Zhang Weijun, Bai Jinwu, Li Lijun, Zhang Ye, Hang Kai, Wang Yibo, Wang Zhongxiang, Ye Chenyi, Xue Deting
Department of Orthopedic Surgery, the Second Affiliated Hospital, Zhejiang University School of Medicine, Zhejiang Province, Hangzhou City, People's Republic of China.
Orthopedics Research Institute of Zhejiang University, Zhejiang Province, Hangzhou City, People's Republic of China.
Stem Cell Rev Rep. 2023 May;19(4):968-982. doi: 10.1007/s12015-022-10503-z. Epub 2023 Jan 7.
Epidermal growth factor-like domain protein 7 (EGFL7) is a secreted protein that is differentially expressed in the bone microenvironment; however, the effect of EGFL7 on the osteogenesis of human bone marrow mesenchymal stem cells (hBMSCs) is largely unknown.
EGFL7 expression in the fracture microenvironment was analyzed based on the Gene Expression Omnibus (GEO) database. Knockdown of EGFL7 by small interfering RNA (siRNA) and in vitro stimulation with recombinant human EGFL7 (rhEGFL7) protein were used to assess alterations in downstream signaling and changes in the osteogenic differentiation and proliferation of hBMSCs. A γ-secretase inhibitor was used to further explore whether inhibition of Notch signaling rescued the osteogenic-inhibitory effect of EGFL7 knockdown in hBMSCs. A femoral defect model was established to verify the effect of recombinant mouse EGFL7 on bone healing in vivo.
EGFL7 expression increased during hBMSC osteogenesis. Knockdown of EGFL7 impaired hBMSC osteogenesis and activated Notch1/NICD/Hes1 signaling. rhEGFL7 promoted hBMSC osteogenesis and downregulated Notch1 signaling. The osteoblast-inhibitory effect of EGFL7 knockdown was rescued by Notch1 signaling inhibition. Recombinant EGFL7 led to enhanced bone healing in mice with femoral defects.
EGFL7 promotes osteogenesis of hBMSCs partly via downregulation of Notch1 signaling.
表皮生长因子样结构域蛋白7(EGFL7)是一种分泌蛋白,在骨微环境中差异表达;然而,EGFL7对人骨髓间充质干细胞(hBMSCs)成骨作用的影响尚不清楚。
基于基因表达综合数据库(GEO)分析骨折微环境中EGFL7的表达。利用小干扰RNA(siRNA)敲低EGFL7以及用重组人EGFL7(rhEGFL7)蛋白进行体外刺激,以评估下游信号的改变以及hBMSCs成骨分化和增殖的变化。使用γ-分泌酶抑制剂进一步探究Notch信号通路的抑制是否能挽救EGFL7敲低对hBMSCs成骨抑制的影响。建立股骨缺损模型以验证重组小鼠EGFL7对体内骨愈合的作用。
hBMSCs成骨过程中EGFL7表达增加。敲低EGFL7会损害hBMSCs的成骨作用并激活Notch1/NICD/Hes1信号通路。rhEGFL7促进hBMSCs成骨并下调Notch1信号通路。抑制Notch1信号通路可挽救EGFL7敲低对成骨细胞的抑制作用。重组EGFL7可促进股骨缺损小鼠的骨愈合。
EGFL7部分通过下调Notch1信号通路促进hBMSCs成骨。