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◆ International Journal of Biological Sciences2025-12-06· Histone

Decoding Epigenetic Switches: How Histone Acetylation/Deacetylation Regulates Mononuclear/Macrophage Fate in Bone Disorders

Xu Li, Chen Shen, Xin Liu, Yi Qin, Zebin Wu, Ziyu Zhang, Qifeng Sheng, Q. Wang, Feng Zhou, Gaoran Ge, Dechun Geng

原始摘要(英文原文)· Original abstract
Monocyte-macrophage plays a central role in innate immunity, tissue homeostasis maintenance, and disease progression. These phagocytes, which originate from blood monocytes or embryonic sources, are imperative for inflammatory responses, tissue repair, and bone remodeling. In orthopedic diseases, including osteoarthritis, rheumatoid arthritis, osteoporosis, and fractures, changes in histone acetylation are key to regulating macrophage gene expression, polarization, differentiation into osteoclasts, and pathological bone remodeling. Histone acetylation (mediated by histone acetylases) and deacetylation (mediated by histone deacetylases) directly influence important transcription factors in the monocyte-macrophage system by dynamically modulating chromatin accessibility. This review systematically examines the epigenetic network involving histone acetylation and deacetylation monocyte-macrophage, exploring its translational potential in bone-related diseases.
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Decoding Epigenetic Switches: How Histone Acetylation/Deacetylation Regulates Mononuclear/Macrophage Fate in Bone Disorders — 科研速览 Science Skim