Inhibition of alkaline phosphatase impairs dyslipidemia and protects mice from atherosclerosis

Publikation: Beitrag in FachzeitschriftForschungsartikelBeigetragenBegutachtung

Beitragende

  • Laurence Bessueille - , Universite Claude Bernard Lyon 1 (Autor:in)
  • Lynn Kawtharany - , Universite Claude Bernard Lyon 1 (Autor:in)
  • Thibaut Quillard - , Université de Nantes (Autor:in)
  • Claudia Goettsch - , Rheinisch-Westfälische Technische Hochschule Aachen (Autor:in)
  • Anne Briolay - , Universite Claude Bernard Lyon 1 (Autor:in)
  • Nirina Taraconat - , Université de Toulouse (Autor:in)
  • Stéphane Balayssac - , Université de Toulouse (Autor:in)
  • Véronique Gilard - , Université de Toulouse (Autor:in)
  • Saida Mebarek - , Universite Claude Bernard Lyon 1 (Autor:in)
  • Olivier Peyruchaud - , Universite Claude Bernard Lyon 1 (Autor:in)
  • François Duboeuf - , Universite Claude Bernard Lyon 1 (Autor:in)
  • Caroline Bouillot - , Cermep - Imagery Du Vivant (Autor:in)
  • Anthony Pinkerton - , Sanford Burnham Prebys Medical Discovery Institute (Autor:in)
  • Laura Mechtouff - , Hospices civils de Lyon (Autor:in)
  • René Buchet - , Universite Claude Bernard Lyon 1 (Autor:in)
  • Eva Hamade - , Lebanese University (Autor:in)
  • Kazem Zibara - , Lebanese University (Autor:in)
  • Caroline Fonta - , Université de Toulouse (Autor:in)
  • Emmanuelle Canet-Soulas - , Universite Claude Bernard Lyon 1 (Autor:in)
  • Jose Luis Millan - , Sanford Burnham Prebys Medical Discovery Institute (Autor:in)
  • David Magne - , Universite Claude Bernard Lyon 1 (Autor:in)

Abstract

Calcium accumulation in atherosclerotic plaques predicts cardiovascular mortality, but the mechanisms responsible for plaque calcification and how calcification impacts plaque stability remain debated. Tissue-nonspecific alkaline phosphatase (TNAP) recently emerged as a promising therapeutic target to block cardiovascular calcification. In this study, we sought to investigate the effect of the recently developed TNAP inhibitor SBI-425 on atherosclerosis plaque calcification and progression. TNAP levels were investigated in ApoE-deficient mice fed a high-fat diet from 10 weeks of age and in plaques from the human ECLAGEN biocollection (101 calcified and 14 non-calcified carotid plaques). TNAP was inhibited in mice using SBI-425 administered from 10 to 25 weeks of age, and in human vascular smooth muscle cells (VSMCs) with MLS-0038949. Plaque calcification was imaged in vivo with 18F-NaF-PET/CT, ex vivo with osteosense, and in vitro with alizarin red. Bone architecture was determined with µCT. TNAP activation preceded and predicted calcification in human and mouse plaques, and TNAP inhibition prevented calcification in human VSMCs and in ApoE-deficient mice. More unexpectedly, TNAP inhibition reduced the blood levels of cholesterol and triglycerides, and protected mice from atherosclerosis, without impacting the skeletal architecture. Metabolomics analysis of liver extracts identified phosphocholine as a substrate of liver TNAP, who's decreased dephosphorylation upon TNAP inhibition likely reduced the release of cholesterol and triglycerides into the blood. Systemic inhibition of TNAP protects from atherosclerosis, by ameliorating dyslipidemia, and preventing plaque calcification.

Details

OriginalspracheEnglisch
Seiten (von - bis)2-13
Seitenumfang12
FachzeitschriftTranslational research : the journal of laboratory and clinical medicine
Jahrgang251
PublikationsstatusVeröffentlicht - Jan. 2023
Peer-Review-StatusJa
Extern publiziertJa

Externe IDs

Scopus 85134306739
ORCID /0000-0002-7973-1329/work/184443303

Schlagworte

Ziele für nachhaltige Entwicklung

Schlagwörter

  • Mice, Humans, Animals, Alkaline Phosphatase, Muscle, Smooth, Vascular, Positron Emission Tomography Computed Tomography, Atherosclerosis/etiology, Plaque, Atherosclerotic, Calcinosis, Apolipoproteins E, Dyslipidemias, Triglycerides