内分泌学
内科学
成骨细胞
皮质骨
糖酵解
骨重建
胰岛素
1型糖尿病
骨质疏松症
糖尿病
骨吸收
过剩1
葡萄糖摄取
化学
医学
新陈代谢
病理
生物化学
体外
作者
Xing Ji,Rebecca Seeley,Ke Li,Frank M. Song,Xueyang Liao,Chao Song,Marco Angelozzi,Arianna Valeri,Tyler Marmo,Wen‐Chih Lee,Yu Shi,Fanxin Long
标识
DOI:10.1016/j.chembiol.2023.07.003
摘要
Type I diabetes (T1D) impairs bone accrual in patients, but the mechanism is unclear. Here in a murine monogenic model for T1D, we demonstrate that diabetes suppresses bone formation resulting in a rapid loss of both cortical and trabecular bone. Single-cell RNA sequencing uncovers metabolic dysregulation in bone marrow osteogenic cells of diabetic mice. In vivo stable isotope tracing reveals impaired glycolysis in diabetic bone that is highly responsive to insulin stimulation. Remarkably, deletion of the insulin receptor reduces cortical but not trabecular bone. Increasing glucose uptake by overexpressing Glut1 in osteoblasts exacerbates bone defects in T1D mice. Conversely, activation of glycolysis by Pfkfb3 overexpression preserves both trabecular and cortical bone mass in the face of diabetes. The study identifies defective glucose metabolism in osteoblasts as a pathogenic mechanism for osteopenia in T1D, and furthermore implicates boosting osteoblast glycolysis as a potential bone anabolic therapy.
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