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Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model

OBJECTIVE: This animal model aimed to compare the rat group that received brain irradiation and did not receive additional treatment (only saline) and the rat group that underwent brain irradiation and received Granulocyte colony stimulating factor (G-CSF) treatment. In addition, the effects of G-CS...

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Autores principales: Gürkan, Gökhan, Atasoy, Özüm, Çini, Nilsu, Sever, İbrahim Halil, Özkul, Bahattin, Yaprak, Gökhan, Şirin, Cansın, Uyanıkgil, Yiğit, Kızmazoğlu, Ceren, Erdoğan, Mümin Alper, Erbaş, Oytun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Neurosurgical Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10483164/
https://www.ncbi.nlm.nih.gov/pubmed/37165625
http://dx.doi.org/10.3340/jkns.2023.0049
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author Gürkan, Gökhan
Atasoy, Özüm
Çini, Nilsu
Sever, İbrahim Halil
Özkul, Bahattin
Yaprak, Gökhan
Şirin, Cansın
Uyanıkgil, Yiğit
Kızmazoğlu, Ceren
Erdoğan, Mümin Alper
Erbaş, Oytun
author_facet Gürkan, Gökhan
Atasoy, Özüm
Çini, Nilsu
Sever, İbrahim Halil
Özkul, Bahattin
Yaprak, Gökhan
Şirin, Cansın
Uyanıkgil, Yiğit
Kızmazoğlu, Ceren
Erdoğan, Mümin Alper
Erbaş, Oytun
author_sort Gürkan, Gökhan
collection PubMed
description OBJECTIVE: This animal model aimed to compare the rat group that received brain irradiation and did not receive additional treatment (only saline) and the rat group that underwent brain irradiation and received Granulocyte colony stimulating factor (G-CSF) treatment. In addition, the effects of G-CSF on brain functions were examined by magnetic resonance (MR) imaging and histopathologically. METHODS: This study used 24 female Wistar albino rats. Drug administration (saline or G-CSF) was started at the beginning of the study and continued for 15 days after whole-brain radiotherapy (WBRT). WBRT was given on day 7 of the start of the study. At the end of 15 days, the behavioral tests, including the three-chamber sociability test, open field test, and passive avoidance learning test, were done. After the behavioral test, the animals performed the MR spectroscopy procedure. At the end of the study, cervical dislocation was applied to all animals. RESULTS: G-CSF treatment positively affected the results of the three-chamber sociability test, open-space test and passive avoidance learning test, cornu Ammonis (CA) 1, CA3, and Purkinje neuron counts, and the brain levels of brain-derived neurotrophic factor and postsynaptic density protein-95. However, G-CSF treatment reduced the glial fibrillary acidic protein immunostaining index and brain levels of malondialdehyde, tumor necrosis factor-alpha, nuclear factor kappa-B, and lactate. In addition, on MR spectroscopy, G-CSF had a reversible effect on brain lactate levels. CONCLUSION: In this first designed brain irradiation animal model, which evaluated G-CSF effects, we observed that G-CSF had reparative, neuroprotective and anti-neurodegenerative effects and had increased neurotrophic factor expression, neuronal counts, and morphology changes. In addition, G-CSF had a proven lactate-lowering effect in MR spectroscopy and brain materials.
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spelling pubmed-104831642023-09-08 Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model Gürkan, Gökhan Atasoy, Özüm Çini, Nilsu Sever, İbrahim Halil Özkul, Bahattin Yaprak, Gökhan Şirin, Cansın Uyanıkgil, Yiğit Kızmazoğlu, Ceren Erdoğan, Mümin Alper Erbaş, Oytun J Korean Neurosurg Soc Laboratory Research OBJECTIVE: This animal model aimed to compare the rat group that received brain irradiation and did not receive additional treatment (only saline) and the rat group that underwent brain irradiation and received Granulocyte colony stimulating factor (G-CSF) treatment. In addition, the effects of G-CSF on brain functions were examined by magnetic resonance (MR) imaging and histopathologically. METHODS: This study used 24 female Wistar albino rats. Drug administration (saline or G-CSF) was started at the beginning of the study and continued for 15 days after whole-brain radiotherapy (WBRT). WBRT was given on day 7 of the start of the study. At the end of 15 days, the behavioral tests, including the three-chamber sociability test, open field test, and passive avoidance learning test, were done. After the behavioral test, the animals performed the MR spectroscopy procedure. At the end of the study, cervical dislocation was applied to all animals. RESULTS: G-CSF treatment positively affected the results of the three-chamber sociability test, open-space test and passive avoidance learning test, cornu Ammonis (CA) 1, CA3, and Purkinje neuron counts, and the brain levels of brain-derived neurotrophic factor and postsynaptic density protein-95. However, G-CSF treatment reduced the glial fibrillary acidic protein immunostaining index and brain levels of malondialdehyde, tumor necrosis factor-alpha, nuclear factor kappa-B, and lactate. In addition, on MR spectroscopy, G-CSF had a reversible effect on brain lactate levels. CONCLUSION: In this first designed brain irradiation animal model, which evaluated G-CSF effects, we observed that G-CSF had reparative, neuroprotective and anti-neurodegenerative effects and had increased neurotrophic factor expression, neuronal counts, and morphology changes. In addition, G-CSF had a proven lactate-lowering effect in MR spectroscopy and brain materials. Korean Neurosurgical Society 2023-09 2023-05-11 /pmc/articles/PMC10483164/ /pubmed/37165625 http://dx.doi.org/10.3340/jkns.2023.0049 Text en Copyright © 2023 The Korean Neurosurgical Society https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0 (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Laboratory Research
Gürkan, Gökhan
Atasoy, Özüm
Çini, Nilsu
Sever, İbrahim Halil
Özkul, Bahattin
Yaprak, Gökhan
Şirin, Cansın
Uyanıkgil, Yiğit
Kızmazoğlu, Ceren
Erdoğan, Mümin Alper
Erbaş, Oytun
Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model
title Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model
title_full Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model
title_fullStr Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model
title_full_unstemmed Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model
title_short Reparative, Neuroprotective and Anti-neurodegenerative Effects of Granulocyte Colony Stimulating Factor in Radiation-Induced Brain Injury Model
title_sort reparative, neuroprotective and anti-neurodegenerative effects of granulocyte colony stimulating factor in radiation-induced brain injury model
topic Laboratory Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10483164/
https://www.ncbi.nlm.nih.gov/pubmed/37165625
http://dx.doi.org/10.3340/jkns.2023.0049
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