Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain Injury

Brain injury is a significant risk factor for chronic gliosis and neurodegenerative diseases. Currently, no treatment is available for neuroinflammation caused by the action of glial cells following brain injury. In this study, we investigated the quinpirole-mediated activation of dopamine D2 recept...

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Main Authors: Sayed Ibrar Alam, Min Gi Jo, Tae Ju Park, Rahat Ullah, Sareer Ahmad, Shafiq Ur Rehman, Myeong Ok Kim
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Biomedicines
Subjects:
Online Access:https://www.mdpi.com/2227-9059/9/1/47
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spelling doaj-550cc3668697469f8408373c38d6fc372021-01-08T00:00:15ZengMDPI AGBiomedicines2227-90592021-01-019474710.3390/biomedicines9010047Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain InjurySayed Ibrar Alam0Min Gi Jo1Tae Ju Park2Rahat Ullah3Sareer Ahmad4Shafiq Ur Rehman5Myeong Ok Kim6Division of Life Sciences and Applied Life Science (BK21 FOUR), College of Natural Science, Gyeongsang National University, Jinju 52828, KoreaDivision of Life Sciences and Applied Life Science (BK21 FOUR), College of Natural Science, Gyeongsang National University, Jinju 52828, KoreaPaul O’Gorman Leukaemia Research Centre, Institute of Cancer Sciences, MVLS, University of Glasgow, Glasgow G12 8QQ, UKDivision of Life Sciences and Applied Life Science (BK21 FOUR), College of Natural Science, Gyeongsang National University, Jinju 52828, KoreaDivision of Life Sciences and Applied Life Science (BK21 FOUR), College of Natural Science, Gyeongsang National University, Jinju 52828, KoreaDivision of Life Sciences and Applied Life Science (BK21 FOUR), College of Natural Science, Gyeongsang National University, Jinju 52828, KoreaDivision of Life Sciences and Applied Life Science (BK21 FOUR), College of Natural Science, Gyeongsang National University, Jinju 52828, KoreaBrain injury is a significant risk factor for chronic gliosis and neurodegenerative diseases. Currently, no treatment is available for neuroinflammation caused by the action of glial cells following brain injury. In this study, we investigated the quinpirole-mediated activation of dopamine D2 receptors (D2R) in a mouse model of traumatic brain injury (TBI). We also investigated the neuroprotective effects of quinpirole (a D2R agonist) against glial cell-induced neuroinflammation secondary to TBI in adult mice. After the brain injury, we injected quinpirole into the TBI mice at a dose of 1 mg/kg daily intraperitoneally for 7 days. Our results showed suppression of D2R expression and deregulation of downstream signaling molecules in ipsilateral cortex and striatum after TBI on day 7. Quinpirole administration regulated D2R expression and significantly reduced glial cell-induced neuroinflammation via the D2R/Akt/glycogen synthase kinase 3 beta (GSK3-β) signaling pathway after TBI. Quinpirole treatment concomitantly attenuated increase in glial cells, neuronal apoptosis, synaptic dysfunction, and regulated proteins associated with the blood–brain barrier, together with the recovery of lesion volume in the TBI mouse model. Additionally, our in vitro results confirmed that quinpirole reversed the microglial condition media complex-mediated deleterious effects and regulated D2R levels in HT22 cells. This study showed that quinpirole administration after TBI reduced secondary brain injury-induced glial cell activation and neuroinflammation via regulation of the D2R/Akt/GSK3-β signaling pathways. Our study suggests that quinpirole may be a safe therapeutic agent against TBI-induced neurodegeneration.https://www.mdpi.com/2227-9059/9/1/47brain injuryquinpiroledopamine D2 receptorsglial cellneuroinflammationneurodegeneration
collection DOAJ
language English
format Article
sources DOAJ
author Sayed Ibrar Alam
Min Gi Jo
Tae Ju Park
Rahat Ullah
Sareer Ahmad
Shafiq Ur Rehman
Myeong Ok Kim
spellingShingle Sayed Ibrar Alam
Min Gi Jo
Tae Ju Park
Rahat Ullah
Sareer Ahmad
Shafiq Ur Rehman
Myeong Ok Kim
Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain Injury
Biomedicines
brain injury
quinpirole
dopamine D2 receptors
glial cell
neuroinflammation
neurodegeneration
author_facet Sayed Ibrar Alam
Min Gi Jo
Tae Ju Park
Rahat Ullah
Sareer Ahmad
Shafiq Ur Rehman
Myeong Ok Kim
author_sort Sayed Ibrar Alam
title Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain Injury
title_short Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain Injury
title_full Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain Injury
title_fullStr Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain Injury
title_full_unstemmed Quinpirole-Mediated Regulation of Dopamine D2 Receptors Inhibits Glial Cell-Induced Neuroinflammation in Cortex and Striatum after Brain Injury
title_sort quinpirole-mediated regulation of dopamine d2 receptors inhibits glial cell-induced neuroinflammation in cortex and striatum after brain injury
publisher MDPI AG
series Biomedicines
issn 2227-9059
publishDate 2021-01-01
description Brain injury is a significant risk factor for chronic gliosis and neurodegenerative diseases. Currently, no treatment is available for neuroinflammation caused by the action of glial cells following brain injury. In this study, we investigated the quinpirole-mediated activation of dopamine D2 receptors (D2R) in a mouse model of traumatic brain injury (TBI). We also investigated the neuroprotective effects of quinpirole (a D2R agonist) against glial cell-induced neuroinflammation secondary to TBI in adult mice. After the brain injury, we injected quinpirole into the TBI mice at a dose of 1 mg/kg daily intraperitoneally for 7 days. Our results showed suppression of D2R expression and deregulation of downstream signaling molecules in ipsilateral cortex and striatum after TBI on day 7. Quinpirole administration regulated D2R expression and significantly reduced glial cell-induced neuroinflammation via the D2R/Akt/glycogen synthase kinase 3 beta (GSK3-β) signaling pathway after TBI. Quinpirole treatment concomitantly attenuated increase in glial cells, neuronal apoptosis, synaptic dysfunction, and regulated proteins associated with the blood–brain barrier, together with the recovery of lesion volume in the TBI mouse model. Additionally, our in vitro results confirmed that quinpirole reversed the microglial condition media complex-mediated deleterious effects and regulated D2R levels in HT22 cells. This study showed that quinpirole administration after TBI reduced secondary brain injury-induced glial cell activation and neuroinflammation via regulation of the D2R/Akt/GSK3-β signaling pathways. Our study suggests that quinpirole may be a safe therapeutic agent against TBI-induced neurodegeneration.
topic brain injury
quinpirole
dopamine D2 receptors
glial cell
neuroinflammation
neurodegeneration
url https://www.mdpi.com/2227-9059/9/1/47
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