Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.

Cesarean birth rates are rising. Uterine dysfunction, the exact mechanism of which is unknown, is a common indication for Cesarean delivery. Biglycan and decorin are two small leucine-rich proteoglycans expressed in the extracellular matrix of reproductive tissues and muscle. Mice deficient in bigly...

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Main Authors: Zhiping Wu, Abraham W Aron, Elyse E Macksoud, Renato V Iozzo, Chi-Ming Hai, Beatrice E Lechner
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3258236?pdf=render
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spelling doaj-11c139d62b954d5eaf3e4623d4e94a852020-11-25T01:24:03ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0171e2962710.1371/journal.pone.0029627Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.Zhiping WuAbraham W AronElyse E MacksoudRenato V IozzoChi-Ming HaiBeatrice E LechnerCesarean birth rates are rising. Uterine dysfunction, the exact mechanism of which is unknown, is a common indication for Cesarean delivery. Biglycan and decorin are two small leucine-rich proteoglycans expressed in the extracellular matrix of reproductive tissues and muscle. Mice deficient in biglycan display a mild muscular dystrophy, and, along with mice deficient in decorin, are models of Ehlers-Danlos Syndrome, a connective tissue anomaly associated with uterine rupture. As a variant of Ehlers-Danlos Syndrome is caused by a genetic mutation resulting in abnormal biglycan and decorin secretion, we hypothesized that biglycan and decorin play a role in uterine function. Thus, we assessed wild-type, biglycan, decorin and double knockout pregnancies for timing of birth and uterine function. Uteri were harvested at embryonic days 12, 15 and 18. Nonpregnant uterine samples of the same genotypes were assessed for tissue failure rate and spontaneous and oxytocin-induced contractility. We discovered that biglycan/decorin mixed double-knockout dams displayed dystocia, were at increased risk of delayed labor onset, and showed increased tissue failure in a predominantly decorin-dependent manner. In vitro spontaneous uterine contractile amplitude and oxytocin-induced contractile force were decreased in all biglycan and decorin knockout genotypes compared to wild-type. Notably, we found no significant compensation between biglycan and decorin using quantitative real time PCR or immunohistochemistry. We conclude that the biglycan/decorin mixed double knockout mouse is a model of dystocia and delayed labor onset. Moreover, decorin is necessary for uterine function in a dose-dependent manner, while biglycan exhibits partial compensatory mechanisms in vivo. Thus, this model is poised for use as a model for testing novel targets for preventive or therapeutic manipulation of uterine dysfunction.http://europepmc.org/articles/PMC3258236?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Zhiping Wu
Abraham W Aron
Elyse E Macksoud
Renato V Iozzo
Chi-Ming Hai
Beatrice E Lechner
spellingShingle Zhiping Wu
Abraham W Aron
Elyse E Macksoud
Renato V Iozzo
Chi-Ming Hai
Beatrice E Lechner
Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.
PLoS ONE
author_facet Zhiping Wu
Abraham W Aron
Elyse E Macksoud
Renato V Iozzo
Chi-Ming Hai
Beatrice E Lechner
author_sort Zhiping Wu
title Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.
title_short Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.
title_full Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.
title_fullStr Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.
title_full_unstemmed Uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.
title_sort uterine dysfunction in biglycan and decorin deficient mice leads to dystocia during parturition.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Cesarean birth rates are rising. Uterine dysfunction, the exact mechanism of which is unknown, is a common indication for Cesarean delivery. Biglycan and decorin are two small leucine-rich proteoglycans expressed in the extracellular matrix of reproductive tissues and muscle. Mice deficient in biglycan display a mild muscular dystrophy, and, along with mice deficient in decorin, are models of Ehlers-Danlos Syndrome, a connective tissue anomaly associated with uterine rupture. As a variant of Ehlers-Danlos Syndrome is caused by a genetic mutation resulting in abnormal biglycan and decorin secretion, we hypothesized that biglycan and decorin play a role in uterine function. Thus, we assessed wild-type, biglycan, decorin and double knockout pregnancies for timing of birth and uterine function. Uteri were harvested at embryonic days 12, 15 and 18. Nonpregnant uterine samples of the same genotypes were assessed for tissue failure rate and spontaneous and oxytocin-induced contractility. We discovered that biglycan/decorin mixed double-knockout dams displayed dystocia, were at increased risk of delayed labor onset, and showed increased tissue failure in a predominantly decorin-dependent manner. In vitro spontaneous uterine contractile amplitude and oxytocin-induced contractile force were decreased in all biglycan and decorin knockout genotypes compared to wild-type. Notably, we found no significant compensation between biglycan and decorin using quantitative real time PCR or immunohistochemistry. We conclude that the biglycan/decorin mixed double knockout mouse is a model of dystocia and delayed labor onset. Moreover, decorin is necessary for uterine function in a dose-dependent manner, while biglycan exhibits partial compensatory mechanisms in vivo. Thus, this model is poised for use as a model for testing novel targets for preventive or therapeutic manipulation of uterine dysfunction.
url http://europepmc.org/articles/PMC3258236?pdf=render
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