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载铈纳米粒子的介孔微胶囊作为智能药物递送/保护系统:包载的 p. pyralis 荧光素酶的保护作用。

Ceria Nanoparticles-Decorated Microcapsules as a Smart Drug Delivery/Protective System: Protection of Encapsulated P. pyralis Luciferase.

机构信息

Institute of Theoretical and Experimental Biophysics , Russian Academy of Sciences , Pushchino, Moscow region 142290 , Russia.

William Harvey Research Institute , Queen Mary University of London , London EC1M 6BQ , U.K.

出版信息

ACS Appl Mater Interfaces. 2018 May 2;10(17):14367-14377. doi: 10.1021/acsami.7b19658. Epub 2018 Apr 17.

Abstract

The design of novel, effective drug delivery systems is one of the most promising ways to improve the treatment of socially important diseases. This article reports on an innovative approach to the production of composite microcontainers (microcapsules) bearing advanced protective functions. Cerium oxide (CeO) nanoparticles were incorporated into layer-by-layer polyelectrolyte microcapsules as a protective shell for an encapsulated enzyme (luciferase of Photinus pyralis), preventing its oxidation by hydrogen peroxide, the most abundant type of reactive oxygen species (ROS). The protective effect depends on CeO loading in the shell: at a low concentration, CeO nanoparticles only scavenge ROS, whereas a higher content leads to a decrease in access for both ROS and the substrate to the enzyme in the core. By varying the nanoparticle concentration in the microcapsule, it is possible to control the level of core shielding, from ROS filtering to complete blocking. A comprehensive analysis of microcapsules by transmission electron microscopy, scanning electron microscopy, atomic force microscopy, confocal laser scanning microscopy, and energy-dispersive X-ray spectroscopy techniques was carried out. Composite microcapsules decorated with CeO nanoparticles and encapsulated luciferase were shown to be easily taken up by rat B-50 neuronal cells; they are nontoxic and are able to protect cells from the oxidative stress induced by hydrogen peroxide. The approach demonstrated that the active protection of microencapsulated substances by CeO nanoparticles can be used in the development of new drug delivery and diagnostic systems.

摘要

新型、有效的药物输送系统的设计是改善治疗社会重要疾病最有前途的方法之一。本文报道了一种生产具有先进保护功能的复合微容器(微胶囊)的创新方法。将氧化铈(CeO)纳米粒子掺入层层聚电解质微胶囊中作为封装酶(Photinus pyralis 的荧光素酶)的保护层,防止其被过氧化氢氧化,过氧化氢是最丰富的活性氧物种(ROS)之一。保护作用取决于壳中的 CeO 负载量:在低浓度下,CeO 纳米粒子仅能清除 ROS,而较高的含量则会导致 ROS 和底物进入核心酶的通道减少。通过改变微胶囊中的纳米粒子浓度,可以控制核心屏蔽的水平,从 ROS 过滤到完全阻断。通过透射电子显微镜、扫描电子显微镜、原子力显微镜、共聚焦激光扫描显微镜和能量色散 X 射线光谱技术对微胶囊进行了综合分析。结果表明,用 CeO 纳米粒子修饰并包封荧光素酶的复合微胶囊很容易被大鼠 B-50 神经元细胞摄取;它们是无毒的,能够保护细胞免受过氧化氢诱导的氧化应激。该方法表明,CeO 纳米粒子对微封装物质的主动保护可用于开发新的药物输送和诊断系统。

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