Almond Mushroom, ABM · 2024 · Research Article
Medium relevanceA computational model reveals an early transient decrease in fiber cross-linking that unlocks adult regeneration.
Agaricus blazei
Key points
- The decline in regeneration efficiency after birth in mammals is a significant roadblock for regenerative medicine in tissue repair
- We previously developed a computational agent based-model (ABM) that recapitulates mechanical interactions between cells and the extracellular-matrix (ECM), to investigate key drivers of tissue repair in adults
- Time calibration alongside a parameter sensitivity analysis of the model suggested that an early and transient decrease in ECM cross-linking guides tissue repair toward regeneration
- Consistent with the computational model, transient inhibition or stimulation of fiber cross-linking for the first six days after subcutaneous adipose tissue (AT) resection in adult mice led to regenerative or scar healing, respectively
- Therefore, this work positions the computational model as a predictive tool for tissue regeneration that with further development will behave as a digital twin of our in vivo model
- In addition, it opens new therapeutic approaches targeting ECM cross-linking to induce tissue regeneration in adult mammals
Metadata-grounded summary
Citation abstract
The decline in regeneration efficiency after birth in mammals is a significant roadblock for regenerative medicine in tissue repair. We previously developed a computational agent based-model (ABM) that recapitulates mechanical interactions between cells and the extracellular-matrix (ECM), to investigate key drivers of tissue repair in adults. Time calibration alongside a parameter sensitivity analysis of the model suggested that an early and transient decrease in ECM cross-linking guides tissue repair toward regeneration. Consistent with the computational model, transient inhibition or stimulation of fiber cross-linking for the first six days after subcutaneous adipose tissue (AT) resection in adult mice led to regenerative or scar healing, respectively. Therefore, this work positions the computational model as a predictive tool for tissue regeneration that with further development will behave as a digital twin of our in vivo model. In addition, it opens new therapeutic approaches targeting ECM cross-linking to induce tissue regeneration in adult mammals.
Citation
Pacary A, Peurichard D, Vaysse L, Monsarrat P, Bolut C, Girel A, et al. (2024). A computational model reveals an early transient decrease in fiber cross-linking that unlocks adult regeneration. NPJ Regenerative medicine https://doi.org/10.1038/s41536-024-00373-z PMID: 39406754
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