Fibroblasts' secretome from calcified and non-calcified dermis in Pseudoxanthoma elasticum differently contributes to elastin calcification

Commun Biol. 2024 May 16;7(1):577. doi: 10.1038/s42003-024-06283-6.

Abstract

Pseudoxanthoma elasticum (PXE) is a rare disease characterized by ectopic calcification, however, despite the widely spread effect of pro/anti-calcifying systemic factors associated with this genetic metabolic condition, it is not known why elastic fibers in the same patient are mainly fragmented or highly mineralized in clinically unaffected (CUS) and affected (CAS) skin, respectively. Cellular morphology and secretome are investigated in vitro in CUS and CAS fibroblasts. Here we show that, compared to CUS, CAS fibroblasts exhibit: a) differently distributed and organized focal adhesions and stress fibers; b) modified cell-matrix interactions (i.e., collagen gel retraction); c) imbalance between matrix metalloproteinases and tissue inhibitor of metalloproteinases; d) differentially expressed pro- and anti-calcifying proteoglycans and elastic-fibers associated glycoproteins. These data emphasize that in the development of pathologic mineral deposition fibroblasts play an active role altering the stability of elastic fibers and of the extracellular matrix milieu creating a local microenvironment guiding the level of matrix remodeling at an extent that may lead to degradation (in CUS) or to degradation and calcification (in CAS) of the elastic component. In conclusion, this study contributes to a better understanding of the mechanisms of the mineral deposition that can be also associated with several inherited or age-related diseases (e.g., diabetes, atherosclerosis, chronic kidney diseases).

MeSH terms

  • Adult
  • Calcinosis* / metabolism
  • Calcinosis* / pathology
  • Cells, Cultured
  • Dermis / metabolism
  • Dermis / pathology
  • Elastic Tissue / metabolism
  • Elastic Tissue / pathology
  • Elastin* / metabolism
  • Extracellular Matrix / metabolism
  • Female
  • Fibroblasts* / metabolism
  • Fibroblasts* / pathology
  • Humans
  • Male
  • Middle Aged
  • Pseudoxanthoma Elasticum* / genetics
  • Pseudoxanthoma Elasticum* / metabolism
  • Pseudoxanthoma Elasticum* / pathology