Memory enhancement effect of saponins from Eleutherococcus senticosus leaves and blood-brain barrier-permeated saponins profiling using a pseudotargeted monitoring strategy.
Yu-Hong HuangWen-Luan DingXi-Tao LiMeng-Ting CaiHui-Lin LiZhi-You YangXiu-Hong PiaoShu ZhuChihiro TohdaKatsuko KomatsuShu-Mei WangYue-Wei GePublished in: Food & function (2022)
Dried Eleutherococcus senticosus leaves (ESL), also known as Siberian ginseng tea, are beneficial for human neural disorders. Our previous studies showed that the aqueous extract of ESL enhanced memory in mice, and its saponin fraction (ESL-SAP) exhibited promising neuroprotective activities in vitro ; however, the in vivo neurally related effect, bioactive material basis, and possible mechanism of action of ESL-SAP have not been investigated. Here, a series of memory and learning tests were carried out, and the results evidenced a significant enhancement effect of ESL-SAP. Furthermore, an in vivo saponin library-guided pseudotargeted strategy was established to support the rapid monitoring of 26 blood-brain barrier (BBB)-permeated saponins from ESL-SAP-administered rats. A further network pharmacology analysis was conducted on BBB-permeated compounds, which indicated that the in vivo mechanism of ESL-SAP might be effective through multiple targets and pathways, such as the AGE-RAGE signaling pathway and PI3K-Akt signaling pathway, to exert neuroprotective effects. Moreover, the molecular docking experiments demonstrated that key BBB-transferred saponins primarily interacted with targets HRAS, MAPK1, and MAPK8 to produce the neuroprotective effect.
Keyphrases
- blood brain barrier
- pi k akt
- signaling pathway
- cerebral ischemia
- molecular docking
- cell cycle arrest
- cell proliferation
- epithelial mesenchymal transition
- working memory
- induced apoptosis
- endothelial cells
- oxidative stress
- molecular dynamics simulations
- type diabetes
- cell death
- atomic force microscopy
- high resolution
- brain injury
- adipose tissue
- skeletal muscle
- insulin resistance
- quantum dots
- high speed