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Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing

Neuroserpin is a serine‐protease inhibitor mainly expressed in the CNS and involved in the inhibition of the proteolytic cascade. Animal models confirmed its neuroprotective role in perinatal hypoxia‐ischaemia and adult stroke. Although neuroserpin may be a potential therapeutic target in the treatm...

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Autores principales: Adorjan, Istvan, Tyler, Teadora, Bhaduri, Aparna, Demharter, Samuel, Finszter, Cintia Klaudia, Bako, Maria, Sebok, Oliver Marcell, Nowakowski, Tomasz J., Khodosevich, Konstantin, Møllgård, Kjeld, Kriegstein, Arnold R., Shi, Lei, Hoerder‐Suabedissen, Anna, Ansorge, Olaf, Molnár, Zoltán
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6704272/
https://www.ncbi.nlm.nih.gov/pubmed/30644551
http://dx.doi.org/10.1111/joa.12931
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author Adorjan, Istvan
Tyler, Teadora
Bhaduri, Aparna
Demharter, Samuel
Finszter, Cintia Klaudia
Bako, Maria
Sebok, Oliver Marcell
Nowakowski, Tomasz J.
Khodosevich, Konstantin
Møllgård, Kjeld
Kriegstein, Arnold R.
Shi, Lei
Hoerder‐Suabedissen, Anna
Ansorge, Olaf
Molnár, Zoltán
author_facet Adorjan, Istvan
Tyler, Teadora
Bhaduri, Aparna
Demharter, Samuel
Finszter, Cintia Klaudia
Bako, Maria
Sebok, Oliver Marcell
Nowakowski, Tomasz J.
Khodosevich, Konstantin
Møllgård, Kjeld
Kriegstein, Arnold R.
Shi, Lei
Hoerder‐Suabedissen, Anna
Ansorge, Olaf
Molnár, Zoltán
author_sort Adorjan, Istvan
collection PubMed
description Neuroserpin is a serine‐protease inhibitor mainly expressed in the CNS and involved in the inhibition of the proteolytic cascade. Animal models confirmed its neuroprotective role in perinatal hypoxia‐ischaemia and adult stroke. Although neuroserpin may be a potential therapeutic target in the treatment of the aforementioned conditions, there is still no information in the literature on its distribution during human brain development. The present study provides a detailed description of the changing spatiotemporal patterns of neuroserpin focusing on physiological human brain development. Five stages were distinguished within our examined age range which spanned from the 7th gestational week until adulthood. In particular, subplate and deep cortical plate neurons were identified as the main sources of neuroserpin production between the 25th gestational week and the first postnatal month. Our immunohistochemical findings were substantiated by single cell RNA sequencing data showing specific neuronal and glial cell types expressing neuroserpin. The characterization of neuroserpin expression during physiological human brain development is essential for forthcoming studies which will explore its involvement in pathological conditions, such as perinatal hypoxia‐ischaemia and adult stroke in human.
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spelling pubmed-67042722019-08-26 Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing Adorjan, Istvan Tyler, Teadora Bhaduri, Aparna Demharter, Samuel Finszter, Cintia Klaudia Bako, Maria Sebok, Oliver Marcell Nowakowski, Tomasz J. Khodosevich, Konstantin Møllgård, Kjeld Kriegstein, Arnold R. Shi, Lei Hoerder‐Suabedissen, Anna Ansorge, Olaf Molnár, Zoltán J Anat Original Articles Neuroserpin is a serine‐protease inhibitor mainly expressed in the CNS and involved in the inhibition of the proteolytic cascade. Animal models confirmed its neuroprotective role in perinatal hypoxia‐ischaemia and adult stroke. Although neuroserpin may be a potential therapeutic target in the treatment of the aforementioned conditions, there is still no information in the literature on its distribution during human brain development. The present study provides a detailed description of the changing spatiotemporal patterns of neuroserpin focusing on physiological human brain development. Five stages were distinguished within our examined age range which spanned from the 7th gestational week until adulthood. In particular, subplate and deep cortical plate neurons were identified as the main sources of neuroserpin production between the 25th gestational week and the first postnatal month. Our immunohistochemical findings were substantiated by single cell RNA sequencing data showing specific neuronal and glial cell types expressing neuroserpin. The characterization of neuroserpin expression during physiological human brain development is essential for forthcoming studies which will explore its involvement in pathological conditions, such as perinatal hypoxia‐ischaemia and adult stroke in human. John Wiley and Sons Inc. 2019-01-15 2019-09 /pmc/articles/PMC6704272/ /pubmed/30644551 http://dx.doi.org/10.1111/joa.12931 Text en © 2019 The Authors. Journal of Anatomy published by John Wiley & Sons Ltd on behalf of Anatomical Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Adorjan, Istvan
Tyler, Teadora
Bhaduri, Aparna
Demharter, Samuel
Finszter, Cintia Klaudia
Bako, Maria
Sebok, Oliver Marcell
Nowakowski, Tomasz J.
Khodosevich, Konstantin
Møllgård, Kjeld
Kriegstein, Arnold R.
Shi, Lei
Hoerder‐Suabedissen, Anna
Ansorge, Olaf
Molnár, Zoltán
Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing
title Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing
title_full Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing
title_fullStr Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing
title_full_unstemmed Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing
title_short Neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell RNA sequencing
title_sort neuroserpin expression during human brain development and in adult brain revealed by immunohistochemistry and single cell rna sequencing
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6704272/
https://www.ncbi.nlm.nih.gov/pubmed/30644551
http://dx.doi.org/10.1111/joa.12931
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