Atorvastatin modulates the profile of proteins released by human atherosclerotic plaques

M Carmen Durán1, Jose L Martín-Ventura, Shabaz Mohammed

  • 1Department of Immunology, Fundación Jiménez Díaz, Autónoma University, Madrid, Spain.

Insights

Statins, a class of cholesterol-lowering drugs, can alter the protein secretions of atherosclerotic plaques. This study identified specific proteins, including Cathepsin D, modulated by atorvastatin, suggesting new therapeutic targets for atherosclerosis.

Area of Science:

  • Proteomics
  • Cardiovascular Research
  • Drug Discovery

Background:

  • The precise mechanisms by which statins reduce cardiovascular events are not fully understood.
  • Statins are known to influence inflammatory protein levels in atherosclerosis patients.
  • It remains unclear if statins affect proteins secreted by atherosclerotic plaques.

Purpose of the Study:

  • To investigate whether statins modulate the secretomes of cultured atherosclerotic plaques.
  • To identify specific proteins released by plaques that are affected by atorvastatin.
  • To explore potential new therapeutic targets for statin-based treatments.

Main Methods:

  • Secretomes from atherosclerotic plaques incubated with and without atorvastatin were analyzed.
  • Two-dimensional electrophoresis and Mass Spectrometry (MS) were used for protein identification.
  • Plaque samples from patients treated with and without atorvastatin prior to surgery were compared.

Main Results:

  • 54 proteins (83 isoforms) were identified; 24 increased and 20 decreased in plaque supernatants.
  • Cathepsin D was identified as a key protein potentially involved in plaque instability.
  • 66% of differentially released proteins returned to normal levels after atorvastatin treatment.
  • Plaques from atorvastatin-treated patients showed reduced Cathepsin D expression.

Conclusions:

  • Statins can modulate the protein secretome of atherosclerotic plaques.
  • Cathepsin D is a potential therapeutic target for statin intervention in atherosclerosis.
  • This proteomic study reveals new insights into statin mechanisms and identifies novel therapeutic targets.

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