Department of Biomedical Engineering, Fourth Military Medical University, Xi'an, China.
The State Key Laboratory of Cancer Biology, Department of Biochemistry and Molecular Biology, Fourth Military Medical University, Xi'an, China.
Nat Commun. 2024 Jan 30;15(1):890. doi: 10.1038/s41467-024-45023-6.
Type 2 diabetes (T2D)-related fragility fractures represent an increasingly tough medical challenge, and the current treatment options are limited. Mechanical loading is essential for maintaining bone integrity, although bone mechano-responsiveness in T2D remains poorly characterized. Herein, we report that exogenous cyclic loading-induced improvements in bone architecture and strength are compromised in both genetically spontaneous and experimentally-induced T2D mice. T2D-induced reduction in bone mechano-responsiveness is directly associated with the weakened Ca oscillatory dynamics of osteocytes, although not those of osteoblasts, which is dependent on PPARα-mediated specific reduction in osteocytic SERCA2 pump expression. Treatment with the SERCA2 agonist istaroxime was demonstrated to improve T2D bone mechano-responsiveness by rescuing osteocyte Ca dynamics and the associated regulation of osteoblasts and osteoclasts. Moreover, T2D-induced deterioration of bone mechano-responsiveness is blunted in mice with osteocytic SERCA2 overexpression. Collectively, our study provides mechanistic insights into T2D-mediated deterioration of bone mechano-responsiveness and identifies a promising countermeasure against T2D-associated fragility fractures.
2 型糖尿病(T2D)相关脆性骨折是一个日益严峻的医学挑战,目前的治疗选择有限。机械加载对于维持骨骼完整性至关重要,尽管 T2D 中的骨骼机械响应仍未得到充分描述。在此,我们报告称,外源性循环加载诱导的骨结构和强度改善在遗传自发性和实验性 T2D 小鼠中均受到损害。T2D 引起的骨机械响应降低与成骨细胞中 Ca 振荡动力学减弱直接相关,尽管与成骨细胞的 Ca 振荡动力学无关,这依赖于 PPARα 介导的成骨细胞 SERCA2 泵表达的特异性降低。SERCA2 激动剂伊曲可辛的治疗被证明可以通过挽救成骨细胞 Ca 动力学以及相关的成骨细胞和破骨细胞调节来改善 T2D 骨机械响应。此外,在成骨细胞 SERCA2 过表达的小鼠中,T2D 诱导的骨机械响应恶化得到缓解。总的来说,我们的研究为 T2D 介导的骨机械响应降低提供了机制见解,并确定了一种针对 T2D 相关脆性骨折的有前途的对策。