Cargando…

Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases

Hypoxia in the neonatal period is associated with early manifestations of adverse cardiovascular health in adulthood including higher risk of hypertension and atherosclerosis. We hypothesize that this occurs due to activation of lysyl oxidases (LOXs) and the remodeling of the large conduit vessels,...

Descripción completa

Detalles Bibliográficos
Autores principales: Steppan, Jochen, Nandakumar, Kavitha, Wang, Huilei, Jang, Rosie, Smith, Logan, Kang, Sara, Savage, William, Bauer, Maria, Choi, Rira, Brady, Travis, Wodu, Bulouere Princess, Scafidi, Susanna, Scafidi, Joseph, Santhanam, Lakshmi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10086679/
https://www.ncbi.nlm.nih.gov/pubmed/37038896
http://dx.doi.org/10.14814/phy2.15656
_version_ 1785022202635091968
author Steppan, Jochen
Nandakumar, Kavitha
Wang, Huilei
Jang, Rosie
Smith, Logan
Kang, Sara
Savage, William
Bauer, Maria
Choi, Rira
Brady, Travis
Wodu, Bulouere Princess
Scafidi, Susanna
Scafidi, Joseph
Santhanam, Lakshmi
author_facet Steppan, Jochen
Nandakumar, Kavitha
Wang, Huilei
Jang, Rosie
Smith, Logan
Kang, Sara
Savage, William
Bauer, Maria
Choi, Rira
Brady, Travis
Wodu, Bulouere Princess
Scafidi, Susanna
Scafidi, Joseph
Santhanam, Lakshmi
author_sort Steppan, Jochen
collection PubMed
description Hypoxia in the neonatal period is associated with early manifestations of adverse cardiovascular health in adulthood including higher risk of hypertension and atherosclerosis. We hypothesize that this occurs due to activation of lysyl oxidases (LOXs) and the remodeling of the large conduit vessels, leading to early arterial stiffening. Newborn C57Bl/6 mice were exposed to hypoxia (FiO(2) = 11.5%) from postnatal day 1 (P1) to postnatal day 11 (P11), followed by resumption of normoxia. Controls were maintained in normoxia. Using in vivo (pulse wave velocity; PWV) and ex vivo (tensile testing) arterial stiffness indexes, we determined that mice exposed to neonatal hypoxia had significantly higher arterial stiffness compared with normoxia controls by young adulthood (P60), and it increased further by P120. Echocardiography performed at P60 showed that mice exposed to hypoxia displayed a compensated dilated cardiomyopathy. Western blotting revelated that neonatal hypoxia accelerated age‐related increase in LOXL2 protein expression in the aorta and elevated LOXL2 expression in the PA at P11 with a delayed decay toward normoxic controls. In the heart and lung, gene and protein expression of LOX/LOXL2 were upregulated at P11, with a delayed decay when compared to normoxic controls. Neonatal hypoxia results in a significant increase in arterial stiffness in early adulthood due to aberrant LOX/LOXL2 expression. This suggests an acceleration in the mechanical decline of the cardiovascular system, that contributes to increased risk of hypertension in young adults exposed to neonatal hypoxia that may increase susceptibility to further insults.
format Online
Article
Text
id pubmed-10086679
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-100866792023-04-12 Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases Steppan, Jochen Nandakumar, Kavitha Wang, Huilei Jang, Rosie Smith, Logan Kang, Sara Savage, William Bauer, Maria Choi, Rira Brady, Travis Wodu, Bulouere Princess Scafidi, Susanna Scafidi, Joseph Santhanam, Lakshmi Physiol Rep Original Articles Hypoxia in the neonatal period is associated with early manifestations of adverse cardiovascular health in adulthood including higher risk of hypertension and atherosclerosis. We hypothesize that this occurs due to activation of lysyl oxidases (LOXs) and the remodeling of the large conduit vessels, leading to early arterial stiffening. Newborn C57Bl/6 mice were exposed to hypoxia (FiO(2) = 11.5%) from postnatal day 1 (P1) to postnatal day 11 (P11), followed by resumption of normoxia. Controls were maintained in normoxia. Using in vivo (pulse wave velocity; PWV) and ex vivo (tensile testing) arterial stiffness indexes, we determined that mice exposed to neonatal hypoxia had significantly higher arterial stiffness compared with normoxia controls by young adulthood (P60), and it increased further by P120. Echocardiography performed at P60 showed that mice exposed to hypoxia displayed a compensated dilated cardiomyopathy. Western blotting revelated that neonatal hypoxia accelerated age‐related increase in LOXL2 protein expression in the aorta and elevated LOXL2 expression in the PA at P11 with a delayed decay toward normoxic controls. In the heart and lung, gene and protein expression of LOX/LOXL2 were upregulated at P11, with a delayed decay when compared to normoxic controls. Neonatal hypoxia results in a significant increase in arterial stiffness in early adulthood due to aberrant LOX/LOXL2 expression. This suggests an acceleration in the mechanical decline of the cardiovascular system, that contributes to increased risk of hypertension in young adults exposed to neonatal hypoxia that may increase susceptibility to further insults. John Wiley and Sons Inc. 2023-04-11 /pmc/articles/PMC10086679/ /pubmed/37038896 http://dx.doi.org/10.14814/phy2.15656 Text en © 2023 The Authors. Physiological Reports published by Wiley Periodicals LLC on behalf of The Physiological Society and the American Physiological Society. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Steppan, Jochen
Nandakumar, Kavitha
Wang, Huilei
Jang, Rosie
Smith, Logan
Kang, Sara
Savage, William
Bauer, Maria
Choi, Rira
Brady, Travis
Wodu, Bulouere Princess
Scafidi, Susanna
Scafidi, Joseph
Santhanam, Lakshmi
Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases
title Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases
title_full Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases
title_fullStr Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases
title_full_unstemmed Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases
title_short Neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases
title_sort neonatal exposure to hypoxia induces early arterial stiffening via activation of lysyl oxidases
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10086679/
https://www.ncbi.nlm.nih.gov/pubmed/37038896
http://dx.doi.org/10.14814/phy2.15656
work_keys_str_mv AT steppanjochen neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT nandakumarkavitha neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT wanghuilei neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT jangrosie neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT smithlogan neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT kangsara neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT savagewilliam neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT bauermaria neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT choirira neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT bradytravis neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT wodubulouereprincess neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT scafidisusanna neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT scafidijoseph neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases
AT santhanamlakshmi neonatalexposuretohypoxiainducesearlyarterialstiffeningviaactivationoflysyloxidases