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Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice

In vitro and ex vivo experiments indicate that elastase-2 (ELA-2), a chymotrypsin-serine protease elastase family member 2A, is an alternative pathway for angiotensin II (Ang II) generation. However, the role played by ELA-2 in vivo is unclear. We examined ELA-2 knockout (ELA-2KO) mice compared to w...

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Autores principales: Becari, Christiane, Durand, Marina T., Guimaraes, Alessander O., Lataro, Renata M., Prado, Cibele M., de Oliveira, Mauro, Candido, Sarai C. O., Pais, Paloma, Ribeiro, Mauricio S., Bader, Michael, Pesquero, Joao B., Salgado, Maria C. O., Salgado, Helio C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363176/
https://www.ncbi.nlm.nih.gov/pubmed/28386233
http://dx.doi.org/10.3389/fphys.2017.00170
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author Becari, Christiane
Durand, Marina T.
Guimaraes, Alessander O.
Lataro, Renata M.
Prado, Cibele M.
de Oliveira, Mauro
Candido, Sarai C. O.
Pais, Paloma
Ribeiro, Mauricio S.
Bader, Michael
Pesquero, Joao B.
Salgado, Maria C. O.
Salgado, Helio C.
author_facet Becari, Christiane
Durand, Marina T.
Guimaraes, Alessander O.
Lataro, Renata M.
Prado, Cibele M.
de Oliveira, Mauro
Candido, Sarai C. O.
Pais, Paloma
Ribeiro, Mauricio S.
Bader, Michael
Pesquero, Joao B.
Salgado, Maria C. O.
Salgado, Helio C.
author_sort Becari, Christiane
collection PubMed
description In vitro and ex vivo experiments indicate that elastase-2 (ELA-2), a chymotrypsin-serine protease elastase family member 2A, is an alternative pathway for angiotensin II (Ang II) generation. However, the role played by ELA-2 in vivo is unclear. We examined ELA-2 knockout (ELA-2KO) mice compared to wild-type (WT) mice and determined whether ELA-2 played a role in hemodynamics [arterial pressure (AP) and heart rate (HR)], cardiocirculatory sympathovagal balance and baroreflex sensitivity. The variability of systolic arterial pressure (SAP) and pulse interval (PI) for evaluating autonomic modulation was examined for time and frequency domains (spectral analysis), whereas a symbolic analysis was also used to evaluate PI variability. In addition, baroreflex sensitivity was examined using the sequence method. Cardiac function was evaluated echocardiographically under anesthesia. The AP was normal whereas the HR was reduced in ELA-2KO mice (425 ± 17 vs. 512 ± 13 bpm from WT). SAP variability and baroreflex sensitivity were similar in both strains. The LF power from the PI spectrum (33.6 ± 5 vs. 51.8 ± 4.8 nu from WT) and the LF/HF ratio (0.60 ± 0.1 vs. 1.45 ± 0.3 from WT) were reduced, whereas the HF power was increased (66.4 ± 5 vs. 48.2 ± 4.8 nu from WT) in ELA-2KO mice, indicating a shift toward parasympathetic modulation of HR. Echocardiographic examination showed normal fractional shortening and an ejection fraction in ELA-2KO mice; however, the cardiac output, stroke volume, and ventricular size were reduced. These findings provide the first evidence that ELA-2 acts on the sympathovagal balance of the heart, as expressed by the reduced sympathetic modulation of HR in ELA-2KO mice.
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spelling pubmed-53631762017-04-06 Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice Becari, Christiane Durand, Marina T. Guimaraes, Alessander O. Lataro, Renata M. Prado, Cibele M. de Oliveira, Mauro Candido, Sarai C. O. Pais, Paloma Ribeiro, Mauricio S. Bader, Michael Pesquero, Joao B. Salgado, Maria C. O. Salgado, Helio C. Front Physiol Physiology In vitro and ex vivo experiments indicate that elastase-2 (ELA-2), a chymotrypsin-serine protease elastase family member 2A, is an alternative pathway for angiotensin II (Ang II) generation. However, the role played by ELA-2 in vivo is unclear. We examined ELA-2 knockout (ELA-2KO) mice compared to wild-type (WT) mice and determined whether ELA-2 played a role in hemodynamics [arterial pressure (AP) and heart rate (HR)], cardiocirculatory sympathovagal balance and baroreflex sensitivity. The variability of systolic arterial pressure (SAP) and pulse interval (PI) for evaluating autonomic modulation was examined for time and frequency domains (spectral analysis), whereas a symbolic analysis was also used to evaluate PI variability. In addition, baroreflex sensitivity was examined using the sequence method. Cardiac function was evaluated echocardiographically under anesthesia. The AP was normal whereas the HR was reduced in ELA-2KO mice (425 ± 17 vs. 512 ± 13 bpm from WT). SAP variability and baroreflex sensitivity were similar in both strains. The LF power from the PI spectrum (33.6 ± 5 vs. 51.8 ± 4.8 nu from WT) and the LF/HF ratio (0.60 ± 0.1 vs. 1.45 ± 0.3 from WT) were reduced, whereas the HF power was increased (66.4 ± 5 vs. 48.2 ± 4.8 nu from WT) in ELA-2KO mice, indicating a shift toward parasympathetic modulation of HR. Echocardiographic examination showed normal fractional shortening and an ejection fraction in ELA-2KO mice; however, the cardiac output, stroke volume, and ventricular size were reduced. These findings provide the first evidence that ELA-2 acts on the sympathovagal balance of the heart, as expressed by the reduced sympathetic modulation of HR in ELA-2KO mice. Frontiers Media S.A. 2017-03-23 /pmc/articles/PMC5363176/ /pubmed/28386233 http://dx.doi.org/10.3389/fphys.2017.00170 Text en Copyright © 2017 Becari, Durand, Guimaraes, Lataro, Prado, de Oliveira, Candido, Pais, Ribeiro, Bader, Pesquero, Salgado and Salgado. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Becari, Christiane
Durand, Marina T.
Guimaraes, Alessander O.
Lataro, Renata M.
Prado, Cibele M.
de Oliveira, Mauro
Candido, Sarai C. O.
Pais, Paloma
Ribeiro, Mauricio S.
Bader, Michael
Pesquero, Joao B.
Salgado, Maria C. O.
Salgado, Helio C.
Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice
title Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice
title_full Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice
title_fullStr Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice
title_full_unstemmed Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice
title_short Elastase-2, a Tissue Alternative Pathway for Angiotensin II Generation, Plays a Role in Circulatory Sympathovagal Balance in Mice
title_sort elastase-2, a tissue alternative pathway for angiotensin ii generation, plays a role in circulatory sympathovagal balance in mice
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5363176/
https://www.ncbi.nlm.nih.gov/pubmed/28386233
http://dx.doi.org/10.3389/fphys.2017.00170
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