The Therapeutic Effect of Acanthopanax senticosus Components on Radiation-Induced Brain Injury Based on the Pharmacokinetics and Neurotransmitters

(AS) is a medicinal and food homologous plant with many biological activities. In this research, we generated a brain injury model by Co -γ ray radiation at 4 Gy, and gavaged adult mice with the extract with AS, Acanthopanax senticocus polysaccharides (ASPS), flavones, syringin and eleutheroside E (...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2022-02, Vol.27 (3), p.1106
Hauptverfasser: Song, Chen, Li, Sijia, Duan, Fangyuan, Liu, Mengyao, Shan, Shan, Ju, Ting, Zhang, Yingchun, Lu, Weihong
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Sprache:eng
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Zusammenfassung:(AS) is a medicinal and food homologous plant with many biological activities. In this research, we generated a brain injury model by Co -γ ray radiation at 4 Gy, and gavaged adult mice with the extract with AS, Acanthopanax senticocus polysaccharides (ASPS), flavones, syringin and eleutheroside E (EE) to explore the therapeutic effect and metabolic characteristics of AS on the brain injury. Behavioral tests and pathological experiments showed that the AS prevented the irradiated mice from learning and memory ability impairment and protected the neurons of irradiated mice. Meanwhile, the functional components of AS increased the antioxidant activity of irradiated mice. Furthermore, we found the changes of neurotransmitters, especially in the EE and syringin groups. Finally, distribution and pharmacokinetic analysis of AS showed that the functional components, especially EE, could exert their therapeutic effects in brain of irradiated mice. This lays a theoretical foundation for the further research on the treatment of radiation-induced brain injury by AS.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules27031106