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Updated: Oct 22, 2025

Murine Dermal Fibroblast Isolation by FACS
Published on: January 7, 2016
Myofibroblasts: Function, Formation, and Scope of Molecular Therapies for Skin Fibrosis
Yifan Tai1, Emma L Woods2,3, Jordanna Dally2,3
1Key Laboratory of Bioactive Materials for the Ministry of Education, College of Life Sciences, Nankai University, Tianjin 300071, China.
Abstract:
Myofibroblasts are contractile, α-smooth muscle actin-positive cells with multiple roles in pathophysiological processes. Myofibroblasts mediate wound contractions, but their persistent presence in tissues is central to driving fibrosis, making them attractive cell targets for the development of therapeutic treatments. However, due to shared cellular markers with several other phenotypes, the specific targeting of myofibroblasts has long presented a scientific and clinical challenge. In recent years, myofibroblasts have drawn much attention among scientific research communities from multiple disciplines and specialisations. As further research uncovers the characterisations of myofibroblast formation, function, and regulation, the realisation of novel interventional routes for myofibroblasts within pathologies has emerged. The research community is approaching the means to finally target these cells, to prevent fibrosis, accelerate scarless wound healing, and attenuate associated disease-processes in clinical settings. This comprehensive review article describes the myofibroblast cell phenotype, their origins, and their diverse physiological and pathological functionality. Special attention has been given to mechanisms and molecular pathways governing myofibroblast differentiation, and updates in molecular interventions.
Insights
Myofibroblasts drive fibrosis and wound healing. Targeting these cells offers new therapeutic strategies for fibrosis and scarless wound healing, overcoming previous challenges in cell identification.
Area of Science:
- Cell Biology
- Pathophysiology
- Therapeutic Development
Background:
- Myofibroblasts are key players in wound healing and fibrosis.
- Targeting myofibroblasts presents challenges due to shared markers with other cell types.
- Recent advances are improving the understanding and targeting of myofibroblasts.
Purpose of the Study:
- To review the phenotype, origins, and functions of myofibroblasts.
- To explore mechanisms governing myofibroblast differentiation.
- To highlight updates in molecular interventions for myofibroblast targeting.
Main Methods:
- Comprehensive literature review.
- Analysis of molecular pathways in myofibroblast differentiation.
- Synthesis of recent research on myofibroblast targeting.
Main Results:
- Myofibroblasts have diverse roles in physiological and pathological processes.
- Understanding myofibroblast differentiation is crucial for therapeutic development.
- Novel interventional routes for myofibroblasts are emerging.
Conclusions:
- Targeting myofibroblasts holds promise for treating fibrotic diseases.
- Accelerating scarless wound healing is a potential clinical application.
- Advances in molecular interventions are paving the way for effective myofibroblast-directed therapies.
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