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Updated: Aug 5, 2026

Murine Hind Limb Long Bone Dissection and Bone Marrow Isolation
Published on: April 14, 2016
Metabolic checkpoints in bone remodeling: from dysregulation to targeted therapies
Xuequan Zhao1, Xixi Han2, Baoguo Wang2
1Department of Orthopedics, Cangzhou Clinical College of Integrated Traditional Chinese and Western Medicine of Hebei Medical University (Hebei Key Laboratory of Integrated Traditional and Western Medicine in Osteoarthrosis Research), Cangzhou, China; Department of Graduate School, Nanjing University of Chinese Medicine, Nanjing, China.
None:
Bone remodeling depends on a tightly regulated metabolic crosstalk between osteoblasts and osteoclasts. The article advances a hypothesis‑driven framework that positions discrete metabolic checkpoints ‒ glycolytic flux, mitochondrial Oxidative Phosphorylation (OXPHOS), amino‑acid utilization, and ion‑channel-coupled calcium signaling ‒ as tractable levers for restoring formation-resorption balance. The authors explicitly examine metabolic heterogeneity within and across osteolineages and disease contexts, integrate immune-metabolic coupling that links TCA‑cycle intermediates to RANKL/OPG regulation, and synthesize evidence on the efficacy and trade‑offs of current and emerging therapies (e.g., sclerostin/Wnt restoration, RANKL blockade, HIF‑1α modulation, and calcium‑channel targeting). To avoid over‑interpretation, clinical statements are constrained to the strength of available evidence; preclinical findings are labeled accordingly. The authors further propose a pragmatic framework for precision modulation ‒ rather than blanket inhibition ‒ of metabolic pathways to minimize off‑target toxicity and enable context‑dependent benefit. This consolidated view reframes metabolic dysfunction as a driver of skeletal pathology and a blueprint for targeted interventions.
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