Molecular profiling of osteoprogenitor cells reveals FOS as a master regulator of bone non-union
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2024-01-09
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Profiling microRNA expression in murine bone healing and nonunion formation: Role of miR-140 during the early stage of bone healing. Profiling microRNA expression in murine bone healing and nonunion formation: Role of miR-140 during the early stage of bone healing
Although cellular and molecular mechanisms during the course of bone healing have been thoroughly investigated, the regulation of gene expression by microRNA during bone regeneration is still poorly u
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Molecular profiling of osteoprogenitor cells reveals FOS as a master regulator of bone non-union [tissue]
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
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miRNA expression data from callus in standard fracture healing models and from fibrous tissues in nonunion models in rats on post-fracture day 14. Rattus norvegicus
Profiling of miRNA expressions comparing standard fracture healing models with nonunion models in rats Overall design: 12w, male, Sprague–Dawley rats were used in this study. Animals were randomized t
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Transcriptome sequencing analysis of lncRNA and mRNA expression profiles in bone nonunion
Background: Bone nonunion is a serious complication of fracture. This study explored the differentially expressed lncRNAs (DELs) and mRNAs (DEGs) and identified potential lncRNA-mRNA interactions in b
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Molecular profiling of osteoprogenitor cells reveals FOS as a master regulator of bone non-union [tissue]. Molecular profiling of osteoprogenitor cells reveals FOS as a master regulator of bone non-union [tissue]
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
NIAID Data Ecosystem20



