| Literature DB >> 30908916 |
Kai Zhang1, Mengjiao Tu1, Wei Gao2, Xiaojun Cai2, Fahuan Song1, Zheng Chen3, Qian Zhang4, Jing Wang1, Chentao Jin1, Jingjing Shi1, Xiang Yang1, Yuankai Zhu1, Weizhong Gu5, Bing Hu2, Yuanyi Zheng2, Hong Zhang1,6, Mei Tian1.
Abstract
Ischemic stroke is a devastating disease and one of the leading causes of mortality worldwide. Overproduction of reactive oxygen and nitrogen species (RONS) following ischemic insult is known as a key factor in exacerbating brain damage. Thus, RONS scavengers that can block excessive production of RONS have great therapeutic potential. Herein, we propose an efficient treatment strategy in which an artificial nanozyme with multienzyme activity drives neuroprotection against ischemic stroke primarily by scavenging RONS. Specifically, through a facile, Bi3+-assisted, template-free synthetic strategy, we developed hollow Prussian blue nanozymes (HPBZs) with multienzyme activity to scavenge RONS in a rat model of ischemic stroke. The comprehensive characteristics of HPBZs against RONS were explored. Apart from attenuating oxidative stress, HPBZs also suppressed apoptosis and counteracted inflammation both in vitro and in vivo, thereby contributing to increased brain tolerance of ischemic injury with minimal side effects. This study provides a proof of concept for a novel class of neuroprotective nanoagents that might be beneficial for treatment of ischemic stroke and other RONS-related disorders.Entities:
Keywords: hollow Prussian blue; ischemic stroke; nanozyme; neuroprotection; reactive oxygen and nitrogen species
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Year: 2019 PMID: 30908916 DOI: 10.1021/acs.nanolett.8b04729
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189