橙皮苷对x射线致大鼠心脏组织氧化损伤及组织病理改变的辐射防护作用

A. Rezaeyan, G. Haddadi, Massood Hosseinzadeh, M. Moradi, M. Najafi
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引用次数: 42

摘要

本研究旨在评价辐照前给药橙皮苷(HES)对实验性大鼠心脏氧化应激和组织病理学改变的辐射防护作用。在接受放射治疗的患者中,辐射暴露的心血管并发症引起发病率和死亡率。HES是一种在柑橘类水果中发现的抗氧化剂类黄酮,它可以防止组织损伤。58只大鼠分为4组:1组给予磷酸盐缓冲盐水(PBS)和假放疗;第2组,HES与假放疗;第3组,PBS和辐射;第4组,HES和辐射。大鼠接受单次剂量18 Gy、6 MV x射线照射。辐照前7天给予每公斤100毫克的HES剂量。在辐射暴露后24小时和8周进行超氧化物歧化酶(SOD)、丙二醛(MDA)的测定和组织病理学分析。胸部照射导致大鼠MDA水平升高,SOD活性降低。长期病理病变表现为炎症、纤维化、肥大细胞和巨噬细胞增多、斑块形成、血管渗漏、心肌变性、肌细胞坏死。虽然HES可以减少炎症、纤维化、肥大细胞和巨噬细胞数量以及心肌细胞坏死,但它并没有减少血栓、心肌变性和血管渗漏。综上所述,这些结果表明HES具有一定的辐射防护作用。HES的保护作用可能与其免疫调节作用和自由基清除作用有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radioprotective effects of hesperidin on oxidative damages and histopathological changes induced by X-irradiation in rats heart tissue
This study was carried out to evaluate radioprotective effects of hesperidin (HES) administration before the irradiation on the cardiac oxidative stress and histopathological changes in an experimental rat model. The cardiovascular complications of radiation exposure cause morbidity and mortality in patients who received radiotherapy. HES, an antioxidant flavonoid found in citrus fruits, suggests the protection against the tissue damage. Fifty-eight rats were divided into four groups: Group 1 received phosphate buffered saline (PBS) and sham radiation; Group 2, HES and sham radiation; Group 3, PBS and radiation; and Group 4, HES and radiation. The rats were exposed to single dose of 18 Gy of 6 MV X-ray. One hundred milligrams per kilogram doses of HES was administered for 7 days before irradiation. The estimation of superoxide dismutase (SOD), malondialdehyde (MDA), and histopathological analyses was performed at 24 h and 8 weeks after radiation exposure. The irradiation of chest area resulted in an elevated MDA level and decreased SOD activity. Moreover, long-term pathological lesions of radiation were inflammation, fibrosis, the increased number of mast cells and macrophages, and development of plaque, vascular leakage, myocardial degeneration, and myocyte necrosis. Although the administration of HES decreases inflammation, fibrosis, mast cell and macrophage numbers, and myocyte necrosis, it did not result in reduced thrombus, myocardium degeneration, and vascular leakage. In conclusion, these results suggest that HES can perform a radioprotection action. The protective effect of HES may be attributable to its immunomodulatory effects and free radical-scavenging properties.
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