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耐力跑步机跑步训练有益于生长中的雄性Wistar大鼠骨骼的生物材料质量。

Endurance treadmill running training benefits the biomaterial quality of bone in growing male Wistar rats.

作者信息

Huang Tsang-Hai, Chang Feng-Ling, Lin Shang-Chih, Liu Shing-Hwa, Hsieh Sandy S, Yang Rong-Sen

机构信息

Institute of Physical Education, Health and Leisure Studies, National Cheng-King University, Tainan, Taiwan.

出版信息

J Bone Miner Metab. 2008;26(4):350-7. doi: 10.1007/s00774-007-0831-3. Epub 2008 Jul 4.

Abstract

This study investigated the effects of endurance running training on the bones of growing rats. Thirty-two male Wistar rats (7 weeks old) were assigned to a sedentary control group (CON, n = 10), a continuous endurance running group (CEN, n = 10), or an intermittent endurance running group (IEN, n = 12). After an 8-week training period, both exercise groups had significantly less body weight (BW) gain but higher aerobic capacity, shown by increased muscle citrate synthase (CS) activity. Bone area (BA), areal bone mineral density (aBMD), and bone mineral content (BMC) were measured by dual-energy Xray absorptiometry (DXA) in the total femur and sections of femora. Except for showing a significantly higher aBMD in total femora, the CON group was only slightly and nonsignificantly higher in other DXA measurements. In tissue weight measurements, the CON group showed a nonsignificantly higher tissue dry weight (P = 0.146), but a significantly lower tissue water content ratio (WCR, %) as compared to the exercise group. Despite having nonsignificantly lower long bone cross-sectional parameters, both exercise groups showed significantly better biomaterial properties, as measured by a three-point bending test. In extrinsic analysis, femora of the two exercise groups showed no difference in bending load and stiffness, but were significantly higher in post-yield bending energy and total ultimate bending energy (P < 0.05). Similar phenomena were revealed in tissue-level measurements; the CEN and IEN groups were significantly higher in ultimate toughness and post-yield toughness (P < 0.05). Higher post-yield energy shown by two exercise groups implied a change in bone matrix organization. In conclusion, this study demonstrated that two endurance treadmill training modes benefit bone, with subjects showing better tissue biomaterial properties without significantly increasing aBMD, BMC, or bone dimension. Further study would be valuable to investigate the effects of endurance running on other components of bone, such as organization of bone matrix and its relationship with bone biomaterial properties.

摘要

本研究调查了耐力跑训练对生长中大鼠骨骼的影响。将32只雄性Wistar大鼠(7周龄)分为久坐对照组(CON,n = 10)、持续耐力跑组(CEN,n = 10)或间歇耐力跑组(IEN,n = 12)。经过8周的训练期后,两个运动组的体重(BW)增加均显著减少,但有氧能力更高,表现为肌肉柠檬酸合酶(CS)活性增加。通过双能X线吸收法(DXA)测量全股骨和股骨切片的骨面积(BA)、面骨矿物质密度(aBMD)和骨矿物质含量(BMC)。除了全股骨的aBMD显著更高外,CON组在其他DXA测量中仅略高且无显著差异。在组织重量测量中,CON组的组织干重略高但无显著差异(P = 0.146),但与运动组相比,组织含水量比率(WCR,%)显著更低。尽管两个运动组的长骨横截面参数略低但无显著差异,但通过三点弯曲试验测量,它们的生物材料特性显著更好。在外在分析中,两个运动组的股骨在弯曲载荷和刚度方面没有差异,但屈服后弯曲能量和总极限弯曲能量显著更高(P < 0.05)。在组织水平测量中也发现了类似现象;CEN组和IEN组的极限韧性和屈服后韧性显著更高(P < 0.05)。两个运动组显示出更高的屈服后能量,这意味着骨基质组织发生了变化。总之,本研究表明,两种耐力跑步机训练模式对骨骼有益,受试者表现出更好的组织生物材料特性,而不会显著增加aBMD、BMC或骨骼尺寸。进一步研究耐力跑对骨骼其他成分的影响,如骨基质组织及其与骨生物材料特性的关系,将具有重要价值。

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