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聚合物纳米容器内的酶级联反应:对抗氧化应激的一种手段。

Enzymatic cascade reactions inside polymeric nanocontainers: a means to combat oxidative stress.

机构信息

Department of Chemistry, University of Basel, Klingelbergstrasse 80, 4056 Basel, Switzerland.

出版信息

Chemistry. 2011 Apr 11;17(16):4552-60. doi: 10.1002/chem.201002782. Epub 2011 Mar 1.

Abstract

Oxidative stress, which is primarily due to an imbalance in reactive oxygen species, such as superoxide radicals, peroxynitrite, or hydrogen peroxide, represents a significant initiator in pathological conditions that range from arthritis to cancer. Herein we introduce the concept of enzymatic cascade reactions inside polymeric nanocontainers as an effective means to detect and combat superoxide radicals. By simultaneously encapsulating a set of enzymes that act in tandem inside the cavities of polymeric nanovesicles and by reconstituting channel proteins in their membranes, an efficient catalytic system was formed, as demonstrated by fluorescence correlation spectroscopy and fluorescence cross-correlation spectroscopy. Superoxide dismutase and lactoperoxidase were selected as a model to highlight the combination of enzymes. These were shown to participate in sequential reactions in situ in the nanovesicle cavity, transforming superoxide radicals to molecular oxygen and water and, therefore, mimicking their natural behavior. A channel protein, outer membrane protein F, facilitated the diffusion of lactoperoxidase substrate/products and dramatically increased the penetration of superoxide radicals through the polymer membrane, as established by activity assays. The system remained active after uptake by THP-1 cells, thus behaving as an artificial organelle and exemplifying an effective approach to enzyme therapy.

摘要

氧化应激主要是由于活性氧物质(如超氧自由基、过氧亚硝酸盐或过氧化氢)的失衡引起的,它是从关节炎到癌症等病理条件的重要启动因素。在这里,我们介绍了在聚合纳米容器内进行酶级联反应的概念,这是一种有效检测和对抗超氧自由基的方法。通过同时封装一组在聚合纳米囊泡腔体内协同作用的酶,并在其膜中重新组装通道蛋白,形成了一个高效的催化体系,这一点通过荧光相关光谱和荧光互相关光谱得到了证明。超氧化物歧化酶和乳过氧化物酶被选为模型来突出酶的组合。结果表明,这些酶在纳米囊泡腔原位参与连续反应,将超氧自由基转化为氧气和水,从而模拟其天然行为。通道蛋白外膜蛋白 F 促进了乳过氧化物酶底物/产物的扩散,并通过活性测定显著增加了超氧自由基通过聚合物膜的渗透。该系统在被 THP-1 细胞摄取后仍然保持活性,因此表现为一种人工细胞器,并为酶治疗提供了一种有效的方法。

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