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橙皮苷对γ射线照射诱导的人淋巴细胞遗传毒性的辐射防护作用。

Radioprotective effects of hesperidin against genotoxicity induced by gamma-irradiation in human lymphocytes.

作者信息

Hosseinimehr Seyed Jalal, Mahmoudzadeh Aziz, Ahmadi Amirhossein, Mohamadifar Soheila, Akhlaghpoor Shahram

机构信息

Department of Medicinal Chemistry, Faculty of Pharmacy, Mazandaran University of Medical Sciences, Sari, Iran.

出版信息

Mutagenesis. 2009 May;24(3):233-5. doi: 10.1093/mutage/gep001. Epub 2009 Feb 4.

Abstract

The radioprotective effect of hesperidin against genotoxicity induced by gamma-irradiation has been investigated in vivo/in vitro in cultured blood lymphocytes from human volunteers. Peripheral blood samples were collected at 0 (10 min before) and at 1, 2 and 3 h after a single oral ingestion of 250 mg hesperidin. At each time point, the whole blood was exposed in vitro to 150 cGy of (60)Co gamma-irradiation and then the lymphocytes were cultured with mitogenic stimulation to determine the micronuclei in cytokinesis-blocked binucleated cells. For each volunteer, the results showed a significant increase in the incidence of micronuclei after exposure of cells to gamma-irradiation as compared to control samples. The lymphocytes in the blood samples collected at 1 h after hesperidin ingestion and exposed in vitro to gamma-rays exhibited a significant decrease in the incidence of micronuclei, compared with similarly irradiated lymphocytes from blood samples collected at 0 h. The maximum protection and decrease in frequency of micronuclei (33%) was observed at 1 h after ingestion of hesperidin. These data have important application for the protection of human lymphocytes from the genetic damage and side effects induced by gamma-irradiation in patients undergoing radiotherapy.

摘要

橙皮苷对γ射线诱导的遗传毒性的辐射防护作用已在人体志愿者培养的血液淋巴细胞中进行了体内/体外研究。在单次口服250毫克橙皮苷之前10分钟(0小时)以及之后1、2和3小时采集外周血样本。在每个时间点,将全血在体外暴露于150 cGy的(60)Coγ射线,然后用有丝分裂刺激培养淋巴细胞,以确定胞质分裂阻滞双核细胞中的微核。对于每位志愿者,结果显示与对照样本相比,细胞暴露于γ射线后微核发生率显著增加。与在0小时采集的血样中同样接受γ射线照射的淋巴细胞相比,在摄入橙皮苷1小时后采集的血样中的淋巴细胞在体外暴露于γ射线后微核发生率显著降低。在摄入橙皮苷1小时后观察到最大的防护效果以及微核频率降低(33%)。这些数据对于保护接受放疗患者的人类淋巴细胞免受γ射线诱导的遗传损伤和副作用具有重要应用价值。

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