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Updated: Nov 29, 2025

Assessment of Bone Fracture Healing Using Micro-Computed Tomography
Published on: December 9, 2022
MicroRNAs and fracture healing: Pre-clinical studies
David E Komatsu1, Edie Duque1, Michael Hadjiargyrou2
1Department of Orthopaedics and Rehabilitation, Stony Brook University, United States of America.
Abstract:
During the past several years, pre-clinical experiments have established that microRNAs (miRNAs), small non-coding RNAs, serve as key regulatory molecules of fracture healing. Their easy modulation with agonists and antagonists make them highly desirable targets for future therapeutic strategies, especially for pathophysiologic fractures that either do not heal (nonunions) or are delayed. It is now well documented that these problematic fractures lead to human suffering and impairment of life quality. Additionally, financial difficulties are also encountered as work productivity decreases and income is reduced. Moreover, targeting miRNAs may also be an avenue to enhancing normal physiological fracture healing. Herein we present the most current knowledge of the involvement of miRNAs during fracture healing in pre-clinical studies. Following a brief description on the nature of miRNAs and of the fracture healing process, we present data from studies focusing specifically, on miRNA regulation of osteoblast differentiation and osteogenesis (within the context of known signaling pathways), chondrocytes, angiogenesis, and apoptosis, all critical to successful bone repair. Further, we also discuss miRNAs and exosomes. We hope that this manuscript serves as a comprehensive review that will facilitate basic/translational scientists in the orthopaedic arena to realize and further decipher the biological and future therapeutic impact of these small regulatory RNA molecules, especially as they relate to the molecular events of each of the major phases of fracture healing.
Insights
MicroRNAs (miRNAs) are key regulators of fracture healing. Targeting these small non-coding RNAs offers therapeutic potential for nonunions and enhancing bone repair.
Area of Science:
- Biomedical Science
- Molecular Biology
- Orthopaedic Research
Background:
- MicroRNAs (miRNAs) are small non-coding RNAs regulating gene expression.
- Fracture healing is a complex biological process crucial for bone repair.
- Pathophysiologic fractures, like nonunions, cause significant patient suffering and economic burden.
Purpose of the Study:
- To review current pre-clinical knowledge on miRNA involvement in fracture healing.
- To highlight miRNAs as potential therapeutic targets for delayed or non-healing fractures.
- To explore miRNA roles in osteogenesis, chondrogenesis, angiogenesis, and apoptosis during bone repair.
Main Methods:
- Review of pre-clinical studies on microRNA regulation in fracture healing.
- Analysis of miRNA roles in key cellular and molecular events of bone repair.
- Discussion of miRNAs, exosomes, and their therapeutic implications.
Main Results:
- Pre-clinical data confirm miRNAs as critical regulators of fracture healing.
- miRNAs influence osteoblast differentiation, chondrocytes, angiogenesis, and apoptosis.
- Exosomes are also implicated in miRNA-mediated fracture repair processes.
Conclusions:
- MicroRNAs are pivotal in regulating fracture healing phases.
- Modulating miRNAs presents a promising therapeutic strategy for fracture repair.
- Further research is needed to fully decipher the biological and therapeutic impact of miRNAs in orthopaedics.
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