褪黑素和维生素C对人淋巴细胞辐射防护作用的微核评价

A. Rostami, S. A. Moosavi, Hassan Dianat Moghadam, E. R. Bolookat
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引用次数: 16

摘要

目的电离辐射与生物系统相互作用产生的自由基可能对DNA等关键大分子造成损伤。褪黑素和维生素C已被证明是自由基的直接清除剂。本研究旨在探讨褪黑素和维生素C单独及联合对6 MV x射线照射对人外周血淋巴细胞遗传毒性的体内外防护作用。在本实验研究中,15名志愿者被分为褪黑素、维生素C和褪黑素加维生素C治疗三组。分别于褪黑激素和维生素C给药前、给药后1小时、2小时和3小时采集各组外周血标本。然后用200 cGy的6 MV x射线照射血样。为了鉴定染色体畸变,我们用有丝分裂刺激培养淋巴细胞样本。结果与对照组相比,褪黑素与维生素C(单独或联合)摄入后1小时采集的样品微核发生率显著降低(P<0.05)。在维生素C和褪黑激素联合使用1小时后,观察到最大的协同保护和微核频率降低(57%)。结论放疗前同时给予褪黑素和维生素C作为放射防护物质可降低x射线照射引起的遗传毒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micronuclei Assessment of The Radioprotective Effects of Melatonin and Vitamin C in Human Lymphocytes
Objective Critical macromolecules such as DNA maybe damaged by free radicals that are generated from the interaction of ionizing radiation with biological systems. Melatonin and vitamin C have been shown to be direct free radical scavengers. The aim of this study was to investigate the in vivo/in vitro radioprotective effects of melatonin and vitamin C separately and combined against genotoxicity induced by 6 MV x-ray irradiation in human cultured blood lymphocytes. Materials and Methods In this experimental study, fifteen volunteers were divided into three groups of melatonin, vitamin C and melatonin plus vitamin C treatment. Peripheral blood samples were collected from each group before, and 1, 2 and 3 hours after melatonin and vitamin C administration (separately and combined). The blood samples were then irradiated with 200 cGy of 6 MV x-ray. In order to characterize chromosomal aberrations, the lymphocyte samples were cultured with mitogenic stimulus on cytokinesisblocked binucleated cells. Results The samples collected 1hour after melatonin and vitamin C (separately and combined) ingestion exhibited a significant decrease in the incidence of micronuclei compared with their control group (P<0.05). The maximum synergic protection and reduction in frequency of micronuclei (57%) was observed 1 hour after vitamin C and melatonin administration combined. Conclusion We conclude that simultaneous administration of melatonin and vitamin C as radioprotector substances before irradiation may reduce genotoxicity caused by x-ray irradiation.
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