Zhang Hong, Liu Bing, Zhou Qingming, Zhou Guangming, Yuan Zhigang, Li Wenjian, Duan Xin, Min Fengling, Xie Yi, Li Xiaoda
Department of Medical Physics, Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, China.
Int J Androl. 2006 Dec;29(6):592-6. doi: 10.1111/j.1365-2605.2006.00698.x.
Irradiation has been widely reported to damage organisms by attacking on proteins, nucleic acid and lipids in cells. However, radiation hormesis after low-dose irradiation has become the focus of research in radiobiology in recent years. To investigate the effects of pre-exposure of mouse brain with low-dose (12)C6+ ion or 60Co gamma (gamma)-ray on male reproductive endocrine capacity induced by subsequent high-dose irradiation, the brains of the B6C3F1 hybrid strain male mice were irradiated with 0.05 Gy of (12)C6+ ion or 60Co gamma-ray as the pre-exposure dose, and were then irradiated with 2 Gy as challenging irradiation dose at 4 h after pre-exposure. Serum pituitary gonadotropin hormones, follicle-stimulating hormone (FSH) and luteinizing hormone (LH), testosterone, testis weight, sperm count and shape were measured on the 35th day after irradiation. The results showed that there was a significant reduction in the levels of serum FSH, LH, testosterone, testis weight and sperm count, and a significant increase in sperm abnormalities by irradiation of the mouse brain with 2 Gy of (12)C6+ ion or 60Co gamma-ray. Moreover, the effects were more obvious in the group irradiated by (12)C6+ ion than in that irradiated by 60Co gamma-ray. Pre-exposure with low-dose (12)C6+ ion or 60Co gamma-ray significantly alleviated the harmful effects induced by a subsequent high-dose irradiation.
据广泛报道,辐射通过攻击细胞中的蛋白质、核酸和脂质来损害生物体。然而,低剂量辐射后的辐射兴奋效应近年来已成为放射生物学研究的焦点。为了研究低剂量(12)C6 +离子或60Coγ射线预照射小鼠大脑对随后高剂量照射诱导的雄性生殖内分泌能力的影响,将B6C3F1杂交品系雄性小鼠的大脑用0.05 Gy的(12)C6 +离子或60Coγ射线作为预照射剂量进行照射,然后在预照射后4小时用2 Gy作为挑战性照射剂量进行照射。在照射后第35天测量血清垂体促性腺激素、促卵泡激素(FSH)和促黄体生成素(LH)、睾酮、睾丸重量、精子数量和形态。结果表明,用2 Gy的(12)C6 +离子或60Coγ射线照射小鼠大脑后,血清FSH、LH、睾酮水平、睾丸重量和精子数量显著降低,精子异常显著增加。此外,(12)C6 +离子照射组的影响比60Coγ射线照射组更明显。低剂量(12)C6 +离子或60Coγ射线预照射显著减轻了随后高剂量照射诱导的有害影响。