Please use this identifier to cite or link to this item: https://repository.monashhealth.org/monashhealthjspui/handle/1/35977
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dc.contributor.authorLaRosa D.A.en
dc.contributor.authorWong F.Y.en
dc.contributor.authorWalker D.W.en
dc.contributor.authorDickinson H.en
dc.contributor.authorBrew N.en
dc.contributor.authorGoss M.G.en
dc.contributor.authorEllery S.J.en
dc.contributor.authorHale N.en
dc.date.accessioned2021-05-14T12:11:04Zen
dc.date.available2021-05-14T12:11:04Zen
dc.date.copyright2019en
dc.date.created20190212en
dc.date.issued2019-02-12en
dc.identifier.citationNeurotherapeutics. 16 (1) (pp 231-243), 2019. Date of Publication: 15 Jan 2019.en
dc.identifier.issn1933-7213en
dc.identifier.urihttps://repository.monashhealth.org/monashhealthjspui/handle/1/35977en
dc.description.abstractNeonatal hypoxic ischemic encephalopathy (HIE) resulting from intrapartum asphyxia is a global problem that causes severe disabilities and up to 1 million deaths annually. A variant form of activated protein C, 3K3A-APC, has cytoprotective properties that attenuate brain injury in models of adult stroke. In this study, we compared the ability of 3K3A-APC and APC (wild-type (wt)) to attenuate neonatal brain injury, using the spiny mouse (Acomys cahirinus) model of intrapartum asphyxia. Pups were delivered at 38 days of gestation (term = 39 days), with an intrapartum hypoxic insult of 7.5 min (intrapartum asphyxia cohort), or immediate removal from the uterus (control cohort). After 1 h, pups received a subcutaneous injection of 3K3A-APC or wild-type APC (wtAPC) at 7 mg/kg, or vehicle (saline). At 24 h of age, pups were killed and brain tissue was collected for measurement of inflammation and cell death using RT-qPCR and histopathology. Intrapartum asphyxia increased weight loss, inflammation, and apoptosis/necrosis in the newborn brain. 3K3A-APC administration maintained body weight and ameliorated an asphyxia-induced increase of TGFbeta1 messenger RNA expression in the cerebral cortex, immune cell aggregation in the corpus callosum, and cell death in the deep gray matter and hippocampus. In the cortex, 3K3A-APC appeared to exacerbate the immune response to the hypoxic ischemic insult. While wtAPC reduced cell death in the corpus callosum and hippocampus following intrapartum asphyxia, it increased markers of neuro-inflammation and cell death in control pups. These findings suggest 3K3A-APC administration may be a useful therapy to reduce cell death and neonatal brain injury associated with HIE.Copyright © 2018, The American Society for Experimental NeuroTherapeutics, Inc.en
dc.languageEnglishen
dc.languageenen
dc.publisherSpringer New York LLC (E-mail: barbara.b.bertram@gsk.com)en
dc.relation.ispartofNeurotherapeuticsen
dc.titleEvaluation of 3K3A-Activated Protein C to Treat Neonatal Hypoxic Ischemic Brain Injury in the Spiny Mouse.en
dc.typeArticleen
dc.identifier.doihttp://monash.idm.oclc.org/login?url=http://dx.doi.org/10.1007/s13311-018-0661-0en
dc.publisher.placeUnited Statesen
dc.identifier.pubmedid30225791 [http://www.ncbi.nlm.nih.gov/pubmed/?term=30225791]en
dc.identifier.source624000609en
dc.identifier.institution(Ellery, Goss, Brew, Dickinson, Hale, LaRosa, Walker, Wong) The Ritchie Centre, Hudson Institute of Medical Research, 27-31 Wright St, Clayton, Melbourne 3168, Australia (Ellery, Dickinson, LaRosa, Walker) Department of Obstetrics and Gynaecology, Monash University, Clayton, Australia (LaRosa) Women and Infants Hospital, Alpert Medical School, Brown University, Providence, RI, United States (Walker) School of Health and Biomedical Sciences, RMIT University, Melbourne, Australia (Wong) Department of Paediatrics, Monash University, Clayton, Australia (Wong) Monash Newborn, Monash Medical Centre, Clayton, Melbourne, Australiaen
dc.description.addressS.J. Ellery, The Ritchie Centre, Hudson Institute of Medical Research, 27-31 Wright St, Clayton, Melbourne 3168, Australia. E-mail: stacey.ellery@hudson.org.auen
dc.description.publicationstatusEmbaseen
dc.rights.statementCopyright 2019 Elsevier B.V., All rights reserved.en
dc.subect.keywordsApoptosis Birth Brain injury Intrapartum asphyxia Neuro-inflammationen
dc.identifier.authoremailEllery S.J.; stacey.ellery@hudson.org.auen
item.cerifentitytypePublications-
item.fulltextNo Fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.grantfulltextnone-
item.openairetypeArticle-
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