Imbalance of the Vanin-1 Pathway in Systemic Sclerosis

Niloufar Kavian1, Souad Mehlal2, Wioleta Marut2

  • 1Université Paris Descartes, Sorbonne Paris-Cité, Faculté de Médecine, Institut Cochin INSERM U1016 et Laboratoire d'Immunologie Biologique, Assistance Publique Hôpitaux de Paris Hôpital Cochin, 75679 Paris Cedex 14, France; niloufar.kavian@cch.aphp.fr.

Insights

Systemic sclerosis (SSc) involves the vanin-1/pantetheinase pathway, which drives fibrosis and autoimmunity. Inhibiting vanin-1 may offer new SSc therapies.

Area of Science:

  • Biochemistry
  • Immunology
  • Pathophysiology

Background:

  • Systemic sclerosis (SSc) is an autoimmune disease marked by fibrosis and vascular issues.
  • SSc pathophysiology involves systemic inflammation and oxidative stress.
  • The vanin-1 gene (vnn1) encodes an enzyme converting pantethine to pantothenic acid and cystamine, impacting fibrosis and oxidation.

Purpose of the Study:

  • To investigate the vanin-1/pantetheinase pathway in SSc pathophysiology.
  • To evaluate the therapeutic potential of vnn1 inactivation in SSc models.
  • To explore the pathway's role in human SSc patients.

Main Methods:

  • ELISA and Western blotting to assess vanin-1/pantetheinase pathway activation in mice.
  • Evaluation of vnn1 inactivation effects on fibrosis and immune responses in HOCl- and bleomycin-induced SSc models.
  • Analysis of vanin-1/pantetheinase pathway in SSc patients and controls.

Main Results:

  • Dysregulated vanin-1/pantetheinase pathway observed in HOCl-induced SSc mice with elevated skin vanin-1 activity and serum pantothenic acid.
  • vnn1 inactivation in mice prevented SSc features like fibrosis, immune abnormalities, and endothelial dysfunction.
  • SSc patients showed increased vanin-1 expression and serum pantothenic acid, correlating with disease severity.

Conclusions:

  • The vanin-1/pantetheinase pathway is a key regulator of fibrosis, vasculopathy, autoimmunity, and oxidative stress in SSc.
  • Vanin-1 expression and pantothenic acid levels serve as potential biomarkers for SSc severity.
  • Targeting vanin-1 presents a promising therapeutic strategy for SSc.

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