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Effect of captopril on radiation-induced TGF-β1 secretion in EA.Hy926 human umbilical vein endothelial cells

机译:卡托普利对辐射诱导的人Hy926人脐静脉内皮细胞TGF-β1分泌的影响

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摘要

The pathophysiological mechanism involved in the sustained endothelial secretion of cytokines that leads to fibrosis 6–16 months after radiotherapy remains unclear. Angiotensin II (Ang II) is produced by the endothelium in response to stressing stimuli, like radiation, and may induce the synthesis of TGF-β, a profibrotic cytokine. In this study we tested the hypothesis that captopril, an angiotensin-converting enzyme (ACE) inhibitor, inhibits or attenuates radiation-induced endothelial TGF-β1 secretion. The human endothelial hybrid cell line EA.HY926 was irradiated with split doses of x-rays (28 Gy delivered in 14 fractions of 2 Gy). TGF-β1 mRNA, TNF-α mRNA and TGF-β1 protein levels were evaluated by RT-PCR and western blotting each month until the fifth month post radiation. Ang II was detected using radioimmunoassays, NF-κB activity was examined using EMSA, and western blotting was used to detect the expression of Iκ-Bα. To explore the role of Ang II on radiation-induced TGF-β1 release and Iκ-Bα expression, captopril was added to cultured cells before, during, or after irradiation. Sustained strong expression of TGF-β1 was observed after conventional fractionated irradiation. TNF-α, Ang II, and NF-κB activity were also increased in EA.Hy926 cells after radiation. Captopril decreased Ang II expression, inhibited the NF-κB pathway and reduced TGF-β1 expression. These data suggest that captopril might protect the endothelium from radiation-induced injury.
机译:持续的内皮细胞分泌细胞因子导致放疗后6-16个月发生纤维化的病理生理机制尚不清楚。血管紧张素II(Ang II)由内皮细胞响应应激刺激(如辐射)产生,并可能诱导纤维化细胞因子TGF-β的合成。在这项研究中,我们测试了一种假设,即血管紧张素转换酶(ACE)抑制剂卡托普利抑制或减弱辐射诱导的内皮TGF-β1分泌。用分剂量的X射线(28 Gy以14 G 2的分数递送)照射人内皮混合细胞系EA.HY926。每月至放疗后第五个月,通过RT-PCR和蛋白质印迹法评估TGF-β1mRNA,TNF-αmRNA和TGF-β1蛋白水平。放射免疫法检测Ang II,EMSA检测NF-κB活性,Western blotting检测Iκ-Bα的表达。为了探索Ang II在辐射诱导的TGF-β1释放和Iκ-Bα表达中的作用,在照射之前,期间或之后将卡托普利加入培养的细胞中。常规分级照射后,观察到TGF-β1持续强表达。辐射后EA.Hy926细胞的TNF-α,Ang II和NF-κB活性也增加。卡托普利降低Ang II表达,抑制NF-κB通路并降低TGF-β1表达。这些数据表明卡托普利可能保护内皮免受辐射引起的损伤。

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