Not All Pericytes Are Born Equal: Pericytes from Human Adult Tissues Present Different Differentiation Properties

Bianca Vezzani1, Enrico Pierantozzi1, Vincenzo Sorrentino1

  • 1Molecular Medicine Section, Department of Molecular and Developmental Medicine, University of Siena , Siena, Italy .

Insights

Pericytes (PCs) are crucial for blood vessel health and tissue repair. Recent research shows these cells possess multipotent mesodermal abilities, with potential for cell therapies in muscular dystrophy.

Area of Science:

  • Cell Biology
  • Regenerative Medicine
  • Vascular Biology

Background:

  • Pericytes (PCs) were historically viewed solely as structural vascular cells.
  • Emerging roles include maintaining perivascular homeostasis via paracrine signaling and endothelial cell interaction.
  • The discovery of mesoangioblasts linked PCs to multipotent mesodermal stem cells.

Purpose of the Study:

  • To review current knowledge on human pericytes.
  • To highlight recent findings on the differentiation potential of pericytes from various adult tissues.
  • To explore the tissue-specific differentiation capacities of pericytes.

Main Methods:

  • Literature review of studies on pericyte biology and differentiation.
  • Analysis of research characterizing pericytic cell populations from different adult tissues.
  • Investigation of pericyte relationships with other perivascular cells and mesenchymal stem cells.

Main Results:

  • Pericytes exhibit multipotent mesodermal differentiation capabilities.
  • Pericytes can cross the vascular wall and contribute to tissue regeneration, notably skeletal muscle.
  • Evidence suggests distinct differentiation abilities among pericytes from different adult tissues, possibly regulated by tissue-specific needs.

Conclusions:

  • Human pericytes possess significant therapeutic potential, particularly for cell-based therapies like muscular dystrophy treatment.
  • The differentiation potential of pericytes appears to be tissue-specific, influenced by local microenvironmental cues.
  • Further characterization of pericyte heterogeneity is essential for harnessing their regenerative capabilities.

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