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Association between oxidative DNA damage and the expression of 8-oxoguanine DNA glycosylase 1 in lung epithelial cells of neonatal rats exposed to hyperoxia

机译:高氧血症新生鼠肺上皮细胞氧化性DNA损伤与8-氧鸟嘌呤DNA糖基化酶1表达的关系

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摘要

Previous studies have demonstrated that oxidative stress-induced lung injury is involved in the occurrence and developmental process of bronchopulmonary dysplasia (BPD). The present study assessed whether oxidative DNA damage occurs in the early stages of hyperoxia-induced BPD in neonatal rats and evaluated the expression and localization of the DNA repair gene, 8-oxoguanine DNA glycosylase 1 (OGG1), upon exposure to hyperoxia. Neonatal rats and primary cultured neonatal rat alveolar epithelial type II (AECII) cells were exposed to hyperoxia (90% O2) or normoxia (21% O2) and the expression levels of 8-hydroxy-2′-deoxyguanosine (8-OHdG) in the lung tissues and AECII cells were determined using a competitive enzyme-linked immunosorbent assay. DNA strand breaks in the AECII cells were detected using a comet assay. The expression and localization of the OGG1 protein in the lung tissues and AECII cells were determined by immunofluorescence confocal microscopy and western blotting. The mRNA expression levels of OGG1 in the lung tissues and AECII cells were determined by reverse transcription polymerase chain reaction. The expression of 8-OHdG was elevated in the hyperoxia-exposed neonatal rat lung tissue and the AECII cells compared with the normoxic controls. The occurrence of DNA strand breaks in the AECII cells increased with increasing duration of hyperoxia exposure. The protein expression of OGG1 was significantly increased in the hyperoxia-exposed lung tissues and AECII cells, with OGG1 preferentially localized to the cytoplasm. No concomitant increase in the mRNA expression of OGG1 was detected. These results revealed that oxidative DNA damage occurred in lung epithelial cells during early-stage BPD, as confirmed by in vitro and in vivo hyperoxia exposure experiments, and the increased expression of OGG1 was associated with this process.
机译:先前的研究表明,氧化应激诱导的肺损伤与支气管肺发育不良(BPD)的发生和发展过程有关。本研究评估了高氧诱导的BPD在新生大鼠早期是否发生氧化性DNA损伤,并评估了高氧暴露后DNA修复基因8-氧鸟嘌呤DNA糖基化酶1(OGG1)的表达和定位。将新生大鼠和原代培养的新生大鼠II型肺泡上皮细胞(AECII)暴露于高氧(90%O2)或常氧(21%O2)中,并且在大鼠体内表达8-羟基-2'-脱氧鸟苷(8-OHdG)。使用竞争性酶联免疫吸附测定法测定肺组织和AECII细胞。使用彗星分析检测AECII细胞中的DNA链断裂。通过免疫荧光共聚焦显微镜和Western印迹法确定OGG1蛋白在肺组织和AECII细胞中的表达和定位。通过逆转录聚合酶链反应测定肺组织和AECII细胞中OGG1的mRNA表达水平。与高氧对照组相比,高氧暴露的新生大鼠肺组织和AECII细胞中8-OHdG的表达升高。随着高氧暴露时间的延长,AECII细胞中DNA链断裂的发生率增加。在高氧暴露的肺组织和AECII细胞中,OGG1的蛋白表达显着增加,OGG1优先定位于细胞质。没有检测到OGG1 mRNA表达的同时增加。这些结果表明,在早期BPD期间,肺上皮细胞发生了氧化DNA损伤,这已通过体外和体内高氧暴露实验得到证实,OGG1的表达增加与此过程有关。

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