血管生成
间充质干细胞
骨愈合
细胞生物学
干细胞
神经发生
归巢(生物学)
透明质酸
化学
材料科学
癌症研究
生物
解剖
生态学
作者
Yanhai Xi,Zhen Zhang,Zixuan Zhao,Bo Qiu,Weiheng Wang,Guohua Xu,Z. Sun,Feng Shi,Wenkui Liang,Jun Wu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-06-18
卷期号:19 (25): 22710-22724
被引量:18
标识
DOI:10.1021/acsnano.4c10386
摘要
studies revealed that the hydrogel successfully promoted both neurogenesis, angiogenesis, and new bone formation. It also facilitated osteogenesis through the ERK1/2-dependent RUNX2 signaling pathway. Our results suggest that this hydrogel platform exerts a robust multisystemic regulatory effect, fostering rat bone repair through the synergistic promotion of in situ stem cell recruitment, angiogenesis, neurogenesis, and osteogenesis. As a simple-to-prepare and multifunctional integrated bone graft, this hydrogel platform holds a significant promise in establishing a conducive microenvironment for optimal bone healing.
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