生物
骨不连
骨愈合
调节器
基因表达谱
转录调控
老茧
细胞生物学
基因表达
基因
解剖
遗传学
作者
Federico La Manna,Daniel Hanhart,Peter Kloen,André J. van Wijnen,George N. Thalmann,Marianna Kruithof‐de Julio,Panagiotis Chouvardas
出处
期刊:Gene
[Elsevier]
日期:2023-05-12
卷期号:874: 147481-147481
被引量:3
标识
DOI:10.1016/j.gene.2023.147481
摘要
Despite the advances in bone fracture treatment, a significant fraction of fracture patients will develop non-union. Most non-unions are treated with surgery since identifying the molecular causes of these defects is exceptionally challenging. In this study, compared with marrow bone, we generated a transcriptional atlas of human osteoprogenitor cells derived from healing callus and non-union fractures. Detailed comparison among the three conditions revealed a substantial similarity of callus and nonunion at the gene expression level. Nevertheless, when assayed functionally, they showed different osteogenic potential. Utilizing longitudinal transcriptional profiling of the osteoprogenitor cells, we identified FOS as a putative master regulator of non-union fractures. We validated FOS activity by profiling a validation cohort of 31 tissue samples. Our work identified new molecular targets for non-union classification and treatment while providing a valuable resource to better understand human bone healing biology.
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