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논문 기본 정보

자료유형
학술저널
저자정보
Qingxia Huang (Changchun University of Chinese Medicine) Jing Li (Changchun University of Chinese Medicine) Jinjin Chen (Changchun University of Chinese Medicine) Zepeng Zhang (Changchun University of Chinese Medicine) Peng Xu (Changchun University of Chinese Medicine) Hongyu Qi (Changchun University of Chinese Medicine) Zhaoqiang Chen (Changchun University of Chinese Medicine) Jiaqi Liu (Changchun University of Chinese Medicine) Jing Lu (Changchun University of Chinese Medicine) Mengqi Shi (Changchun University of Chinese Medicine) Yibin Zhang (Changchun University of Chinese Medicine) Ying Ma (Changchun University of Chinese Medicine) Daqing Zhao (Changchun University of Chinese Medicine) Xiangyan Li (Changchun University of Chinese Medicine)
저널정보
고려인삼학회 Journal of Ginseng Research Journal of Ginseng Research Vol.47 No.3
발행연도
2023.5
수록면
408 - 419 (12page)

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Background: Ginsenoside compound K (CK), the main active metabolite in Panax ginseng, has shown good safety and bioavailability in clinical trials and exerts neuroprotective effects in cerebral ischemic stroke. However, its potential role in the prevention of cerebral ischemia/reperfusion (I/R) injury remains unclear. Our study aimed to investigate the molecular mechanism of ginsenoside CK against cerebral I/R injury.
Methods: We used a combination of in vitro and in vivo models, including oxygen and glucose deprivation/reperfusion induced PC12 cell model and middle cerebral artery occlusion/reperfusion induced rat model, to mimic I/R injury. Intracellular oxygen consumption and extracellular acidification rate were analyzed by Seahorse multifunctional energy metabolism system; ATP production was detected by luciferase method. The number and size of mitochondria were analyzed by transmission electron microscopy and MitoTracker probe combined with confocal laser microscopy. The potential mechanisms of ginsenoside CK on mitochondrial dynamics and bioenergy were evaluated by RNA interference, pharmacological antagonism combined with co-immunoprecipitation analysis and phenotypic analysis.
Results: Ginsenoside CK pretreatment could attenuate mitochondrial translocation of DRP1, mitophagy, mitochondrial apoptosis, and neuronal bioenergy imbalance against cerebral I/R injury in both in vitro and in vivo models. Our data also confirmed that ginsenoside CK administration could reduce the binding affinity of Mul1 and Mfn2 to inhibit the ubiquitination and degradation of Mfn2, thereby elevating the protein level of Mfn2 in cerebral I/R injury.
Conclusion: These data provide evidence that ginsenoside CK may be a promising therapeutic agent against cerebral I/R injury via Mul1/Mfn2mediated mitochondrial dynamics and bioenergy.

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

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