低氧训练对肥胖小鼠 Ghrelin-GHSR 通路的影响
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1.北京体育大学中国运动与健康研究院,北京 100084; 2. 北京体育大学运动人体科学学院,北京 100084; 3. 上海体育科学研究所,上海 200030; 4. 运动与体质健康教育部重点实验室,北京 100084

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Effect of hypoxic training on the Ghrelin-GHSR pathway in obese mice
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1.China Institute of Sport and Health Science of Beijing Sport University, Beijing 100084, China. 2. Sport Science College of Beijing Sport University, Beijing 100084. 3. Shanghai Research Institute of Sports Science, Shanghai 200030. 4. Key Laboratory of Physical Fitness and Exercise, Ministry of Education, Beijing 100084

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    摘要:

    目的 对肥胖小鼠施加低氧训练,观察胃组织 Ghrelin 和下丘脑 GHSR 水平的变化,以探究低氧训练是否影响 Ghrelin-GHSR 通路改善肥胖体质。 方法 雄性 C57BL/ 6J 小鼠,随机分为普通对照组(C, n = 8)和高脂 膳食组(H, n = 52)。 H 组建立肥胖模型后,随机分为肥胖对照组(HC)、肥胖常氧运动组(HE)、肥胖低氧暴露组 (HH)和肥胖低氧运动组(HHE)。 运动各组进行中等强度跑台训练,低氧各组进行间歇低氧暴露(11. 2%氧气含量),记录每周体重和摄食量,共 4 周。测试血清 TC、TG、GLU 和总 Ghrelin 水平,RT-PCR 法检测下丘脑 GHSR 和胃 Ghrelin mRNA 表达水平,WB 检测下丘脑 GHSR 和 NPY 蛋白含量及胃组织 Ghrelin、Goat 和 HIF-2α 蛋白含量。 结果 (1)干预 4 周后,HE、HH 和 HHE 组体重较 HC 组显著降低;低氧干预的最初阶段,HH 和 HHE 组的摄食量出现下降,但随着干预时间的延长,肥胖各组的摄食量逐步趋近;(2)HC 组血液各指标显著高于 C 组,HH 组 TC 水平较 HC 组显著降低,HE、HH 和 HHE 组 GLU 水平较 HC 组显著下降;HH 和 HHE 组血清总 Ghrelin 水平较 HC 组显著降 低;(3)HC 组下丘脑 GHSR mRNA 和胃 Ghrelin mRNA 水平较 C 组极显著下降,HH 和 HHE 组下丘脑 GHSR mRNA 及 HHE 组胃 Ghrelin mRNA 水平较 HC 组显著上升;(4) HE、HH 和 HHE 组下丘脑 GHSR 蛋白水平显著高于 HC 组;HE 组和 HHE 组 NPY 蛋白水平显著高于 HC 组;(5)HE、HH 和 HHE 组胃 Ghrelin 蛋白水平显著高于 HC 组;HE 组和 HHE 组 Goat 蛋白水平显著高于 HC 组;HH 组和 HHE 组 HIF-2α 蛋白水平显著高于 HC 组。 结论 低氧训练可通过调控 Ghrelin-GHSR 信号通路,影响糖脂代谢,从而降低肥胖小鼠的体重。

    Abstract:

    Objective To explore the mechanism of the ghrelin-GHSR pathway to alleviate obesity in hypoxic- exercise mice by observing ghrelin level changes in the gastric tissue and GHSR levels in the hypothalamic tissue. Methods Male C57BL/ 6J mice were randomly divided into the control group ( C, n = 8) or high-fat diet group ( H, n = 52) to establish the obesity model. After 8 weeks, the H group was further divided into the obese control group (HC), obese exercise group (HE), obese hypoxic exposure group (HH) and obese hypoxic exercise group (HHE). The HE and HHE groups were intervened by mid-intensity treadmill training while under intermittent hypoxic exposure ( 11. 2% oxygen). Weight and food intake were recorded weekly. Total cholesterol (TC), triglycerides (TG) and glucose levels in the serum were tested as well as the total ghrelin levels; the expression of GHSR mRNA in the hypothalamic tissue and ghrelin mRNA in the gastric tissue were detected via RT-PCR. GHSR and NPY in the hypothalamic tissue and the ghrelin, Goat and HIF- 2α protein expressions in the gastric tissue were detected via western blot after 4 weeks of intervention. Results (1) The HE, HH and HHE group weights were significantly lower than those of the HC group after intervention. In the initial stage of hypoxic intervention, the food intake decreased in the HH and HHE groups, and the food intake in the obese groups gradually became nearly the same as the intervention time increased. ( 2) The serum levels of the HC group were significantly higher than those of the C group; the TC level in the HH group significantly decreased, and the glucose levels in the HE, HH and HHE groups significantly decreased. The serum total ghrelin levels in the HH and HHE groups were significantly lower than those of the HC group. (3) Compared with the C group, the GHSR mRNA level in the hypothalamic tissue and the ghrelin mRNA level in the gastric tissue of the HC group were significantly decreased. The GHSR mRNA levels in the HH and HHE groups were significantly higher than those in the HC group. (4) In the hypothalamic tissue, the GHSR protein levels in the HE, HH and HHE groups and the NPY protein levels in the HE and HHE groups were significantly higher than those of the HC group. (5) In the gastric tissue, the ghrelin protein levels in the HE, HH and HHE groups, the Goat protein levels in the HE and HHE groups and the HIF-2α protein levels in the HH and HHE groups were significantly higher than those in the HC group. Conclusions Hypoxic training affects glucose and lipid metabolism by regulating the ghrelin-GHSR signaling pathway in the gastric tissue to control weight in obese mice.

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龚丽景,付鹏宇,朱镕鑫,张一民,许春艳.低氧训练对肥胖小鼠 Ghrelin-GHSR 通路的影响[J].中国实验动物学报,2020,28(1):66~72.

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  • 收稿日期:2019-08-01
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  • 在线发布日期: 2020-04-01
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