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◆ Experimental cell research2026-09-18

A nucleus-associated miR-661-C/EBPα-PPARγ regulatory axis skews BMSC lineage commitment in SONFH.

Fei Xie, Zheng Fu, Shanzhong Duan, Yong Zheng, Bo He, Yifan Xu, Xuelun Li, Xinyue Miao, Jian Zhang

原始摘要(英文原文)· Original abstract
Steroid-induced osteonecrosis of the femoral head (SONFH) is characterized by marrow adiposity, trabecular deterioration, and impaired bone repair, but the progenitor-level regulatory mechanisms underlying this process remain incompletely defined. Here, we investigated whether dysregulated bone marrow stromal cell (BMSC) lineage commitment contributes to SONFH progression and identified a nucleus-associated miRNA mechanism that promotes adipogenic skew. Human femoral heads from patients with femoral neck fracture or SONFH showed increased empty osteocytic lacunae, trabecular rarefaction, and Perilipin-1-positive marrow adiposity. Patient-derived SONFH BMSCs displayed enhanced adipogenic potential and impaired osteogenic differentiation, accompanied by increased C/EBPα/PPARγ and reduced RUNX2/OCN expression. Cross-source miRNA prioritization and validation identified miR-661 as an upregulated candidate associated with this lineage imbalance. miR-661 overexpression promoted lipid accumulation, suppressed mineral deposition, and activated a pro-adipogenic transcriptional program. Mechanistically, miR-661 showed nuclear enrichment and did not induce a detectable change in β-catenin expression or nuclear localization, directing our focus to the C/EBPα-PPARγ axis. ChIP-qPCR, promoter DNA pull-down, dual-luciferase reporter assays, and C/EBPα RIP-qPCR showed that miR-661 was associated with increased C/EBPα occupancy at the PPARG promoter. Importantly, C/EBPα knockdown attenuated miR-661-induced PPARG, FABP4, and adipogenic activation, whereas C/EBPα rescue restored these effects. Nuclear AGO2-RIP-qPCR further demonstrated enrichment of miR-661 in nuclear AGO2-containing complexes, and AGO2 ChIP-qPCR showed miR-661-dependent AGO2 occupancy at the PPARG promoter, which was reduced by miR-661 inhibition and lost with a seed-mutant miR-661 mimic. In vivo, local antagomiR-661 delivery alleviated steroid-induced osteonecrosis-like bone loss and marrow adiposity. These findings identify miR-661 as a nuclear, AGO2-associated regulator of the C/EBPα-PPARγ axis that drives BMSC adipogenic lineage bias in SONFH.
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A nucleus-associated miR-661-C/EBPα-PPARγ regulatory axis skews BMSC lineage commitment in SONFH. — 科研速览 Science Skim