体内
细胞毒性
化学
药理学
体外
生物相容性
缺氧(环境)
二烯丙基三硫化物
缺血
细胞凋亡
医学
生物化学
氧气
心脏病学
生物
生物技术
有机化学
作者
Kai Huang,Shuyan Wen,Wenshuo Wang,Jinge Zhou,Junhui Huang,Fangrui Wang,Liewen Pang,Yiqing Wang,Xiaotian Sun
出处
期刊:Nanomedicine
日期:2021-03-01
卷期号:16 (6): 465-480
被引量:10
标识
DOI:10.2217/nnm-2020-0404
摘要
Aim: To construct a long circulatory and sustained releasing H 2 S system and explore its protective effects on myocardial ischemia and reperfusion (I/R) injury. Materials & methods: Red blood cell (RBC) membrane-coated, diallyl trisulfide (DATS)-carrying mesoporous iron oxide nanoparticles (MIONs) (RBC-DATS-MIONs) were prepared and characterized. Cytotoxicity and cellular uptake were studied in vitro, followed by in vivo assessment of safety, distribution and effect on cardiac function following I/R injury. Results: RBC-DATS-MIONs exhibited excellent biocompatibility, extended circulatory time and controlled-release of H 2 S in plasma and myocardium. They exhibited superior therapeutic effects on in vitro hypoxia/reoxygenation models and in vivo myocardial I/R models, which involved various mechanisms, including anti-apoptosis, anti-inflammatory and antioxidant activities. Conclusion: This work provides a new potential platform for best utilizing the protective effects of H 2 S by prolonging its releasing process.
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