Complement C3 is expressed by mast cells in cutaneous vasculitis and is degraded by chymase

Tiina Lipitsä1, Anita Naukkarinen2, Joel Laitala1,3

  • 1Department of Dermatology, Kuopio University Hospital, University of Eastern Finland, P.O. Box 100, 70029, Kuopio, Finland.

Insights

Mast cells in skin express complement factor C3, a key protein in inflammation. Chymase, released by mast cells, degrades C3 and its active form C3a, potentially controlling C3-related inflammation in vasculitis.

Area of Science:

  • Immunology
  • Dermatology
  • Complement System

Background:

  • Mast cells, particularly tryptase(+) and chymase(+) types, are implicated in cutaneous leukocytoclastic vasculitis pathogenesis.
  • The roles of complement factor C3 and mast cell-derived chymase in this condition require further elucidation.

Purpose of the Study:

  • To investigate the presence of C3 within mast cells in vasculitis biopsies.
  • To determine the interaction between mast cell chymase and C3.
  • To explore the functional consequences of this interaction on mast cell mediators.

Main Methods:

  • Double immunohistochemical staining of vasculitis biopsy cryosections for C3c and mast cell markers (tryptase, chymase).
  • In vitro treatment of cryosections and purified C3/C3a/IgG with recombinant human chymase (rh-chymase), followed by immunofluorescence and SDS-PAGE analysis.
  • Assessment of tryptase and histamine release from LAD2 mast cells upon rh-chymase treatment of C3.

Main Results:

  • C3c immunoreactivity was observed in mast cells in healthy skin and vasculitis lesions (IP and PP), increasing with lesion severity.
  • A subset of chymase(+) mast cells showed proximity to C3c(+) vessels.
  • Rh-chymase treatment degraded C3 and C3a but not immunoglobulins or IgG.
  • Degradation of C3 by rh-chymase led to tryptase and histamine release, while rh-chymase degraded C3a, inhibiting its activity.

Conclusions:

  • Mast cells serve as a source of C3 during both early and late stages of vasculitis.
  • Rh-chymase degrades native C3, vessel-associated C3c, and biologically active C3a.
  • Chymase activity may regulate C3-dependent pathological processes in vasculitis.

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