Related Experiment Video
Updated: Aug 6, 2026

Direct Reprogramming of Human Fibroblasts into Myoblasts to Investigate Therapies for Neuromuscular Disorders
Published on: April 3, 2021
Myofibroblasts slow down defect recombination dynamics in mixed cell monolayers
Zhaofei Zheng1,2, Yuxin Luo1, Juan Chen1,3
1Department of Mechanical Engineering, Yale University , New Haven, CT, USA.
Myofibroblasts disrupt cellular ordering in co-cultured monolayers, slowing defect relaxation and altering alignment. Their preferential localization at specific topological defects increases friction, impacting tissue morphogenesis and fibrosis progression.
Area of Science:
- Cell Biology
- Biophysics
- Tissue Engineering
Background:
- Cellular organization and mechanotransduction are vital for tissue development, with dysregulation linked to diseases like fibrosis.
- Overactive myofibroblasts drive fibrosis, but their effect on collective cell ordering is not well understood.
- Topological defects in cell alignment may act as mechanical centers, influencing tissue behavior.
Purpose of the Study:
- To investigate how myofibroblasts influence defect dynamics and cellular ordering in co-cultured fibroblast-myofibroblast monolayers.
- To explore the role of cell-cell interactions and substrate topography in modulating cellular organization.
- To understand the relationship between myofibroblast presence, topological defects, and mechanical stress.
Main Methods:
- Co-culture of fibroblasts and myofibroblasts in monolayers.
- Analysis of cellular ordering and topological defect dynamics.
- Experiments on both flat and microgrooved surfaces.
- Immunofluorescence staining to assess mechanotransduction pathways.
Main Results:
- Increasing myofibroblast fraction enhanced disorder and slowed defect recombination.
- Higher myofibroblast concentrations reduced alignment on microgrooved surfaces, indicating combined mechanosensing and cell-cell interactions.
- Myofibroblasts preferentially localized at -1/2 defects, while fibroblasts localized at +1/2 defects.
- Myofibroblast localization at -1/2 defects increased local friction, impeding defect mobility and contributing to slowed dynamics.
Conclusions:
- Myofibroblasts significantly alter collective cell ordering and dynamics in mixed monolayers.
- Preferential localization of myofibroblasts at specific topological defects is a key mechanism affecting defect mobility and tissue mechanics.
- Findings provide insights into the interplay between cell phenotype, topological defects, and mechanotransduction in tissue morphogenesis and fibrosis.
Related Concept Videos
Cell Motility through Blebbing
Blebbing Through the Matrix
In multicellular...
Introduction to Fibroblasts
DNA Damage can Stall the Cell Cycle
Replicative Cell Senescence
Actin Filament Depolymerization
In F-actin, the ADF/cofilin proteins...

