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LOXL2 inhibition ameliorates pulmonary artery remodeling in pulmonary hypertension.
Steppan, Jochen; Wang, Huilei; Nandakumar, Kavitha; Gadkari, Mahin; Poe, Alan; Park, Lydia; Brady, Travis; Berkowitz, Dan E; Shimoda, Larissa A; Santhanam, Lakshmi.
Afiliação
  • Steppan J; Anesthesiology and Critical Care Medicine, Johns Hopkins University, Baltimore, Maryland, United States.
  • Wang H; Johns Hopkins University, Baltimore, United States.
  • Nandakumar K; ACCM, Johns Hopkins University, Baltimore, United States.
  • Gadkari M; Chemical and Biomolecular Engineering, Whiting School of Engineering, Johns Hopkins University, United States.
  • Poe A; Johns Hopkins University, United States.
  • Park L; Krieger School of Arts and Sciences, Molecular & Cellular Biology, Johns Hopkins University, United States.
  • Brady T; Biomedical Engineering, Johns Hopkins University, Baltimore, Maryland, United States.
  • Berkowitz DE; University of Alabama at Birmingham, United States.
  • Shimoda LA; Pulmonary and Critical Care Medicine, Johns Hopkins University, Baltimore, MD, United States.
  • Santhanam L; ACCM, Johns Hopkins University, Baltimore, MD, United States.
Article em En | MEDLINE | ID: mdl-39010824
ABSTRACT

BACKGROUND:

Conduit pulmonary arterial stiffening and the resultant increase in pulmonary vascular impedance has emerged as an important underlying driver of pulmonary arterial hypertension (PAH). Given that matrix deposition is central to vascular remodeling, we evaluated the role of the collagen crosslinking enzyme lysyl oxidase like 2 (LOXL2) in this study. METHODS AND

RESULTS:

Human pulmonary artery smooth muscle cells (PASMCs) subjected to hypoxia showed increased LOXL2 secretion. LOXL2 activity and expression were markedly higher in primary PASMCs isolated from pulmonary arteries of the rat Sugen5416 + hypoxia (SuHx) model of severe PH. Similarly, LOXL2 protein and mRNA levels were increased in pulmonary arteries (PA) and lungs of rats with PH (SuHx and monocrotaline (MCT) models). Pulmonary arteries (PAs) isolated from rats with PH exhibited hypercontractility to phenylephrine and attenuated vasorelaxation elicited by acetylcholine, indicating severe endothelial dysfunction. Tensile testing revealed a a significant increase in PA stiffness in PH. Treatment with PAT-1251, a novel small-molecule LOXL2 inhibitor, improved active and passive properties of the PA ex vivo. There was an improvement in right heart function as measured by right ventricular pressure volume loops in-vivo with PAT-1251. Importantly PAT-1251 treatment ameliorated PH, resulting in improved pulmonary artery pressures, right ventricular remodeling, and survival.

CONCLUSION:

Hypoxia induced LOXL2 activation is a causal mechanism in pulmonary artery stiffening in PH, as well as pulmonary artery mechanical and functional decline. LOXL2 inhibition with PAT-1251 could be a promising approach to improve pulmonary artery pressures, right ventricular elastance, cardiac relaxation, and survival in PAH.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Estados Unidos