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生物工程化的光响应胶囊纳米反应器:一种用于光动力治疗的潜在工具。

Bioengineering a Light-Responsive Encapsulin Nanoreactor: A Potential Tool for Photodynamic Therapy.

机构信息

Department of Molecular Sciences, Macquarie University, Sydney, NSW 2109, Australia.

Fraunhofer Institut für Angewandte Festkörperphysik (IAF), Tullastrasse 72, 79108 Freiburg, Germany.

出版信息

ACS Appl Mater Interfaces. 2021 Feb 24;13(7):7977-7986. doi: 10.1021/acsami.0c21141. Epub 2021 Feb 15.

Abstract

Encapsulins, a prokaryotic class of self-assembling protein nanocompartments, are being re-engineered to serve as "nanoreactors" for the augmentation or creation of key biochemical reactions. However, approaches that allow encapsulin nanoreactors to be functionally activated with spatial and temporal precision are lacking. We report the construction of a light-responsive encapsulin nanoreactor for "on demand" production of reactive oxygen species (ROS). Herein, encapsulins were loaded with the fluorescent flavoprotein mini-singlet oxygen generator (miniSOG), a biological photosensitizer that is activated by blue light to generate ROS, primarily singlet oxygen (O). We established that the nanocompartments stably encased miniSOG and in response to blue light were able to mediate the photoconversion of molecular oxygen into ROS. Using an model of lung cancer, we showed that ROS generated by the nanoreactor triggered photosensitized oxidation reactions which exerted a toxic effect on tumor cells, suggesting utility in photodynamic therapy. This encapsulin nanoreactor thus represents a platform for the light-controlled initiation and/or modulation of ROS-driven processes in biomedicine and biotechnology.

摘要

囊泡蛋白,一类具有自我组装能力的原核蛋白纳米容器,正被重新设计用作“纳米反应器”,以增强或创造关键的生化反应。然而,缺乏能够实现囊泡蛋白纳米反应器在空间和时间上精确功能激活的方法。我们报告了一种光响应的囊泡蛋白纳米反应器的构建,用于“按需”产生活性氧(ROS)。在此,我们将荧光黄素蛋白迷你单线态氧发生器(miniSOG)装入囊泡蛋白中,这是一种生物光敏剂,可被蓝光激活以产生 ROS,主要是单线态氧(O)。我们证实,纳米容器稳定地包裹了 miniSOG,并能响应蓝光介导将分子氧转化为 ROS。使用肺癌模型,我们表明,纳米反应器产生的 ROS 引发了光致氧化反应,对肿瘤细胞产生了毒性作用,这表明在光动力疗法中有应用潜力。因此,这种囊泡蛋白纳米反应器代表了一种用于在生物医学和生物技术中控制 ROS 驱动过程的起始和/或调节的平台。

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