实验动物与比较医学 ›› 2019, Vol. 39 ›› Issue (6): 479-483.DOI: 10.3969/j.issn.1674-5817.2019.06.010

• 裸鼹鼠研究专题 • 上一篇    下一篇

裸鼹鼠与小鼠抗辐射能力比较研究

陈超, 丛薇, 杨文静, 崔淑芳   

  1. 海军军医大学基础医学院实验动物学教研室, 上海 200433
  • 收稿日期:2019-10-11 出版日期:2019-12-25 发布日期:2021-01-05
  • 作者简介:陈超, 助教。E-mail: chenchao_8713@aliyun.com
  • 基金资助:
    上海市科委科研计划项目(17140900200)

Comparative Study on Radiation Resistance of Naked Mole-rat and Mice

CHEN Chao, CONG Wei, YANG Wen-jing, CUI Shu-fang   

  1. Department of Laboratory Animal Science, School of Basic Medical Sciences, Naval Medical University, Shanghai 200433, China
  • Received:2019-10-11 Online:2019-12-25 Published:2021-01-05

摘要: 目的 通过不同剂量和不同频率的γ射线照射裸鼹鼠和小鼠及两者的皮肤成纤维细胞,比较两者的抗辐射能力。方法 选择成年小鼠(8周龄)、成年裸鼹鼠(52周龄),分别使用60Coγ射线分多次小剂量或一次性高剂量全身照射,分析两者的基本生命体征、外周血淋巴细胞变化及主要脏器组织病理变化。选择裸鼹鼠和小鼠的皮肤成纤维细胞,进行不同剂量一次性照射,检测两者的氧损伤。结果 小鼠在6 Gy一次性照射下,30 d存活率为30%;外周血辅助性T淋巴细胞和杀伤性淋巴细胞比值(CD4+/CD8+)、树突状细胞(DC)百分比无显著变化;而裸鼹鼠30 d存活率为100%,辐照后4 d外周血CD4+/CD8+显著升高、DC百分比呈显著先升高后回落趋势。小剂量多次辐照后,小鼠骨髓、胸腺、肝脾等主要组织器官均出现不同程度病变,裸鼹鼠相应器官则无明显异常。裸鼹鼠和小鼠的皮肤成纤维细胞在6 Gy剂量辐照后细胞活性氧含量无显著变化。而在50 Gy剂量照射下,裸鼹鼠皮肤成纤维细胞的氧损伤显著低于小鼠皮肤成纤维细胞。结论 裸鼹鼠对于电离辐射具有天然的抗性,其生命体征、组织器官的形态与功能都没有因外部辐射因素刺激而发生明显的改变,机体免疫水平呈激活状态。裸鼹鼠的皮肤成纤维细胞同样具有抗电离辐射特性。

关键词: 裸鼹鼠, 抗辐射, 免疫

Abstract: Objective The radiation resistance of naked mole-rats and mice and their skin fibroblasts were investigated by gamma ray irradiation at different doses and frequencies. Methods Adult mice (8 weeks old) and adult naked mole-rats (52 weeks old) were treated with 60Co gamma ray irradiation in low doses by multi-times or high doses one-time, respectively, to analyze their basic vital signs, changes in peripheral blood lymphocytes and pathological changes in major organs. Skin fibroblasts from naked mole-rats and mice were irradiated with different dosages to detect the damage of reactive oxygen species (ROS). Results Thirty days after one-time irradiation with 6 Gy, the survival rate of mice was 30%, and the ratio of helper T lymphocytes and killer lymphocytes (CD4+/CD8+) and dendritic cells (DC) in their peripheral blood showed no significant change. However, the survival rate of naked mole-rats on day 30 was 100%, CD4+/CD8+ in peripheral blood increased significantly on day 4 after irradiation, and DC percentage increased first and then decreased sharply. After repeated irradiation with low dosage, the bone marrow, thymus, liver and spleen and other major tissues and organs of mice all showed different degrees of lesions, while the corresponding organs of naked mole-rats showed no obvious abnormalities. There was not any significant change in ROS in skin fibroblasts of naked mole-rats and mice irradiated by 6 Gy dose. But, under radiation of 50 Gy doses, the oxygen injury of skin fibroblasts of naked mole-rats was significantly lower than that of mouse skin fibroblasts. Conclusion Naked mole rats have natural resistance to ionizing radiation. Their vital signs, morphology and functions of tissues and organs have not changed markedly due to external radiation factors, and their immune level is activated. Skin fibroblasts of naked mole-rats also exhibit anti-ionizing radiation properties.

Key words: Naked mole-rat, Radiation resistant, Immunology

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