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Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients

The hippocampus is the most common seizure focus in people. Within the hippocampus, aberrant neurogenesis plays a critical role in the initiation and progression of epilepsy in rodent models, but it is unknown whether this also holds true in humans. To address this question, we used immunofluorescen...

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Autores principales: Ammothumkandy, Aswathy, Ravina, Kristine, Wolseley, Victoria, Tartt, Alexandria N, Yu, Pen-Ning, Corona, Luis, Zhang, Naibo, Nune, George, Kalayjian, Laura, Mann, J. John, Rosoklija, Gorazd B., Arango, Victoria, Dwork, Andrew J., Lee, Brian, Smith, Jason A D, Song, Dong, Berger, Theodore W, Heck, Christianne, Chow, Robert H, Boldrini, Maura, Liu, Charles Y, Russin, Jonathan J, Bonaguidi, Michael A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9097543/
https://www.ncbi.nlm.nih.gov/pubmed/35383330
http://dx.doi.org/10.1038/s41593-022-01044-2
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author Ammothumkandy, Aswathy
Ravina, Kristine
Wolseley, Victoria
Tartt, Alexandria N
Yu, Pen-Ning
Corona, Luis
Zhang, Naibo
Nune, George
Kalayjian, Laura
Mann, J. John
Rosoklija, Gorazd B.
Arango, Victoria
Dwork, Andrew J.
Lee, Brian
Smith, Jason A D
Song, Dong
Berger, Theodore W
Heck, Christianne
Chow, Robert H
Boldrini, Maura
Liu, Charles Y
Russin, Jonathan J
Bonaguidi, Michael A
author_facet Ammothumkandy, Aswathy
Ravina, Kristine
Wolseley, Victoria
Tartt, Alexandria N
Yu, Pen-Ning
Corona, Luis
Zhang, Naibo
Nune, George
Kalayjian, Laura
Mann, J. John
Rosoklija, Gorazd B.
Arango, Victoria
Dwork, Andrew J.
Lee, Brian
Smith, Jason A D
Song, Dong
Berger, Theodore W
Heck, Christianne
Chow, Robert H
Boldrini, Maura
Liu, Charles Y
Russin, Jonathan J
Bonaguidi, Michael A
author_sort Ammothumkandy, Aswathy
collection PubMed
description The hippocampus is the most common seizure focus in people. Within the hippocampus, aberrant neurogenesis plays a critical role in the initiation and progression of epilepsy in rodent models, but it is unknown whether this also holds true in humans. To address this question, we used immunofluorescence on control healthy hippocampus and surgical resections from mesial temporal lobe epilepsy (MTLE), plus neural stem cell cultures, and multi-electrode recordings of ex vivo hippocampal slices. We found that a longer duration of epilepsy is associated with a sharp decline in neuronal production, and persistent numbers in astrogenesis. Further, immature neurons in MTLE are mostly inactive, and are not observed in cases with local epileptiform-like activity. However, immature astroglia are present in every MTLE case and their location and activity are dependent upon epileptiform-like activity. Immature astroglia, rather than newborn neurons, therefore represent a potential target to continually modulate adult human neuronal hyperactivity.
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spelling pubmed-90975432022-10-05 Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients Ammothumkandy, Aswathy Ravina, Kristine Wolseley, Victoria Tartt, Alexandria N Yu, Pen-Ning Corona, Luis Zhang, Naibo Nune, George Kalayjian, Laura Mann, J. John Rosoklija, Gorazd B. Arango, Victoria Dwork, Andrew J. Lee, Brian Smith, Jason A D Song, Dong Berger, Theodore W Heck, Christianne Chow, Robert H Boldrini, Maura Liu, Charles Y Russin, Jonathan J Bonaguidi, Michael A Nat Neurosci Article The hippocampus is the most common seizure focus in people. Within the hippocampus, aberrant neurogenesis plays a critical role in the initiation and progression of epilepsy in rodent models, but it is unknown whether this also holds true in humans. To address this question, we used immunofluorescence on control healthy hippocampus and surgical resections from mesial temporal lobe epilepsy (MTLE), plus neural stem cell cultures, and multi-electrode recordings of ex vivo hippocampal slices. We found that a longer duration of epilepsy is associated with a sharp decline in neuronal production, and persistent numbers in astrogenesis. Further, immature neurons in MTLE are mostly inactive, and are not observed in cases with local epileptiform-like activity. However, immature astroglia are present in every MTLE case and their location and activity are dependent upon epileptiform-like activity. Immature astroglia, rather than newborn neurons, therefore represent a potential target to continually modulate adult human neuronal hyperactivity. 2022-04 2022-04-05 /pmc/articles/PMC9097543/ /pubmed/35383330 http://dx.doi.org/10.1038/s41593-022-01044-2 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Ammothumkandy, Aswathy
Ravina, Kristine
Wolseley, Victoria
Tartt, Alexandria N
Yu, Pen-Ning
Corona, Luis
Zhang, Naibo
Nune, George
Kalayjian, Laura
Mann, J. John
Rosoklija, Gorazd B.
Arango, Victoria
Dwork, Andrew J.
Lee, Brian
Smith, Jason A D
Song, Dong
Berger, Theodore W
Heck, Christianne
Chow, Robert H
Boldrini, Maura
Liu, Charles Y
Russin, Jonathan J
Bonaguidi, Michael A
Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients
title Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients
title_full Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients
title_fullStr Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients
title_full_unstemmed Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients
title_short Altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients
title_sort altered adult neurogenesis and gliogenesis in mesial temporal lobe epilepsy patients
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9097543/
https://www.ncbi.nlm.nih.gov/pubmed/35383330
http://dx.doi.org/10.1038/s41593-022-01044-2
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