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논문 기본 정보

자료유형
학술저널
저자정보
Jinhong Park (Konkuk University) Minjae Lee (Konkuk University) Minsu Kim (Konkuk University) Sunhong Moon (Konkuk University) Seunghee Kim (Konkuk University) Sueun Kim (Konkuk University) Seong-Ho Koh (Hanyang University Guri Hospital) Young-Myeong Kim (Kangwon National University) Yoon Kyung Choi (Konkuk University)
저널정보
고려인삼학회 Journal of Ginseng Research Journal of Ginseng Research Vol.46 No.3
발행연도
2022.5
수록면
408 - 417 (10page)

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Background: Korean Red Ginseng extract (KRGE) has been used as a health supplement and herbal medicine. Astrocytes are one of the key cells in the central nervous system (CNS) and have bioenergetic potential as they stimulate mitochondrial biogenesis. They play a critical role in connecting the brain vasculature and nerves in the CNS.
Methods: Brain samples from KRGE-administered mice were tested using immunohistochemistry. Treatment of human brain astrocytes with KRGE was subjected to assays such as proliferation, cytotoxicity, Mitotracker, ATP production, and O₂ consumption rate as well as western blotting to demonstrate the expression of proteins related to mitochondria functions. The expression of hypoxia-inducible factor-1a (HIF-1α) was diminished utilizing siRNA transfection.
Results: Brain samples from KRGE-administered mice harbored an increased number of GFAP-expressing astrocytes. KRGE triggered the proliferation of astrocytes in vitro. Enhanced mitochondrial biogenesis induced by KRGE was detected using Mitotracker staining, ATP production, and O₂ consumption rate assays. The expression of proteins related to mitochondrial electron transport was increased in KRGEtreated astrocytes. These effects were blocked by HIF-1a knockdown. The factors secreted from KRGEtreated astrocytes were determined, revealing the expression of various cytokines and growth factors, especially those related to angiogenesis and neurogenesis. KRGE-treated astrocyte conditioned media enhanced the differentiation of adult neural stem cells into mature neurons, increasing the migration of endothelial cells, and these effects were reduced in the background of HIF-1a knockdown.
Conclusion: Our findings suggest that KRGE exhibits prophylactic potential by stimulating astrocyte mitochondrial biogenesis through HIF-1α, resulting in improved neurovascular function.

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ABSTRACT
1. Introduction
2. Materials and methods
3. Results
4. Discussion
References

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