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Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets

The effects of hypothermia on neonatal encephalopathy may vary topographically and cytopathologically in the neocortex with manifestations potentially influenced by seizures that alter the severity, distribution, and type of neuropathology. We developed a neonatal piglet survival model of hypoxic-is...

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Autores principales: Primiani, Christopher T., Lee, Jennifer K., O’Brien, Caitlin E., Chen, May W., Perin, Jamie, Kulikowicz, Ewa, Santos, Polan, Adams, Shawn, Lester, Bailey, Rivera-Diaz, Natalia, Olberding, Valerie, Niedzwiecki, Mark V., Ritzl, Eva K., Habela, Christa W., Liu, Xiuyun, Yang, Zeng-Jin, Koehler, Raymond C., Martin, Lee J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605428/
https://www.ncbi.nlm.nih.gov/pubmed/37887298
http://dx.doi.org/10.3390/cells12202454
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author Primiani, Christopher T.
Lee, Jennifer K.
O’Brien, Caitlin E.
Chen, May W.
Perin, Jamie
Kulikowicz, Ewa
Santos, Polan
Adams, Shawn
Lester, Bailey
Rivera-Diaz, Natalia
Olberding, Valerie
Niedzwiecki, Mark V.
Ritzl, Eva K.
Habela, Christa W.
Liu, Xiuyun
Yang, Zeng-Jin
Koehler, Raymond C.
Martin, Lee J.
author_facet Primiani, Christopher T.
Lee, Jennifer K.
O’Brien, Caitlin E.
Chen, May W.
Perin, Jamie
Kulikowicz, Ewa
Santos, Polan
Adams, Shawn
Lester, Bailey
Rivera-Diaz, Natalia
Olberding, Valerie
Niedzwiecki, Mark V.
Ritzl, Eva K.
Habela, Christa W.
Liu, Xiuyun
Yang, Zeng-Jin
Koehler, Raymond C.
Martin, Lee J.
author_sort Primiani, Christopher T.
collection PubMed
description The effects of hypothermia on neonatal encephalopathy may vary topographically and cytopathologically in the neocortex with manifestations potentially influenced by seizures that alter the severity, distribution, and type of neuropathology. We developed a neonatal piglet survival model of hypoxic-ischemic (HI) encephalopathy and hypothermia (HT) with continuous electroencephalography (cEEG) for seizures. Neonatal male piglets received HI-normothermia (NT), HI-HT, sham-NT, or sham-HT treatments. Randomized unmedicated sham and HI piglets underwent cEEG during recovery. Survival was 2–7 days. Normal and pathological neurons were counted in different neocortical areas, identified by cytoarchitecture and connectomics, using hematoxylin and eosin staining and immunohistochemistry for RNA-binding FOX-1 homolog 3 (Rbfox3/NeuN). Seizure burden was determined. HI-NT piglets had a reduced normal/total neuron ratio and increased ischemic-necrotic/total neuron ratio relative to sham-NT and sham-HT piglets with differing severities in the anterior and posterior motor, somatosensory, and frontal cortices. Neocortical neuropathology was attenuated by HT. HT protection was prominent in layer III of the inferior parietal cortex. Rbfox3 immunoreactivity distinguished cortical neurons as: Rbfox3-positive/normal, Rbfox3-positive/ischemic-necrotic, and Rbfox3-depleted. HI piglets had an increased Rbfox3-depleted/total neuron ratio in layers II and III compared to sham-NT piglets. Neuronal Rbfox3 depletion was partly rescued by HT. Seizure burdens in HI-NT and HI-HT piglets were similar. We conclude that the neonatal HI piglet neocortex has: (1) suprasylvian vulnerability to HI and seizures; (2) a limited neuronal cytopathological repertoire in functionally different regions that engages protective mechanisms with HT; (3) higher seizure burden, insensitive to HT, that is correlated with more panlaminar ischemic-necrotic neurons in the somatosensory cortex; and (4) pathological RNA splicing protein nuclear depletion that is sensitive to HT. This work demonstrates that HT protection of the neocortex in neonatal HI is topographic and laminar, seizure unmitigating, and restores neuronal depletion of RNA splicing factor.
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spelling pubmed-106054282023-10-28 Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets Primiani, Christopher T. Lee, Jennifer K. O’Brien, Caitlin E. Chen, May W. Perin, Jamie Kulikowicz, Ewa Santos, Polan Adams, Shawn Lester, Bailey Rivera-Diaz, Natalia Olberding, Valerie Niedzwiecki, Mark V. Ritzl, Eva K. Habela, Christa W. Liu, Xiuyun Yang, Zeng-Jin Koehler, Raymond C. Martin, Lee J. Cells Article The effects of hypothermia on neonatal encephalopathy may vary topographically and cytopathologically in the neocortex with manifestations potentially influenced by seizures that alter the severity, distribution, and type of neuropathology. We developed a neonatal piglet survival model of hypoxic-ischemic (HI) encephalopathy and hypothermia (HT) with continuous electroencephalography (cEEG) for seizures. Neonatal male piglets received HI-normothermia (NT), HI-HT, sham-NT, or sham-HT treatments. Randomized unmedicated sham and HI piglets underwent cEEG during recovery. Survival was 2–7 days. Normal and pathological neurons were counted in different neocortical areas, identified by cytoarchitecture and connectomics, using hematoxylin and eosin staining and immunohistochemistry for RNA-binding FOX-1 homolog 3 (Rbfox3/NeuN). Seizure burden was determined. HI-NT piglets had a reduced normal/total neuron ratio and increased ischemic-necrotic/total neuron ratio relative to sham-NT and sham-HT piglets with differing severities in the anterior and posterior motor, somatosensory, and frontal cortices. Neocortical neuropathology was attenuated by HT. HT protection was prominent in layer III of the inferior parietal cortex. Rbfox3 immunoreactivity distinguished cortical neurons as: Rbfox3-positive/normal, Rbfox3-positive/ischemic-necrotic, and Rbfox3-depleted. HI piglets had an increased Rbfox3-depleted/total neuron ratio in layers II and III compared to sham-NT piglets. Neuronal Rbfox3 depletion was partly rescued by HT. Seizure burdens in HI-NT and HI-HT piglets were similar. We conclude that the neonatal HI piglet neocortex has: (1) suprasylvian vulnerability to HI and seizures; (2) a limited neuronal cytopathological repertoire in functionally different regions that engages protective mechanisms with HT; (3) higher seizure burden, insensitive to HT, that is correlated with more panlaminar ischemic-necrotic neurons in the somatosensory cortex; and (4) pathological RNA splicing protein nuclear depletion that is sensitive to HT. This work demonstrates that HT protection of the neocortex in neonatal HI is topographic and laminar, seizure unmitigating, and restores neuronal depletion of RNA splicing factor. MDPI 2023-10-15 /pmc/articles/PMC10605428/ /pubmed/37887298 http://dx.doi.org/10.3390/cells12202454 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Primiani, Christopher T.
Lee, Jennifer K.
O’Brien, Caitlin E.
Chen, May W.
Perin, Jamie
Kulikowicz, Ewa
Santos, Polan
Adams, Shawn
Lester, Bailey
Rivera-Diaz, Natalia
Olberding, Valerie
Niedzwiecki, Mark V.
Ritzl, Eva K.
Habela, Christa W.
Liu, Xiuyun
Yang, Zeng-Jin
Koehler, Raymond C.
Martin, Lee J.
Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets
title Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets
title_full Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets
title_fullStr Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets
title_full_unstemmed Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets
title_short Hypothermic Protection in Neocortex Is Topographic and Laminar, Seizure Unmitigating, and Partially Rescues Neurons Depleted of RNA Splicing Protein Rbfox3/NeuN in Neonatal Hypoxic-Ischemic Male Piglets
title_sort hypothermic protection in neocortex is topographic and laminar, seizure unmitigating, and partially rescues neurons depleted of rna splicing protein rbfox3/neun in neonatal hypoxic-ischemic male piglets
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605428/
https://www.ncbi.nlm.nih.gov/pubmed/37887298
http://dx.doi.org/10.3390/cells12202454
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