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首页> 外文期刊>International Journal of Radiation Biology: Covering the Physical, Chemical, Biological, and Medical Effects of Ionizing and Non-ionizing Radiations >Influence of glutathione on the induction of chromosome aberrations, delay in cell cycle kinetics and cell cycle regulator proteins in irradiated mouse bone marrow cells.
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Influence of glutathione on the induction of chromosome aberrations, delay in cell cycle kinetics and cell cycle regulator proteins in irradiated mouse bone marrow cells.

机译:谷胱甘肽对辐射的小鼠骨髓细胞中染色体畸变的诱导,细胞周期动力学延迟和细胞周期调节蛋白的影响。

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摘要

PURPOSE: Reduced glutathione (GSH) is an endogenous thiol and has long been thought to affect the sensitivity of cells to radiation. The aim was to see the influence of GSH on: (i) the production of all types of radiation-induced chromosome aberrations (CA), and (ii) the radiation-induced delay in cell cycle and the levels of cell cycle regulator proteins. MATERIALS AND METHODS: Cell cycle kinetics were determined by scoring the mitotic index (MI). CA and MI were scored in gamma-irradiated buthionine sulfoximine (BSO) (10 h) or GSH (1 h) pretreated and untreated mouse bone marrow cells (BMC). The expression of p53 and p21 proteins after 2 and 6 h of irradiation and for the B-cell lymphoma 2 (Bcl-2) associated X-protein (Bax) after 24 h of irradiation with or without BSO or GSH treatment was analyzed by immunoblotting. RESULTS: Radiation delays mouse BMC in their passage through the cell cycle and induces CA. Exogenous addition of GSH protected CA uniformly at lower doses of radiation but differentiallyat higher doses, whereas GSH-depletion by BSO increased the frequency of radiation-induced CA. Both GSH and BSO-pretreated cells reduced the delay in cell kinetics after irradiation. Levels of both p53 and p21 were enhanced after irradiation to BSO-pretreated cells. However, in GSH-pretreated cells the level of these proteins was reduced. CONCLUSION: Data indicate that the induction of CA and delay in cell kinetics by radiation may not always be interlinked and that the level of endogenous GSH exerts its influence on these parameters. Both GSH and BSO pretreatment reduce delays in cell kinetics of irradiated cells which may die apoptotically, since they have either a higher frequency of exchange aberrations or CA, respectively.
机译:目的:还原型谷胱甘肽(GSH)是一种内源性硫醇,长期以来一直被认为会影响细胞对辐射的敏感性。目的是观察GSH对以下方面的影响:(i)产生所有类型的辐射诱导的染色体畸变(CA),以及(ii)辐射诱导的细胞周期延迟和细胞周期调节蛋白的水平。材料与方法:细胞周期动力学是通过对有丝分裂指数(MI)评分来确定的。 CA和MI分别在经过预处理和未经处理的小鼠骨髓细胞(BMC)中进行了伽马射线照射的丁硫氨酸亚砜亚胺(BSO)(10 h)或GSH(1 h)评分。通过免疫印迹分析了放射线照射2和6小时后p53和p21蛋白的表达以及放射线照射24 h后B细胞淋巴瘤2(Bcl-2)相关X蛋白(Bax)的表达。 。结果:辐射延迟小鼠BMC通过细胞周期并诱导CA。外源添加GSH可以在较低剂量的辐射下均匀保护CA,而在较高剂量下则有差异,而BSO消耗GSH则增加了辐射诱导的CA的频率。 GSH和BSO预处理的细胞均减少了照射后细胞动力学的延迟。照射BSO预处理的细胞后,p53和p21的水平均升高。但是,在经过GSH预处理的细胞中,这些蛋白质的水平降低了。结论:数据表明,CA的诱导和辐射对细胞动力学的延迟可能并不总是相互联系的,内源性GSH的水平对这些参数有影响。 GSH和BSO预处理均减少了可能凋亡导致死亡的被照射细胞的细胞动力学延迟,因为它们分别具有较高的交换畸变频率或CA。

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