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Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury

The survival of microglia depends on the colony-stimulating factor-1 receptor (CSF1R) signaling pathway under physiological conditions. Ki20227 is a highly selective CSF1R inhibitor that has been shown to change the morphology of microglia. However, the effects of Ki20227 on the progression of ische...

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Autores principales: Jiang, Cheng, Wang, Ze-Ning, Kang, Yu-Chen, Chen, Yi, Lu, Wei-Xin, Ren, Hai-Jun, Hou, Bo-Ru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8451550/
https://www.ncbi.nlm.nih.gov/pubmed/34100449
http://dx.doi.org/10.4103/1673-5374.314318
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author Jiang, Cheng
Wang, Ze-Ning
Kang, Yu-Chen
Chen, Yi
Lu, Wei-Xin
Ren, Hai-Jun
Hou, Bo-Ru
author_facet Jiang, Cheng
Wang, Ze-Ning
Kang, Yu-Chen
Chen, Yi
Lu, Wei-Xin
Ren, Hai-Jun
Hou, Bo-Ru
author_sort Jiang, Cheng
collection PubMed
description The survival of microglia depends on the colony-stimulating factor-1 receptor (CSF1R) signaling pathway under physiological conditions. Ki20227 is a highly selective CSF1R inhibitor that has been shown to change the morphology of microglia. However, the effects of Ki20227 on the progression of ischemic stroke are unclear. In this study, male C57BL/6 mouse models of focal cerebral ischemic injury were established through the occlusion of the middle cerebral artery and then administered 3 mg/g Ki20227 for 3 successive days. The results revealed that the number of ionized calcium-binding adaptor molecule 1/bromodeoxyuridine double positive cells in the infarct tissue was reduced, the degree of edema was increased, neurological deficits were aggravated, infarct volume was increased, and the number of peri-infarct Nissl bodies was reduced. The number of terminal deoxynucleotidyl transferase dUTP nick-end labeling-positive cells in the peri-infarct tissue was increased. The expression levels of Bax and Cleaved caspase-3 were up-regulated. Bcl-2 expression was downregulated. The expression levels of inflammatory factors and oxidative stress-associated factors were increased. These findings suggested that Ki20227 blocked microglial proliferation and aggravated the pathological progression of ischemia/reperfusion injury in a transient middle cerebral artery occlusion model. This study was approved by the Animal Ethics Committee of Lanzhou University Second Hospital (approval No. D2020-68) on March 6, 2020.
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spelling pubmed-84515502021-10-18 Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury Jiang, Cheng Wang, Ze-Ning Kang, Yu-Chen Chen, Yi Lu, Wei-Xin Ren, Hai-Jun Hou, Bo-Ru Neural Regen Res Research Article The survival of microglia depends on the colony-stimulating factor-1 receptor (CSF1R) signaling pathway under physiological conditions. Ki20227 is a highly selective CSF1R inhibitor that has been shown to change the morphology of microglia. However, the effects of Ki20227 on the progression of ischemic stroke are unclear. In this study, male C57BL/6 mouse models of focal cerebral ischemic injury were established through the occlusion of the middle cerebral artery and then administered 3 mg/g Ki20227 for 3 successive days. The results revealed that the number of ionized calcium-binding adaptor molecule 1/bromodeoxyuridine double positive cells in the infarct tissue was reduced, the degree of edema was increased, neurological deficits were aggravated, infarct volume was increased, and the number of peri-infarct Nissl bodies was reduced. The number of terminal deoxynucleotidyl transferase dUTP nick-end labeling-positive cells in the peri-infarct tissue was increased. The expression levels of Bax and Cleaved caspase-3 were up-regulated. Bcl-2 expression was downregulated. The expression levels of inflammatory factors and oxidative stress-associated factors were increased. These findings suggested that Ki20227 blocked microglial proliferation and aggravated the pathological progression of ischemia/reperfusion injury in a transient middle cerebral artery occlusion model. This study was approved by the Animal Ethics Committee of Lanzhou University Second Hospital (approval No. D2020-68) on March 6, 2020. Wolters Kluwer - Medknow 2021-06-07 /pmc/articles/PMC8451550/ /pubmed/34100449 http://dx.doi.org/10.4103/1673-5374.314318 Text en Copyright: © Neural Regeneration Research https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Research Article
Jiang, Cheng
Wang, Ze-Ning
Kang, Yu-Chen
Chen, Yi
Lu, Wei-Xin
Ren, Hai-Jun
Hou, Bo-Ru
Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury
title Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury
title_full Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury
title_fullStr Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury
title_full_unstemmed Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury
title_short Ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury
title_sort ki20227 aggravates apoptosis, inflammatory response, and oxidative stress after focal cerebral ischemia injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8451550/
https://www.ncbi.nlm.nih.gov/pubmed/34100449
http://dx.doi.org/10.4103/1673-5374.314318
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