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What is the pathophysiology of inflammation-induced cortical injury in the perinatal brain?

摘要Perinatal exposure to infection/inflammation is highly associated with neural injury,and subsequent impaired cortical growth,disturbances in neuronal connectivity,and impaired neurodevelopment.However,our understanding of the pathophysiological substrate underpinning these changes in brain structure and function is limited.The objective of this review is to summarize the growing evidence from animal trials and human cohort studies that suggest exposure to infection/inflammation during the perinatal period promotes regional impairments in neuronal maturation and function,including loss of high-frequency electroencephalographic activity,and reduced growth and arborization of cortical dendrites and dendritic spines resulting in reduced cortical volume.These inflammation-induced disturbances to neuronal structure and function are likely to underpin subsequent disturbances to cortical development and connectivity in fetuses and/or newborns exposed to infection/inflammation during the perinatal period,leading,in the long term,to impaired neurodevelopment.The combined use of early electroencephalography monitoring with neuroimaging techniques that enable detailed evaluation of brain microstructure,and the use of therapeutics that successfully target systemic and central nervous system inflammation could provide an effective strategy for early detection and therapeutic intervention.

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作者 Sharmony B.Kelly [1] Alistair J.Gunn [2] Rodney W.Hunt [3] Robert Galinsky [1] 学术成果认领
作者单位 The Ritchie Centre,Hudson Institute of Medical Research,Melbourne,VIC,Australia;Department of Obstetrics and Gynaecology,Monash University,Melbourne,VIC,Australia [1] Department of Physiology,The University of Auckland,Auckland,New Zealand [2] The Ritchie Centre,Hudson Institute of Medical Research,Melbourne,VIC,Australia;Monash Newborn,Monash Children's Hospital,Melbourne,Australia [3]
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DOI 10.4103/NRR.NRR-D-24-01091
发布时间 2025-12-09(万方平台首次上网日期,不代表论文的发表时间)
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中国神经再生研究(英文版)

中国神经再生研究(英文版)

2026年21卷2期

502-505页

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