重编程
破骨细胞
脚手架
细胞生物学
生物
干细胞
神经科学
干细胞巢
再生(生物学)
机械转化
祖细胞
间充质干细胞
再生医学
炎症
信号转导
骨形态发生蛋白
生物信息学
骨重建
成骨细胞
癌症研究
细胞
骨形成
利基
计算生物学
医学
作者
Hongyu Quan,Yuwei He,Pengcheng Xiao,Zhenglin Zhu,Xiuteng Zhou,Zhong Li,Yiting Lei,Hong Jiang,Wei Huang
出处
期刊:Research
[American Association for the Advancement of Science]
日期:2025-01-01
卷期号:8: 1027-1027
被引量:2
标识
DOI:10.34133/research.1027
摘要
Osteonecrosis of the femoral head (ONFH) is a progressive and disabling condition characterized by bone microenvironmental dysregulation, including imbalanced bone remodeling, impaired angiogenesis, and dysregulated osteoimmunity. In hip-preserving surgeries for early-stage ONFH, the most common approach is core decompression with grafting. Although widely used synthetic scaffolds, such as ceramics and metals, provide structural support or partially improve blood supply, they cannot counteract the complex pathological microenvironment of ONFH, resulting in poor long-term efficacy. To address these limitations, bioactive scaffolds incorporating functional agents have been developed to modulate pathological abnormalities and improve regenerative outcomes. This review summarizes recent advances in bioactive scaffolds for ONFH, focusing on systems functionalized with small molecules, growth factors, stem cells, exosomes, and metal ions that regulate cellular behaviors and signaling pathways in ONFH microenvironment. Emerging evidence indicates that osteoclasts exhibit heterogeneity, influencing resorptive, angiogenic, osteogenic, and immunoregulatory processes. Building on these insights, we discuss osteoclast heterogeneity and its potential relevance to ONFH, proposing that future scaffold strategies may harness osteoclast-mediated regulation to restore the osteonecrotic niche. By integrating mechanistic insights with material design, bioactive scaffolds provide a framework for targeted microenvironmental modulation and functional bone regeneration in ONFH.
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