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PMID: 40645935 已发表 · epublish 英语

Microtopography-induced changes in cell nucleus morphology enhance bone regeneration by modulating the cellular secretome.

Nature communications ·第 16 卷 ·第 1 期 ·2025-07-11

Wang X, Li Y, Lin Z, Pla I, Gajjela R, Mattamana BB, Joshi M, Liu Y, Wang H, Zun AB, Wang H, Wai CM, Agrawal V, Dunton CL, Duan C, Jiang B, Backman V, He TC, Reid RR, Luo Y, Ameer GA

摘要

Nuclear morphology plays a critical role in regulating gene expression and cell functions. While most research has focused on the direct effects of nuclear morphology on cell fate, its impact on the cell secretome and surrounding cells remains largely unexplored. In this study, we fabricate implants with a micropillar topography using methacrylated poly(octamethylene citrate)/hydroxyapatite (mPOC/HA) composites to investigate how micropillar-induced nuclear deformation influences cell secretome for osteogenesis and cranial bone regeneration. In vitro, cells with deformed nuclei show enhanced secretion of proteins that support extracellular matrix (ECM) organization, which promotes osteogenic differentiation in neighboring mesenchymal stromal cells (MSCs). In a female mouse model with critical-size cranial defects, nuclear-deformed MSCs on micropillar mPOC/HA implants elevate Col1a2 expression, contributing to bone matrix formation, and drive cell differentiation toward osteogenic progenitor cells. These findings indicate that micropillars modulate the secretome of hMSCs, thereby influencing the fate of surrounding cells through matricrine effects.

文献信息
期刊
Nature communications
期刊简称
Nat Commun
ISSN
2041-1723
通讯邮箱
发表日期
2025-07-11
语言
英语
国家/地区
England
NLM ID
101528555
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