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超氧化物歧化酶在介孔二氧化硅中的固定化及其在延长寿命和健康寿命方面的应用 。 你提供的原文似乎不完整,句末缺少具体所指内容。

Immobilization of Superoxide Dismutase in Mesoporous Silica and its Applications in Strengthening the Lifespan and Healthspan of .

作者信息

Yang Yiling, Wang Wenbin, Liu Kefeng, Zhao Jie

机构信息

Department of Ultrasound, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.

Department of Pharmacy, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.

出版信息

Front Bioeng Biotechnol. 2022 Jul 19;10:795620. doi: 10.3389/fbioe.2022.795620. eCollection 2022.

Abstract

Senescence is a major inductive factor of aging-related diseases in connection with an accumulation of reactive oxygen species (ROS). Therefore, it is important to maintain ROS at an appropriate level to keep homeostasis in organisms. Superoxide dismutase (SOD) is a vital enzyme in defending against oxidative damage . Because of the defects in the direct application of SOD and SOD mimics, mounting delivery systems have been developed for the efficient applications of SOD to realize antioxidant treatment. Among these systems, mesoporous silica nanoparticles (MSNs) have been widely studied because of various advantages such as desirable stability, low toxicity, and adjustable particle sizes. Herein, SOD was immobilized on MSNs using a physical absorption strategy to construct the nanosystem SOD@MSN. The nematode () was selected as the model organism for the subsequent antioxidant and anti-aging studies. The research results suggested the nanosystem could not only be effectively internalized by but could also protect the nematode against external stress, thus extending the lifespan and healthspan of . Therefore, SOD@MSN could be applied as a promising medicine in anti-aging therapeutics.

摘要

衰老与活性氧(ROS)的积累相关,是衰老相关疾病的主要诱导因素。因此,将ROS维持在适当水平以保持生物体的内环境稳定非常重要。超氧化物歧化酶(SOD)是防御氧化损伤的关键酶。由于SOD及其模拟物直接应用存在缺陷,已开发出多种递送系统以实现SOD的高效应用,从而实现抗氧化治疗。在这些系统中,介孔二氧化硅纳米颗粒(MSN)因其具有诸如良好的稳定性、低毒性和可调节粒径等多种优点而受到广泛研究。在此,采用物理吸附策略将SOD固定在MSN上,构建纳米系统SOD@MSN。选择线虫()作为后续抗氧化和抗衰老研究的模式生物。研究结果表明,该纳米系统不仅能被有效地内化,还能保护线虫免受外部应激,从而延长其寿命和健康期。因此,SOD@MSN有望作为一种抗衰老治疗药物应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ea3/9343863/8e20fd362e0c/fbioe-10-795620-g001.jpg

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