| Literature DB >> 32473918 |
Pablo Cassaglia1, Federico Penas2, Celeste Betazza3, Florencia Fontana Estevez4, Verónica Miksztowicz5, Nadia Martínez Naya1, María Clara Llamosas1, Sofía Noli Truant6, Luciana Wilensky1, Verónica Volberg1, Ágata C Cevey2, Vanessa Touceda7, Eliana Cicale8, Gabriela Berg7, Marisa Fernández6, Nora Goren2, Celina Morales1, Germán E González9.
Abstract
We studied the role of galectin-3 (Gal-3) in the expression of alternative activation markers (M2) on macrophage, cytokines, and fibrosis through the temporal evolution of healing, ventricular remodeling, and function after myocardial infarction (MI). C57BL/6J and Gal-3 knockout mice (Lgals3-/-) were subjected to permanent coronary ligation or sham. We studied i) mortality, ii) macrophage infiltration and expression of markers of alternative activation, iii) cytokine, iv) matrix metalloproteinase-2 activity, v) fibrosis, and vi) cardiac function and remodeling. At 1 week post-MI, lack of Gal-3 markedly attenuated F4/80+ macrophage infiltration and significantly increased the expression of Mrc1 and Chil1, markers of M2 macrophages at the MI zone. Levels of IL-10, IL-6, and matrix metalloproteinase-2 were significantly increased, whereas tumor necrosis factor-α, transforming growth factor-β, and fibrosis were remarkably attenuated at the infarct zone. In Gal-3 knockout mice, scar thinning ratio, expansion, and cardiac remodeling and function were severely affected from the onset of MI. At 4 weeks post-MI, the natural evolution of fibrosis in Gal-3 knockout mice was also affected. Our results suggest that Gal-3 is essential for wound healing because it regulates the dynamics of macrophage infiltration, proinflammatory and anti-inflammatory cytokine expression, and fibrosis along the temporal evolution of MI in mice. The deficit of Gal-3 affected the dynamics of wound healing, thus aggravating the evolution of remodeling and function.Entities:
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Year: 2020 PMID: 32473918 DOI: 10.1016/j.ajpath.2020.05.010
Source DB: PubMed Journal: Am J Pathol ISSN: 0002-9440 Impact factor: 4.307