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April 11, 2026Science7 citations

Hyaluronic acid and tissue mechanics orchestrate mammalian digit tip regeneration

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BMByron W. H. MuiNational Institutes of HealthJWJgws WongWellcome/MRC Cambridge Stem Cell InstituteCDCamille E. Dumas

Key Points

  • The central aim is to understand how the microenvironment influences regeneration outcomes in mammalian digit tips after amputation.
  • Compared mechanical properties and ECM composition between regenerative and nonregenerative regions in mouse digits.
  • Analyzed the role of hyaluronic acid (HA) in tissue mechanics and regeneration.
  • Used hyaluronan and proteoglycan link protein 1 (HAPLN1) to stabilize HA after amputation.
  • Found that regenerative tissue was softer with higher HA content compared to stiffer nonregenerative regions.
  • Depleting HA resulted in inhibited regeneration and increased fibrosis.
  • Stabilization of HA after nonregenerative amputations improved ECM mechanics, reduced scarring, and enhanced bone repair.

Abstract

Tissue regeneration is rare in mammals, but the digit tip can regrow after amputation, whereas injuries beyond the nail do not. How the microenvironment drives divergent outcomes remains unclear. In this study, we found that the extracellular matrix (ECM) and tissue mechanics govern the amputation response in mouse digits. Nonregenerative regions were stiffer and contained dense, organized collagen, whereas regenerative regions were soft and enriched in hyaluronic acid (HA). Depleting HA inhibited regeneration and promoted fibrosis, demonstrating that the HA-collagen balance shaped tissue mechanics and repair signaling. Stabilization of HA with hyaluronan and proteoglycan link protein 1 (HAPLN1) after nonregenerative amputations tuned ECM mechanics, reduced scarring, and enhanced bone repair. Thus, ECM composition and mechanics influence cell behavior and ECM-targeted strategies could help unlock mammalian regeneration.

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Cite This Study

Mui et al. (2026) studied this question.

synapsesocial.com/papers/69d9e47378050d08c1b74fd3https://doi.org/10.1126/science.ady3136
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