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Title: | Neuropathology as a consequence of neonatal ventilation in premature growth-restricted lambs. | Authors: | Miller S.L.;Malhotra A. ;Jenkin G. ;Castillo-Melendez M.;Allison B.J.;Sutherland A.E.;Nitsos I.;Pham Y.;Alves de Alencar Rocha A.K.;Fahey M.C.;Polglase G.R. | Institution: | (Malhotra) Monash Newborn, Monash Children's Hospital, Melbourne, Australia (Malhotra, Fahey) Department of Paediatrics, Monash University, Melbourne, Australia (Malhotra, Castillo-Melendez, Allison, Sutherland, Nitsos, Pham, Alves de Alencar Rocha, Fahey, Polglase, Jenkin, Miller) The Ritchie Centre, Hudson Institute of Medical Research, Melbourne, Australia (Castillo-Melendez, Allison, Polglase, Jenkin, Miller) Department of Obstetrics and Gynaecology, Monash University, Melbourne, Australia | Issue Date: | 2-Jan-2019 | Copyright year: | 2018 | Publisher: | American Physiological Society | Place of publication: | United States | Publication information: | American Journal of Physiology - Regulatory Integrative and Comparative Physiology. 315 (6) (pp R1183-R1194), 2018. Date of Publication: December 2018. | Journal: | American Journal of Physiology - Regulatory Integrative and Comparative Physiology | Abstract: | Fetal growth restriction (FGR) and prematurity are associated with high risk of brain injury and long-term neurological deficits. FGR infants born preterm are commonly exposed to mechanical ventilation, but it is not known whether ventilation differentially induces brain pathology in FGR infants compared with appropriate for gestational age (AGA) infants. We investigated markers of neuropathology in moderate-to late-preterm FGR lambs, compared with AGA lambs, delivered by caesarean birth and ventilated under standard neonatal conditions for 24 h. FGR was induced by single umbilical artery ligation in fetal sheep at 88-day gestation (term, 150 days). At 125-day gestation, FGR and AGA lambs were delivered, dried, intubated, and commenced on noninjurious ventilation, with surfactant administration at 10 min. A group of unventilated FGR and AGA lambs at the same gestation was also examined. Over 24 h, circulating pH, PO2, and lactate levels were similar between groups. Ventilated FGR lambs had lower cerebral blood flow compared with AGA lambs (P = 0.01). The brain of ventilated FGR lambs showed neuropathology compared with unventilated FGR, and unventilated and ventilated AGA lambs, with increased apoptosis (caspase-3), blood-brain barrier dysfunction (albumin extravasation), activated microglia (Iba-1), and increased expression of cellular oxidative stress (4-hydroxynonenal). The neuropathologies seen in the ventilated FGR brain were most pronounced in the periventricular and subcortical white matter but also evident in the subventricular zone, cortical gray matter, and hippocampus. Ventilation of preterm FGR lambs increased brain injury compared with AGA preterm lambs and unventilated FGR lambs, mediated via increased vascular permeability, neuroinflammation and oxidative stress.Copyright © 2018 the American Physiological Society. | DOI: | http://monash.idm.oclc.org/login?url=http://dx.doi.org/10.1152/ajpregu.00171.2018 | PubMed URL: | 30230932 [http://www.ncbi.nlm.nih.gov/pubmed/?term=30230932] | ISSN: | 0363-6119 | URI: | https://repository.monashhealth.org/monashhealthjspui/handle/1/37069 | Type: | Article |
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