A synthetic mechano-growth factor E peptide promotes rat tenocyte migration by lessening cell stiffness and increasing F-actin formation via the FAK-ERK1/2 signaling pathway

Exp Cell Res. 2014 Mar 10;322(1):208-16. doi: 10.1016/j.yexcr.2014.01.005. Epub 2014 Jan 13.

Abstract

Tendon injuries are common in sports and are frequent reasons for orthopedic consultations. The management of damaged tendons is one of the most challenging problems in orthopedics. Mechano-growth factor (MGF), a recently discovered growth repair factor, plays positive roles in tissue repair through the improvement of cell proliferation and migration and the protection of cells against injury-induced apoptosis. However, it remains unclear whether MGF has the potential to accelerate tendon repair. We used a scratch wound assay in this study to demonstrate that MGF-C25E (a synthetic mechano-growth factor E peptide) promotes the migration of rat tenocytes and that this promotion is accompanied by an elevation in the expression of the following signaling molecules: focal adhesion kinase (FAK) and extracellular signal regulated kinase1/2 (ERK1/2). Inhibitors of the FAK and ERK1/2 pathways inhibited the MGF-C25E-induced tenocyte migration, indicating that MGF-C25E promotes tenocyte migration through the FAK-ERK1/2 signaling pathway. The analysis of the mechanical properties showed that the Young's modulus of tenocytes was decreased through treatment of MGF-C25E, and an obvious formation of pseudopodia and F-actin was observed in MGF-C25E-treated tenocytes. The inhibition of the FAK or ERK1/2 signals restored the decrease in Young's modulus and inhibited the formation of pseudopodia and F-actin. Overall, our study demonstrated that MGF-C25E promotes rat tenocyte migration by lessening cell stiffness and increasing pseudopodia formation via the FAK-ERK1/2 signaling pathway.

Keywords: Cytoskeleton; Extracellular signal regulated kinase1/2; Focal adhesion kinase; Mechano-growth factor; Migration; Tenocyte.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Achilles Tendon / cytology*
  • Achilles Tendon / drug effects
  • Achilles Tendon / physiology
  • Actins / metabolism*
  • Animals
  • Cell Adhesion / drug effects
  • Cell Movement / drug effects*
  • Cell Shape / drug effects
  • Cells, Cultured
  • Focal Adhesion Kinase 1 / metabolism*
  • Insulin-Like Growth Factor I / chemistry
  • Insulin-Like Growth Factor I / pharmacology*
  • MAP Kinase Signaling System / drug effects
  • Male
  • Peptide Fragments / pharmacology*
  • Rats
  • Rats, Sprague-Dawley

Substances

  • Actins
  • Peptide Fragments
  • mechano-growth factor, rat
  • Insulin-Like Growth Factor I
  • Focal Adhesion Kinase 1
  • Ptk2 protein, rat