Intrauterine growth restriction due to uteroplacental vascular insufficiency leads to increased hypoxia-induced cerebral apoptosis in newborn piglets


Autoria(s): Burke, C.; Sinclair, K.; Cowin, G..; Rose, S.; Pat, B.; Gobe, G.; Colditz, P.
Contribuinte(s)

F. E. Bloom

Data(s)

01/01/2006

Resumo

Uteroplacental vascular insufficiency in humans is a common cause of intrauterine growth restriction (IUGR) and is associated with an increased incidence of perinatal asphyxia and neurodevelopmental disorders compared to normal weight newborns. Experimental models that provide an opportunity to analyze the pathogenesis of these relationships are limited. Here, we used neonatal pigs from large litters in which there were piglets of normal birth weight (for controls) and of low birth weight (for uteroplacental vascular insufficiency). Hypoxia was induced in paired littermates by reducing the fraction of inspired oxygen to 4% for 25 min. Brain tissue was collected 4 h post-hypoxia. Cerebral levels of apoptosis were quantified morphologically and verified with caspase-3 activity and TUNEL. Expression of Bcl-2, BcI-XL and Bax proteins was investigated using immunohistochemistry. Cellular positivity for Bcl-2 was consistently higher in the non-apoptotic white matter of the hypoxic IUGR animals compared with their littermates and reached significance at P < 0.05 in several pairs of littermates. Alterations in Bax showed a trend towards higher expression in the hypoxic IUGR littermates but rarely reached significance. The IUGR piglets showed a significantly greater amount of apoptosis in response to the hypoxia than the normal weight piglets, suggesting an increased vulnerability to apoptosis in the IUGR piglets. (c) 2006 Elsevier B.V. All rights reserved.

Identificador

http://espace.library.uq.edu.au/view/UQ:78775

Idioma(s)

eng

Publicador

Elsevier BV

Palavras-Chave #Neurosciences #Neonate #Apoptosis #Uteroplacental Insufficiency #Pig #Intrauterine Growth Restriction #IUGR #Hypoxia #Cell-death #Rat #Retardation #Brain #Hippocampus #Expression #Injury #Cortex #Number #Model #C1 #320700 Neurosciences #730104 Nervous system and disorders
Tipo

Journal Article