Aerobic exercise training-induced bone and vascular adaptations in mice lacking adiponectin.

Bone Pub Date : 2024-10-04 DOI:10.1016/j.bone.2024.117272
Hyerim Park, Samuel P Trupiano, Steven L Medarev, Payal Ghosh, Jacob T Caldwell, Joshua F Yarrow, Judy M Muller-Delp
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Abstract

Adiponectin regulates lipid and glucose metabolism, and insulin sensitivity in various target organs; however, the effects of adiponectin on bone health remain controversial. Exercise training can enhance bone density, bone microarchitecture, and blood flow. This study aimed to elucidate the role of adiponectin in adaptations of bone microarchitecture and bone vasculature in response to aerobic exercise training. Adult male C57BL/6 wild-type (WT) and homozygous adiponectin knockout (AdipoKO) mice were either treadmill exercise trained or remained sedentary for 8-10 weeks. The trabecular structures of the distal femoral metaphysis, a weight-bearing bone, and the mandible, a non-weight-bearing bone, were examined using microcomputed tomography. The femoral principal nutrient arteries were isolated to assess vasoreactivity (vasodilation and vasoconstriction) and structural remodeling. At the femoral metaphysis, impaired trabecular bone structures, including reduced connectivity density and increased trabecular spacing, were observed in AdipoKO mice compared to WT mice. In addition, nitric oxide-mediated, endothelium-dependent vasodilation was substantially reduced, and wall-to-lumen ratio was significantly increased in the femoral principal nutrient artery of AdipoKO mice. Interestingly, although exercise training-induced enhancements in trabecular connectivity density were observed at the femoral metaphysis of both WT and AdipoKO, increased vasoconstrictor responses were only observed in the femoral principal nutrient artery of WT mice, not in the AdipoKO mice. In mandibular trabecular bone, exercise training increased trabecular bone volume fraction (BV/TV, %) and intersection surface in the mandible of both WT and AdipoKO mice. These findings indicate that adiponectin is crucial for maintaining normal bone microarchitecture and vasculature. Although the absence of adiponectin compromises bone vascular adaptation to exercise training in mice, some exercise training-induced alterations in bone microarchitecture occurred in the absence of adiponectin, suggesting contribution of compensatory mechanisms during exercise training.

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有氧运动训练诱导缺乏脂肪连通素的小鼠骨骼和血管适应。
脂肪连通素能调节脂质和葡萄糖代谢,以及各目标器官对胰岛素的敏感性;然而,脂肪连通素对骨骼健康的影响仍存在争议。运动训练可增强骨密度、骨微结构和血流量。本研究旨在阐明有氧运动训练对骨微结构和骨血管适应性的影响。成年雄性C57BL/6野生型(WT)小鼠和同源基因脂肪连接素基因敲除(AdipoKO)小鼠均接受了8-10周的跑步机运动训练或静止不动。使用微计算机断层扫描技术对负重骨--股骨远端干骺端和非负重骨--下颌骨的骨小梁结构进行了检测。对股骨主要营养动脉进行分离,以评估血管活性(血管扩张和血管收缩)和结构重塑。与 WT 小鼠相比,AdipoKO 小鼠的股骨干骺端骨小梁结构受损,包括连接密度降低和骨小梁间距增大。此外,一氧化氮介导的、内皮依赖性血管舒张功能大大降低,AdipoKO 小鼠股主要营养动脉的管壁与管腔比率显著增加。有趣的是,虽然在 WT 小鼠和 AdipoKO 小鼠的股骨干骺端观察到运动训练诱导的骨小梁连接密度增强,但只在 WT 小鼠的股骨主要营养动脉中观察到血管收缩反应增强,而在 AdipoKO 小鼠中没有观察到。在下颌骨骨小梁中,运动训练增加了 WT 和 AdipoKO 小鼠下颌骨骨小梁体积分数(BV/TV,%)和交汇面。这些发现表明,脂肪连通素对维持正常的骨微结构和血管至关重要。虽然缺乏脂肪连通素会影响小鼠骨血管对运动训练的适应性,但在缺乏脂肪连通素的情况下,一些运动训练引起的骨微结构改变也会发生,这表明运动训练过程中存在代偿机制。
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