Mechanisms of Perinatal Arterial Ischemic Stroke
The incidence of perinatal stroke is high, similar to that in the elderly, and produces a significant morbidity and severe long-term neurologic and cognitive deficits, including cerebral palsy, epilepsy, neuropsychological impairments, and behavioral disorders. Emerging clinical data and data from e...
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Published in | Journal of Cerebral Blood Flow & Metabolism Vol. 34; no. 6; pp. 921 - 932 |
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Main Authors | , , , |
Format | Book Review Journal Article |
Language | English |
Published |
London, England
SAGE Publications
01.06.2014
Sage Publications Ltd Nature Publishing Group |
Subjects | |
Online Access | Get full text |
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Abstract | The incidence of perinatal stroke is high, similar to that in the elderly, and produces a significant morbidity and severe long-term neurologic and cognitive deficits, including cerebral palsy, epilepsy, neuropsychological impairments, and behavioral disorders. Emerging clinical data and data from experimental models of cerebral ischemia in neonatal rodents have shown that the pathophysiology of perinatal brain damage is multifactorial. These studies have revealed that, far from just being a smaller version of the adult brain, the neonatal brain is unique with a very particular and age-dependent responsiveness to hypoxia–ischemia and focal arterial stroke. In this review, we discuss fundamental clinical aspects of perinatal stroke as well as some of the most recent and relevant findings regarding the susceptibility of specific brain cell populations to injury, the dynamics and the mechanisms of neuronal cell death in injured neonates, the responses of neonatal blood-brain barrier to stroke in relation to systemic and local inflammation, and the long-term effects of stroke on angiogenesis and neurogenesis. Finally, we address translational strategies currently being considered for neonatal stroke as well as treatments that might effectively enhance repair later after injury. |
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AbstractList | The incidence of perinatal stroke is high, similar to that in the elderly, and produces a significant morbidity and severe long-term neurologic and cognitive deficits, including cerebral palsy, epilepsy, neuropsychological impairments, and behavioral disorders. Emerging clinical data and data from experimental models of cerebral ischemia in neonatal rodents have shown that the pathophysiology of perinatal brain damage is multifactorial. These studies have revealed that, far from just being a smaller version of the adult brain, the neonatal brain is unique with a very particular and age-dependent responsiveness to hypoxia-ischemia and focal arterial stroke. In this review, we discuss fundamental clinical aspects of perinatal stroke as well as some of the most recent and relevant findings regarding the susceptibility of specific brain cell populations to injury, the dynamics and the mechanisms of neuronal cell death in injured neonates, the responses of neonatal blood-brain barrier to stroke in relation to systemic and local inflammation, and the long-term effects of stroke on angiogenesis and neurogenesis. Finally, we address translational strategies currently being considered for neonatal stroke as well as treatments that might effectively enhance repair later after injury. |
Author | Ashwal, Stephen Vexler, Zinaida S Natarajan, Niranjana Fernández-López, David |
Author_xml | – sequence: 1 givenname: David surname: Fernández-López fullname: Fernández-López, David – sequence: 2 givenname: Niranjana surname: Natarajan fullname: Natarajan, Niranjana – sequence: 3 givenname: Stephen surname: Ashwal fullname: Ashwal, Stephen – sequence: 4 givenname: Zinaida S surname: Vexler fullname: Vexler, Zinaida S email: zena.vexler@ucsf.edu |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/24667913$$D View this record in MEDLINE/PubMed |
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SubjectTerms | Adult Aged, 80 and over Animals Blood-Brain Barrier - metabolism Blood-Brain Barrier - pathology Blood-Brain Barrier - physiopathology Brain Ischemia - metabolism Brain Ischemia - pathology Brain Ischemia - physiopathology Female Humans Infant Infant, Newborn Male Neovascularization, Physiologic Neurogenesis Review Stroke - metabolism Stroke - pathology Stroke - physiopathology |
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Title | Mechanisms of Perinatal Arterial Ischemic Stroke |
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