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    BMP-7 attenuates left ventricular remodelling under pressure overload and facilitates reverse remodelling and functional recovery

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    BMP7AttenuatesLeft pp.pdf (1.090Mb)
    Identificadores
    URI: http://hdl.handle.net/10902/11021
    DOI: 10.1093/cvr/cvw076
    ISSN: 0008-6363
    ISSN: 1755-3245
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    Autoría
    Merino Fernández, DavidAutoridad Unican; Villar Ramos, Ana VictoriaAutoridad Unican; García López, RaquelAutoridad Unican; Tramullas Fernández, MónicaAutoridad Unican; Ruiz, Luis; Ribas, Catalina; Cabezudo, Sofía; Nistal Herrera, Juan FranciscoAutoridad Unican; Hurlé González, María AmorAutoridad Unican
    Fecha
    2016-04
    Derechos
    © Oxford University Press. This is a pre-copyedited, author-produced version of an article accepted for publication in Cardiovascular Research following peer review. The version of record David Merino, Ana V. Villar, Raquel García, Mónica Tramullas, Luis Ruiz, Catalina Ribas, Sofía Cabezudo, Juan Francisco Nistal, María A. Hurlé; BMP-7 attenuates left ventricular remodelling under pressure overload and facilitates reverse remodelling and functional recovery. Cardiovasc Res 2016; 110 (3): 331-345 is available online at: https://academic.oup.com/cardiovascres/article/110/3/331/1744901/BMP-7-attenuates-left-ventricular-remodelling and doi: 10.1093/cvr/cvw076
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    Cardiovasc Res 2016; 110 (3): 331-345
    Editorial
    Oxford University Press
    Resumen/Abstract
    Aims TGF-ß regulates tissue fibrosis: TGF-ß promotes fibrosis, whereas bone morphogenetic protein (BMP)-7 is antifibrotic. To demonstrate that (i) left ventricular (LV) remodelling after pressure overload is associated with disequilibrium in the signalling mediated by these cytokines, and (ii) BMP-7 exerts beneficial effects on LV remodelling and reverse remodelling. Methods and results We studied patients with aortic stenosis (AS) and mice subjected to transverse aortic constriction (TAC) and TAC release (de-TAC). LV morphology and function were assessed by echocardiography. LV biopsies were analysed by qPCR, immunoblotting, and histology. Pressure overload reduced BMP-7 and pSmad1/5/8 and increased TGF-ß and pSmad2/3 in AS patients and TAC mice. BMP-7 correlated inversely with collagen, fibronectin, and ß-MHC expressions, and with hypertrophy and diastolic dysfunction, and directly with the systolic function. Multiple linear regression disclosed BMP-7 and TGF-ß as hypertrophy predictors, negative and positive, respectively. BMP-7 prevented TGF-ß-elicited hypertrophic program in cardiomyocytes, and Col1A1 promoter activity in NIH-3T3 fibroblasts. The treatment of TAC mice with rBMP-7 attenuated the development of structural damage and dysfunction, and halted ongoing remodelling. The reverse remodelling after pressure overload release was facilitated by rBMP-7, and hampered by disrupting BMP-7 function using a neutralizing antibody or genetic deletion. Conclusion The disequilibrium between BMP-7 and TGF-ß signals plays a relevant role in the LV remodelling response to haemodynamic stress in TAC mice and AS patients. Our observations may provide new important insights aimed at developing novel therapies designed to prevent, halt, or reverse LV pathological remodelling in pressure overload cardiomyopathy.
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    UNIVERSIDAD DE CANTABRIA

    Repositorio realizado por la Biblioteca Universitaria utilizando DSpace software
    Contacto | Sugerencias
    Metadatos sujetos a:licencia de Creative Commons Reconocimiento 4.0 España