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Fatty acid nitroalkene reversal of established lung fibrosis.
Koudelka, Adolf; Cechova, Veronika; Rojas, Mauricio; Mitash, Nilay; Bondonese, Anna; St Croix, Claudette; Ross, Mark A; Freeman, Bruce A.
Afiliación
  • Koudelka A; Department of Pharmacology and Chemical Biology, University of Pittsburgh, School of Medicine, E1340 BST, 200 Lothrop Street, Pittsburgh, PA, 15261, USA. Electronic address: koudelka@pitt.edu.
  • Cechova V; Department of Pharmacology and Chemical Biology, University of Pittsburgh, School of Medicine, E1340 BST, 200 Lothrop Street, Pittsburgh, PA, 15261, USA.
  • Rojas M; Department of Medicine, University of Pittsburgh, School of Medicine, E1246 BST, 200 Lothrop Street, Pittsburgh, PA, 15213, USA; Department of Internal Medicine, Ohio State University, 201 Davis Heart & Lung Research Institute, 473 W. 12th Avenue Columbus, Ohio, 43210, USA.
  • Mitash N; Department of Medicine, University of Pittsburgh, School of Medicine, E1246 BST, 200 Lothrop Street, Pittsburgh, PA, 15213, USA.
  • Bondonese A; Department of Medicine, University of Pittsburgh, School of Medicine, E1246 BST, 200 Lothrop Street, Pittsburgh, PA, 15213, USA.
  • St Croix C; Department of Cell Biology, University of Pittsburgh, School of Medicine, S224 BST, 3500 Terrace Street, Pittsburgh, PA, 15261, USA.
  • Ross MA; Department of Cell Biology, University of Pittsburgh, School of Medicine, S224 BST, 3500 Terrace Street, Pittsburgh, PA, 15261, USA.
  • Freeman BA; Department of Pharmacology and Chemical Biology, University of Pittsburgh, School of Medicine, E1340 BST, 200 Lothrop Street, Pittsburgh, PA, 15261, USA. Electronic address: freerad@pitt.edu.
Redox Biol ; 50: 102226, 2022 04.
Article en En | MEDLINE | ID: mdl-35150970
ABSTRACT
Tissue fibrosis occurs in response to dysregulated metabolism, pro-inflammatory signaling and tissue repair reactions. For example, lungs exposed to environmental toxins, cancer therapies, chronic inflammation and other stimuli manifest a phenotypic shift to activated myofibroblasts and progressive and often irreversible lung tissue scarring. There are no therapies that stop or reverse fibrosis. The 2 FDA-approved anti-fibrotic drugs at best only slow the progression of fibrosis in humans. The present study was designed to test whether a small molecule electrophilic nitroalkene, nitro-oleic acid (NO2-OA), could reverse established pulmonary fibrosis induced by the intratracheal administration of bleomycin in C57BL/6 mice. After 14 d of bleomycin-induced fibrosis development in vivo, lungs were removed, sectioned and precision-cut lung slices (PCLS) from control and bleomycin-treated mice were cultured ex vivo for 4 d with either vehicle or NO2-OA (5 µM). Biochemical and morphological analyses showed that over a 4 d time frame, NO2-OA significantly inhibited pro-inflammatory mediator and growth factor expression and reversed key indices of fibrosis (hydroxyproline, collagen 1A1 and 3A1, fibronectin-1). Quantitative image analysis of PCLS immunohistology reinforced these observations, revealing that NO2-OA suppressed additional hallmarks of the fibrotic response, including alveolar epithelial cell loss, myofibroblast differentiation and proliferation, collagen and α-smooth muscle actin expression. NO2-OA also accelerated collagen degradation by resident macrophages. These effects occurred in the absence of the recognized NO2-OA modulation of circulating and migrating immune cell activation. Thus, small molecule nitroalkenes may be useful agents for reversing pathogenic fibrosis of lung and other organs.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Fibrosis Pulmonar / Ácidos Grasos Límite: Animals Idioma: En Revista: Redox Biol Año: 2022 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Fibrosis Pulmonar / Ácidos Grasos Límite: Animals Idioma: En Revista: Redox Biol Año: 2022 Tipo del documento: Article