氧化应激
医学
活性氧
活力测定
纤维化
药理学
放射治疗
体内
心功能曲线
心脏纤维化
病态的
病理
心力衰竭
内科学
心脏病学
体外
化学
生物
生物化学
生物技术
作者
Mengyou Xu,Qiuying Tang,Xin Yin,Lingyun Wu,Jie Yin,Kan Jiang,Feng Zhao,Luyi Bu,Zhongjie Lu,Senxiang Yan
标识
DOI:10.1667/rade-20-00279.1
摘要
Radiation-induced heart injury (RIHI) limits the dose delivery of radiotherapy for thoracic cancer. Shenmai injection (SMI) is reported to have potential cytoprotective properties and is commonly used in cardiovascular diseases. So, we aimed to investigate the potential protective effects of SMI treatment on RIHI. In this study, we established the RIHI model using Sprague-Dawley rats and H9c2 cell line. In vivo, the biochemical assay was used to measure serum cardiac injury-related biomarkers and echocardiography to evaluate heart function. The pathological analysis was also applied to observe the myocardial structural changes. In vitro, we further measured the cell viability and reactive oxygen species (ROS) levels after irradiation with or without SMI treatment. Our data showed the administration of SMI reduced the level of serum cardiac injury biomarkers and ameliorated cardiac dysfunction after irradiation in rats. Pathological analysis revealed that SMI mitigated cardiac structural damage, fibrosis, and macrophage infiltration. Besides, treatment with SMI increased cell viability and decreased excess ROS production after irradiation in vitro. Taken together, our study demonstrated the protective role of SMI treatment on RIHI by inhibiting oxidative stress and decreasing structural remodeling.
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