Department of Pharmacology and Biochemistry, National Institute of Medicinal Materials, Hoan Kiem District, Hanoi 100000, Vietnam.
National Geriatric Hospital, Dong Da District, Hanoi 100000, Vietnam.
Int J Mol Sci. 2020 May 9;21(9):3365. doi: 10.3390/ijms21093365.
L. Wettst. (BM) is a botanical component of Ayurvedic medicines and of dietary supplements used worldwide for cognitive health and function. We previously reported that administration of BM alcoholic extract (BME) prevents trimethyltin (TMT)-induced cognitive deficits and hippocampal cell damage and promotes TMT-induced hippocampal neurogenesis. In this study, we demonstrate that administration of BME improves spatial working memory in adolescent (5-week- old) healthy mice but not adult (8-week-old) mice. Moreover, improved spatial working memory was retained even at 4 weeks after terminating 1-week treatment of adolescent mice. One-week BME treatment of adolescent mice significantly enhanced hippocampal BrdU incorporation and expression of genes involved in neurogenesis determined by RNAseq analysis. Cell death, as detected by histochemistry, appeared not to be significant. A significant increase in neurogenesis was observed in the dentate gyrus region 4 weeks after terminating 1-week treatment of adolescent mice with BME. Bacopaside I, an active component of BME, promoted the proliferation of neural progenitor cells in vitro in a concentration-dependent manner via the facilitation of the Akt and ERK1/2 signaling. These results suggest that BME enhances spatial working memory in healthy adolescent mice by promoting hippocampal neurogenesis and that the effects of BME are due, in significant amounts, to bacopaside I.
L. Wettst.(BM)是一种植物成分,存在于阿育吠陀药物和世界各地用于认知健康和功能的膳食补充剂中。我们之前报道过,BM 酒精提取物(BME)的给药可预防三甲基锡(TMT)引起的认知功能障碍和海马细胞损伤,并促进 TMT 诱导的海马神经发生。在这项研究中,我们证明 BME 的给药可改善青少年(5 周龄)健康小鼠的空间工作记忆,但对成年(8 周龄)小鼠无效。此外,即使在终止 1 周治疗后 4 周,改善的空间工作记忆仍保留。1 周的 BME 处理显著增强了青少年小鼠的海马 BrdU 掺入和 RNAseq 分析确定的与神经发生相关的基因表达。组织化学检测到的细胞死亡似乎并不明显。在终止 1 周的 BME 治疗后 4 周,青少年小鼠的齿状回区域观察到神经发生显著增加。BME 的一种活性成分 bacopaside I 通过促进 Akt 和 ERK1/2 信号通路,以浓度依赖的方式促进神经祖细胞的增殖。这些结果表明,BME 通过促进海马神经发生来增强健康青少年小鼠的空间工作记忆,并且 BME 的作用在很大程度上归因于 bacopaside I。