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논문 기본 정보

자료유형
학술저널
저자정보
Se-Hwa Jung (Department of Biomedical Laboratory Science Konyang University Daejeon Korea) Seong-Min Lee (Department of Biomedical Laboratory Science Konyang University Daejeon Korea) Ji-Sun Ha (Department of Biomedical Laboratory Science Konyang University Daejeon Korea) 양승주 (Department of Biomedical Laboratory Science Konyang University Daejeon Korea) Pyung-Hwan Kim (Department of Biomedical Laboratory Science Konyang University Daejeon Korea)
저널정보
대한임상검사과학회 대한임상검사과학회지 대한임상검사과학회지 제52권 제4호
발행연도
2020.1
수록면
389 - 397 (9page)

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Microglial cells function as major immune cells in the brain, playing an important role in the protection and damage of neurons. BV2 microglia, activated by drug stimulation, secrete inflammatory cytokines by activating the nuclear factor kappa-light-chain-enhancer of the activated B cells pathway and are involved in neuroinflammatory and immune responses. The overactivation of microglia by stimuli can cause neuronal damage, leading to brain disease. Noni, a natural product, reduces the activity of microglia to prevent neuronal damage and is a potential natural medicine because it exerts excellent regeneration and anti-inflammatory effects on damaged cells. In this study, when noni was used to treat BV2 cells stimulated by the anti-cancer drug doxorubicin, it reduced the release of pro-inflammatory cytokines from BV2. On the other hand, neuronal damage is a side effect of doxorubicin. Therefore, the cytokines released from doxorubicin-stimulated BV2 cells treated with noni had a positive effect on the neuronal viability compared to those released from doxorubicin-stimulated BV2 cells not treated with Noni. Thus, Noni increases neuronal viability. These results suggest that noni inhibits the release of cytokines by regulating the nuclear factor kappa-light-chain-enhancer of the activated B cells pathway of BV2, thereby inhibiting neuronal damage.

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