, China Pharmaceutical University , Nanjing 210009, China.

出版信息

ACS Appl Mater Interfaces. 2018 Feb 7;10(5):4569-4581. doi: 10.1021/acsami.7b18809. Epub 2018 Jan 27.

Abstract

Melittin (Mel), one of the host defense peptides derived from the venom of honeybees, demonstrates substantial anticancer properties, which is attributed to augmenting reactive oxygen species (ROS) generation. However, little has been reported on its pro-oxidation capacity in cancer oxidation therapy. In this study, an ROS amplifying nanodevice was fabricated through direct complexation of two natural pro-oxidants, Mel and condensed epigallocatechin gallate (pEGCG). The obtained nanocomplex (NC) was further covered with phenylboronic acid derivatized hyaluronic acid (pHA) through the ROS-responsive boronate ester coordination bond to produce pHA-NC. Upon undergoing receptor-mediated endocytosis into cancer cells, the inner cores of pHA-NC will be partially uncovered once pHA corona is degraded by hyaluronidase and will then escape from the lysosome by virtue of cytolytic Mel. The elevated ROS level in the tumor cytoplasm can disrupt the boronate ester bond to facilitate drug release. Both Mel and pEGCG could synergistically amplify oxidative stress and prolong ROS retention in cancer cells, leading to enhanced anticancer efficacy. This ROS cascade amplifier based on selective coordination bond and inherent pro-oxidation properties of natural ingredients could detect and elevate intracellular ROS signals, potentiating to move the tumor away from its homeostasis and make the tumor vulnerable. Compared to previously reported chemosynthetic pro-oxidants, the ROS self-sufficient system, fully composed of natural medicine, from this study provides a new insight in developing cancer oxidation therapy.

摘要

蜂毒素(Mel)是一种源于蜜蜂毒液的宿主防御肽,具有显著的抗癌特性,这归因于其增强活性氧(ROS)的产生。然而,关于其在癌症氧化治疗中的促氧化能力的报道较少。在本研究中,通过两种天然促氧化剂——蜂毒素和浓缩表没食子儿茶素没食子酸酯(pEGCG)的直接络合,制备了一种 ROS 放大纳米器件。所得的纳米复合物(NC)通过 ROS 响应硼酸酯配位键进一步用苯硼酸衍生的透明质酸(pHA)覆盖,以产生 pHA-NC。一旦 pHA 冠被透明质酸酶降解,pHA-NC 的内核就会部分暴露,然后通过溶酶体的细胞裂解酶 Mel 逃逸。肿瘤细胞质中升高的 ROS 水平会破坏硼酸酯键,从而促进药物释放。蜂毒素和 pEGCG 可以协同增强氧化应激并延长 ROS 在癌细胞中的保留时间,从而提高抗癌效果。这种基于选择性配位键和天然成分固有促氧化特性的 ROS 级联放大器可以检测和提高细胞内的 ROS 信号,增强肿瘤远离其体内平衡的能力,并使肿瘤变得脆弱。与之前报道的化学合成促氧化剂相比,本研究中完全由天然药物组成的 ROS 自给自足系统为开发癌症氧化治疗提供了新的思路。

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