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생쥐 미세아교세포(BV2)에서 Corticotropin-releasing Hormone (CRH)에 의한 Nitric Oxide (NO) 생성의 증가Enhancement of Nitric Oxide Production by Corticotropin- releasing Hormone (CRH) in Murine Microglial Cells, BV2.

Other Titles
Enhancement of Nitric Oxide Production by Corticotropin- releasing Hormone (CRH) in Murine Microglial Cells, BV2.
Authors
조대호양율희양영
Issue Date
Mar-2004
Publisher
대한면역학회
Keywords
Corticotropin-releasing hormone; nitric oxide; microglial cells; Corticotropin-releasing hormone; nitric oxide; microglial cells
Citation
Immune Network, v.4, no.1, pp 60 - 64
Pages
5
Journal Title
Immune Network
Volume
4
Number
1
Start Page
60
End Page
64
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/16071
ISSN
1598-2629
2092-6685
Abstract
Background: Microglial cells, major immune effector cells in the central nervous system, become activated in neurodegenerative disorders. Activated microglial cells produce proinflammatory mediators such as nitric oxide (NO), tumor necrosis factor-α and interleukin-1β(IL-1β). These proinflammatory mediators have been shown to be significantly increased in the neurodegenerative disorders such as Alzhimer's disease and Pakinson's disease. It was known that one of the neurodegeneration source is stress and it is important to elucidate mechanisms of the stress response for understanding the stress-related disorders and developing improved treatments. Because one of the neuropeptide which plays a main role in regulating the stress response is corticotropin- releasing hormone (CRH), we analyzed the regulation of NO release by CRH in BV2 murine microglial cell as macrophage in the brain. Methods: First, we tested the CRH receptor expression in the mRNA levels by RT-PCR. To test the regulation of NO release by CRH, cells were treated with CRH and then NO release was measured by Griess reagent assay. Results: Our study demonstrated that CRH receptor 1 was expressed in BV2 murine microglial cells and CRH treatment enhanced NO production. Furthermore, additive effects of lipopolysaccaride (LPS) and CRH were confirmed in NO production time dependantly. Conclusion: Taken together, these data indicated that CRH is an important mediator to regulate NO release on microglial cells in the brain during stress. (Immune Network 2004;4(1):60-64)
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대학 > 기초교양대학 > 기초교양학부 > 1. Journal Articles

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