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首页> 外文期刊>General Physiology and Biophysics >Melatonin protects rat thymus against oxidative stress caused by exposure to microwaves and modulates proliferation/apoptosis of thymocytes
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Melatonin protects rat thymus against oxidative stress caused by exposure to microwaves and modulates proliferation/apoptosis of thymocytes

机译:褪黑素可保护大鼠胸腺免受因暴露于微波引起的氧化应激,并调节胸腺细胞的增殖/凋亡

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摘要

The aim of the study was to evaluate the effect of melatonin on oxidative stress, DNA fragmentation, apoptsis and proliferation in thymus tissue of rats exposed to microwaves Wistar rats were divided in four groups: I - treated with saline; II - treated with melatonin; III - microwaves exposed; IV - microwaves exposed and melatonin treated. Melatonin (2 mg/kg i.p.) was administered daily. Animals were sacrificed after 20, 40 and 60 days. A significant increase in malondialdehyde and carbonyl group content, as well as decrease in catalase and increase in xanthine oxidase activity were registered under microwave exposure. Melatonin prevented the increase in malondialdehyde and carbonyl group content, and reversed the effect on catalase and xanthine oxidase activity. Both, alkaline and acid DNase activity were increased due to microwave exposure. Furthermore, microwaves caused increase in apoptosis rate (detected using Annexin V-FITC/PI kit) and reduced proliferative capacity of thymocytes (induced by ConA). However, melatonin caused decrease in alkaline and acid DNase activity, decrease in apoptotic rate and increase in proliferation rate of thymocytes. Melatonin exerts protective effects on rat thymocytes by modulating processes of apoptosis and proliferation, and causes decrease in DNA fragmentation and oxidative stress intensity under exposure to microwaves.
机译:该研究的目的是评估褪黑激素对暴露于微波的大鼠胸腺组织中氧化应激,DNA片段化,凋亡和增殖的影响。Wistar大鼠分为四组:I-盐水处理; II-用褪黑激素治疗; III-微波暴露; IV-暴露于微波并处理褪黑激素。每天服用褪黑激素(2 mg / kg i.p.)。 20、40和60天后处死动物。在微波照射下,丙二醛和羰基含量显着增加,过氧化氢酶的减少和黄嘌呤氧化酶活性的增加。褪黑素阻止了丙二醛和羰基含量的增加,并逆转了对过氧化氢酶和黄嘌呤氧化酶活性的影响。由于微波暴露,碱性和酸性DNase活性均增加。此外,微波导致凋亡率增加(使用Annexin V-FITC / PI试剂盒检测到),并降低了胸腺细胞的增殖能力(由ConA诱导)。然而,褪黑激素导致碱性和酸性DNA酶活性降低,凋亡速率降低,胸腺细胞增殖速率提高。褪黑素通过调节细胞凋亡和增殖过程对大鼠胸腺细胞产生保护作用,并导致暴露于微波下DNA片段化和氧化应激强度降低。

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