New insights into the roles of myofibroblasts and innervation during skin healing and innovative therapies to improve scar innervation

Exp Dermatol. 2018 Sep;27(9):950-958. doi: 10.1111/exd.13681. Epub 2018 Jun 28.

Abstract

During the resolution phase of normal skin wound healing, there is a considerable loss of various cell types, including myofibroblasts by apoptosis. Inappropriate delay of apoptosis, and thus increased survival of myofibroblasts, may be a factor leading to pathologies and excessive scarring. Considerable data now clearly suggest that innervation plays a major role in wound healing, including the modulation of fibroblast cellular activity. An abnormal level of neuromediators is implicated not only in the development of chronic wounds but also in excessive scar formation. Understanding interactions between neuromediators and myofibroblasts, allowing normal reinnervation and having adequate levels of neuromediators during the healing process are clearly important to avoid the appearance of pathological healing or fibrosis/scarring. The aim of this review was first to discuss the mechanisms leading to normal or excessive scarring and then to present the roles of innervation during wound healing. Finally, the latest therapeutic strategies to help wound repair and reinnervation after skin damage will be introduced. Advantages and limitations in the use of neuropeptides, growth factors and biomaterials will be discussed as well as the most recent studies on electrostimulation and the potential of targeting resident skin mesenchymal stem cells.

Keywords: innervation; myofibroblast; pathological scarring; skin repair; skin-derived precursor.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Animals
  • Biocompatible Materials / therapeutic use
  • Cicatrix / metabolism*
  • Cicatrix / pathology
  • Cicatrix / prevention & control*
  • Electric Stimulation Therapy
  • Extracellular Matrix / drug effects
  • Extracellular Matrix / metabolism
  • Humans
  • Mesenchymal Stem Cell Transplantation
  • Myofibroblasts / physiology*
  • Neuropeptides / metabolism*
  • Neuropeptides / therapeutic use
  • Skin / innervation*
  • Skin / metabolism
  • Wound Healing*

Substances

  • Biocompatible Materials
  • Neuropeptides