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M1 polarization accelerated bone aging through inflammatory signaling transduction regulated by cells crosstalk.

Jul 2026 · International Immunopharmacology · Vol 186, pp. 117114 · 0 citations · 75 references
Medicine

Abstract

Aging induced chronic inflammation deteriorated bone loss in elderly population. This study aimed to investigate the underling mechanism of bone-immune crosstalk with aging. In clinical, we identified novel inflammatory markers as predictors for osteoporosis in old people, indicating a close relationship between immune system and bone strength. In animal study, more pro-inflammatory macrophages (M1) was identified in aged bone, suggesting a possible mechanism sheered by the altered bone-inmmune interplay. Transcriptomic analyses on senescent bone marrow mesenchymal stem cells (MSCs) suggested that immune signaling and osteoclasts differentiation were involved in MSCs aging. Moreover, single-cell sequencing data analyses (GSE145477) screened 4 co-deferentially expressed genes in this bone-immune system with aging. They were TREM2, TYROBP (encodes DAP12), SYK, and PIK3CD. Then, we established cells co-culture system and verified the age-reduced TREM2 accompanied with DAP12-SYK inactivation, leading to more M1 polarization. Conditioned medium experiments results were consistent with these changes. Pharmacological activation of TREM2-DAP12-SYK axis by a small molecule compound, ADAM10 inhibitor, recovered the macrophages aging and decreased their pro-inflammatory polarization. Therefore, we speculated that the increased M1 polarization by aging-reduced TREM2-DAP12-SYK signaling might be responsible for inflammatory micro-environment in bone tissue. Together, this study elaborated the bone-immune crosstalk with aging through the inflammatory signaling alteration and provided new treatment targets for senile osteoporosis.

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