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Reactive oxygen species-activated nanomaterials as theranostic agents

机译:活性氧激活纳米材料作为治疗剂

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摘要

Reactive oxygen species (ROS) are generated from the endogenous oxidative metabolism or from exogenous pro-oxidant exposure. Oxidative stress occurs when there is excessive production of ROS, outweighing the antioxidant defense mechanisms which may lead to disease states. Hydrogen peroxide (H2O2) is one of the most abundant and stable forms of ROS, implicated in inflammation, cellular dysfunction and apoptosis, which ultimately lead to tissue and organ damage. This review is an overview of the role of ROS in different diseases. We will also examine ROS-activated nanomaterials with emphasis on hydrogen peroxide, and their potential medical implications. Further development of the biocompatible, stimuli-activated agent responding to disease causing oxidative stress, may lead to a promising clinical use.
机译:活性氧(ROS)由内源性氧化代谢或外源促氧化剂暴露产生。当过量产生ROS时就会发生氧化应激,其作用超过了可能导致疾病状态的抗氧化防御机制。过氧化氢(H2O2)是最丰富和稳定的ROS形式之一,与炎症,细胞功能障碍和细胞凋亡有关,最终导致组织和器官损伤。这篇综述概述了ROS在不同疾病中的作用。我们还将研究ROS活化的纳米材料,重点是过氧化氢及其潜在医学意义。响应引起氧化应激的疾病的生物相容性,刺激活化剂的进一步发展可能导致有希望的临床用途。

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