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作 者:李可基[1] 李晖[1] 张宝慧[1] 拾景达[1] 周兰兰[1]
机构地区:[1]北京大学第三医院运动医学研究所,北京100083
出 处:《体育科学》2001年第2期57-61,共5页China Sport Science
基 金:国家自然科学基金资助!(基金编号39770813)
摘 要:目的:探讨ApoE在有氧运动调节脂质代谢机制中的作用。方法:应用基因调皮除的ApoE-/-鼠建立运动模型。结 果:对比游泳 12周(2h x 6d)前后结果。ApoE-/-鼠 TC(18. 5±2. 27 mmol/L vs 27. 9±4.63mmol/L,P<0. 01)和 TG (1.09±0.26mmol/L vs 1. 52±0.37 mmol/L,P<0.01)显著升高,睾丸总胆固醇水平下降。与 C57BL/6J对照鼠游 泳前后的变化趋势相反(TC:1.76±0.31 mmol/L vs1.32±0.32 mmol/L,P<0.05;TG:0.86±0.14 mmol/L vs 0.45±0.043 mmol/L,P<0.05)。结论:ApoE-/-鼠运动后血脂升高。反映了运动促进组织脂质动员入血和 ApoE缺 失引起脂质清除障碍的机制;也说明运动调节血脂的关键机制包括ApoE参与的受体依赖脂质清除途径;同时提示 脂质清除障碍时,依靠有氧训练改善血脂状况的效果可能不佳。To approach relevant mechanism to ApoE in alternation of lipid metabolism induced by aerobic exercise, ApoE deficient mice were used to establish an exercise model programmed by 2h x 6d swimming for 12 weeks. Results show that in contrary to C57BL/6J mice, which developed a more health lipid profile in 12w aerobic exercise, ApoE-/- mice had higher plasma TC and TG levels, a very low HDL proportion and a reduced testis cholesterol content after swimming. The plasma concentrations of TC (18. 5± 2. 27mmol/L vs 27. 9± 4. 63mmol/L, p<0. 01) and TG (1. 09± 0. 26mmol/L vs 1. 52±0. 37mmol/L, p<0. 01) increased significantly in ApoE-/- mice, whereas TC (1. 76±0. 31mmol/L vs 1. 32± 0. 32mmol/L, p< 0. 05) and TG (0. 86 ± 0. 14mmol/L vs 0. 45 ± 0. 043 mmol/L, p < 0. 05) decreased in controlled C57BL/6J mice. Electrophorus is-separated and density-quantified, HDL percentages were 6 1. 4 ± 6. 6 % vs 7 0. 2 ± 7. 5 % (p<0. 05) in controlled c57BL/6J mice, and fluctuated at levels of around 5% in ApoE-/- mice; and the percentages of VLDL+LDL were 38. 2±6. 8% vs 29. 8±7. 5% (p<0. 05) in C57BL/6J mice and remained similar levels (94. 7±3. 2% vs 95. 8± 1. 9% ) in ApoE-/- mice. It is concluded that after 12w swimming, the higher levels of TC and TG in ApoE-/- reflect a promotion of which more lipid is mobilized by aerobic exercise to enter circulation from tissues, and an inhibition of lipid clearance from blood caused by ApoE deficiency. The results suggest that the changes of lipid levels modulated by aerobic exercise may mainly take specific receptor pathway involving ApoE to transfer lipid to tissues, and indicate that aerobic exercise may be an inefficient way to improve lipid profile under condition of blocked lipid clearance from circulation.
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