Lee Chia-Yu, Lee Chang-Ti, Tzeng I-Shiang, Kuo Chan-Yen, Tsai Fu-Ming, Chen Mao-Liang
Department of Chinese Medicine, Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, New Taipei 231, Taiwan.
Department of Research, Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, New Taipei 231, Taiwan.
Evid Based Complement Alternat Med. 2021 Sep 1;2021:6854860. doi: 10.1155/2021/6854860. eCollection 2021.
Poria is used as a traditional Chinese herbal medicine with anti-inflammatory, anticancer, and mood-stabilizing properties. Poria contains triterpenoids and polysaccharides, which are reported to regulate the cytoplasmic free calcium associated with the -methyl-D-aspartate receptor and affect the cell function of neonatal rat nerve cells and hippocampal neurons. Although the modulatory effects of Poria on neuronal function have been widely reported, the molecular mechanism of these effects is unclear. Cell migration ability and the reorganization of actin filaments are important biological functions during neuronal development, and they can be regulated mainly by the Rho signaling pathway. We found that the cell migration ability and actin condensation in B35 cells enhanced by (a water solution of cum Radix Pini (PRP) or White Poria (WP)) might be caused by increased RhoA and CDC42 activity and increased expression of downstream ROCK1, p-MLC2, N-WASP, and ARP2/3 in B35 cells. Similar modulations of cell migration ability, actin condensation, and Rho signaling pathway were also observed in the C6 glial cell line, except for the PRP-induced regulation of RhoA and CDC42 activities. Ketamine-induced inhibition of cell migration and actin condensation can be restored by . In addition, we observed that the increased expression of RhoA and ROCK1 or the decreased expression of CDC42 and N-WASP caused by ketamine in B35 cells could also be restored by . The results of this study suggest that the regulatory effects of on cell migration and actin filament aggregation are closely related to the regulation of RhoA, CDC42, and Rho signaling pathways in both B35 and C6 cells. PRP and WP have the potential to restore neuronal cell Rho signaling abnormalities involved in some mental diseases.
茯苓是一种具有抗炎、抗癌和稳定情绪特性的传统中草药。茯苓含有三萜类化合物和多糖,据报道它们可调节与N-甲基-D-天冬氨酸受体相关的细胞质游离钙,并影响新生大鼠神经细胞和海马神经元的细胞功能。尽管茯苓对神经元功能的调节作用已被广泛报道,但其作用的分子机制尚不清楚。细胞迁移能力和肌动蛋白丝的重组是神经元发育过程中的重要生物学功能,它们主要受Rho信号通路调控。我们发现,茯神(茯苓与松树根的水溶液)或白茯苓增强B35细胞的细胞迁移能力和肌动蛋白凝聚,可能是由于B35细胞中RhoA和CDC42活性增加以及下游ROCK1、p-MLC2、N-WASP和ARP2/3的表达增加所致。在C6胶质细胞系中也观察到了类似的细胞迁移能力、肌动蛋白凝聚和Rho信号通路的调节,除了茯神诱导的RhoA和CDC42活性调节。氯胺酮诱导的细胞迁移和肌动蛋白凝聚抑制可被茯神恢复。此外,我们观察到氯胺酮导致的B35细胞中RhoA和ROCK1表达增加或CDC42和N-WASP表达降低也可被茯神恢复。本研究结果表明,茯神对细胞迁移和肌动蛋白丝聚集的调节作用与B35和C6细胞中RhoA、CDC42和Rho信号通路的调节密切相关。茯神和白茯苓有潜力恢复某些精神疾病中涉及的神经元细胞Rho信号异常。