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首页> 外文期刊>Cardio-oncology. >Effects of a novel peptide Ac-SDKP in radiation-induced coronary endothelial damage and resting myocardial blood flow
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Effects of a novel peptide Ac-SDKP in radiation-induced coronary endothelial damage and resting myocardial blood flow

机译:新型肽AC-SDKP在辐射引起的冠状动脉内皮损伤和休息心肌血流的影响

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Cancer survivors treated with thoracic ionizing radiation are at higher risk of premature death due to myocardial ischemia. No therapy is currently available to prevent or mitigate these effects. We tested the hypothesis that an endogenous tetrapeptide N-acetyl-Ser-Asp-Lys-Pro (Ac-SDKP) counteracts radiation-induced coronary vascular fibrosis and endothelial cell loss and preserves myocardial blood flow. We examined a rat model with external-beam-radiation exposure to the cardiac silhouette. We treated a subgroup of irradiated rats with subcutaneous Ac-SDKP for 18-weeks. We performed cardiac MRI with Gadolinium contrast to examine resting myocardial blood flow content. Upon sacrifice, we examined coronary endothelial-cell-density, fibrosis, apoptosis and endothelial tight-junction proteins (TJP). In vitro, we examined Ac-SDKP uptake by the endothelial cells and tested its effects on radiation-induced reactive oxygen species (ROS) generation. In vivo, we injected labeled Ac-SDKP intravenously and examined its endothelial localization after 4-h. We found that radiation exposure led to reduced resting myocardial blood flow content. There was concomitant endothelial cell loss and coronary fibrosis. Smaller vessels and capillaries showed more severe changes than larger vessels. Real-time PCR and confocal microscopy showed radiation-induced loss of TJ proteins including-claudin-1 and junctional adhesion molecule-2 (JAM-2). Ac-SDKP normalized myocardial blood flow content, inhibited endothelial cell loss, reduced coronary fibrosis and restored TJ-assembly. In vitro, Ac-SDKP localized to endothelial cells and inhibited radiation-induced endothelial ROS generation. In vivo, labeled Ac-SDKP was visualized into the endothelium 4-h after the intravenous injection. We concluded that Ac-SDKP has protective effects against radiation-induced reduction of myocardial blood flow. Such protective effects are likely mediated by neutralization of ROS-mediated injury, preservation of endothelial integrity and inhibition of fibrosis. This demonstrates a strong therapeutic potential of Ac-SDKP to counteract radiotherapy-induced coronary disease.
机译:由于心肌缺血,用胸电离辐射治疗的癌症幸存者处于早熟死亡的风险较高。目前没有治疗可预防或减轻这些效果。我们测试了内源四肽N-乙酰基-Ser-ASP-Lys-Pro(AC-SDKP)的假设抵消了辐射诱导的冠状动脉血管纤维化和内皮细胞损失,并保留了心肌血流。我们检查了一种大型射线辐射暴露于心脏轮廓的大鼠模型。我们用皮下AC-SDKP处理了辐照大鼠的亚组,持续18周。我们用钆对比进行心脏MRI,以检查休息的心肌血流含量。牺牲后,我们检查了冠状动脉内皮细胞密度,纤维化,凋亡和内皮紧密接线蛋白(TJP)。体外,我们通过内皮细胞检查了AC-SDKP吸收,并测试了对辐射诱导的活性氧物质(ROS)产生的影响。在体内,我们静脉内注射标记的AC-SDKP,并在4-H后检查其内皮定位。我们发现辐射曝光导致减少休息的心肌血流含量。伴随着内皮细胞损失和冠状动脉纤维化。较小的血管和毛细血管显示出比较大血管更严重的变化。实时PCR和共聚焦显微镜显示出辐射诱导的TJ蛋白质损失,包括-Claudin-1和结粘附分子-2(卡纸-2)。 AC-SDKP归一化心肌血流含量,抑制内皮细胞损失,降低冠状动脉纤维化,并恢复TJ组件。体外,AC-SDKP定位于内皮细胞并抑制辐射诱导的内皮ROS产生。在体内,在静脉内注射后,标记的AC-SDKP被可视化为4-H内皮。我们得出结论,AC-SDKP对辐射诱导的心肌血流进行保护作用。这种保护作用可能是通过中和ROS介导的损伤,保存内皮完整性和纤维化抑制的介导。这证明了AC-SDKP的强烈治疗潜力,以抵消放射疗法诱导的冠状病。

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