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Special topic on the mechanism of Danggui Shaoyaosan in treating Alzheimer's disease
Special topic on the mechanism of Danggui Shaoyaosan in treating Alzheimer's disease
  • The Paper
    • CHEN Yunhui, XIA Jun, LIU Dan, LIU Xinglong, ZHANG Tiane, GEORGE DAVID Baxter, LIU Lizhou, YOU Yu, XIE Yongmei, GONG Yuanyuan, PENG Wei

      Vol. 28, Issue 24, Pages: 1-7(2022) DOI: 10.13422/j.cnki.syfjx.20211102
      Abstract:Alzheimer's disease (AD) is a deleterious neurodegenerative disorder, which has become a significant public health concern and economic burden. The pathogenesis of AD is complex and involves several hypotheses such as amyloid β-protein (Aβ) deposition, Tau protein hyperphosphorylation, oxidative stress, and inflammation. There is an urgent need for a holism-based comprehensive intervention with multi-pathway, multi-level, and multi-target characteristics, which demonstrates the unique advantage of traditional Chinese medicine (TCM). Therefore, it is of great significance to conduct and promote research on TCM treatment of AD. Danggui Shaoyaosan (DSS) from the Synopsis of Golden Chamber (《金匮要略》) by ZHANG Zhongjing (150 AD-219 AD) was originally designed for reliving gynecological ailments. It is a classic TCM formula that modulates liver and spleen and dispels blood stasis and water retention. Since the late 1980s when Japanese researchers reported its therapeutic effect on AD, it has been widely used in the clinic with clear effects. The elucidation of the mechanism of this formula helps exert its effects. Hereby, this paper reviewed relative research progress and made an analysis in terms of attenuating aberrant accumulation of Aβ and hyperphosphorylated Tau protein, anti-inflammatory and antioxidant activities, mediating neurotransmitters, ameliorating lipid metabolism, modulating gut microbiota, reduced neuron apoptosis, decreasing intracellular Ca2+ overloading, and increasing the expression of estradiol. This paper is expected to provide references for understanding the scientific connotation of DDS in the treatment of AD and lay a solid foundation for further investigation.  
      Keywords:Danggui Shanyaosan;Alzheimer's disease;mechanism;experimental study;review  
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      • CHEN Yunhui, XIA Jun, HUAI Wenying, LIU Dan, ZHANG Tiane, LI Yan, XIE Yongmei, TANG Songqi, YOU Yu, PENG Wei

        Vol. 28, Issue 24, Pages: 8-16(2022) DOI: 10.13422/j.cnki.syfjx.20211107
        Abstract:ObjectiveTo investigate the mechanism of Danggui Shaoyaosan (DSS) in the improvement of the cognitive ability of SAMP8 mice with Alzheimer's disease (AD) via regulating the ubiquitin-proteasome pathway (UPP).MethodFifteen SAMR1 mice were used as a normal group, and 60 SAMP8 mice were randomly divided into a model group and DSS high, medium, and low-dose groups (57.6, 28.8, and 14.4 g·kg-1·d-1), with 15 mice in each group. Intragastric administration was conducted for eight continuous weeks. Place navigation and spatial capacity were evaluated by Morris water maze. Pathological structure changes in neurons in the hippocampal CA1 area was detected by hematoxylin-eosin (HE) staining. The protein expression levels of hippocampal β-amyloid protein(Aβ) and phosphorylation(p)-Tau were determined by immunohistochemical staining (IHC) and enzyme-linked immunosorbent assay (ELISA), and the mRNA and protein expression levels of hippocampal ubiquitin (Ub), ubiquitin ligase E3 (E3), 26S proteasome, ubiquitin carboxyl terminal hydrolase-1 (UCHL1), and UCHL3 were determined by real-time fluorescent quantitative polymerase chain reaction (Real-time PCR) and Western blot, respectively.ResultAs compared with the normal group, the escape latency was prolonged in the model group (P<0.05) with the reduced number of crossing platform quadrants and time ratio in the platform quadrant (P<0.05). The model group decreased neurons and condensed cell bodies in the CA1 area, and increased β-amyloid precursor protein (β-APP) and p-Tau positive cells (P<0.05). In the model group, the protein expression levels of Aβ and p-Tau were increased (P<0.05), the mRNA and protein expression levels of Ub were increased (P<0.05), and the mRNA and protein expression levels of E3, 26S proteasome, UCHL1, and UCHL3 were decreased (P<0.05). As compared with the model group, the escape latency was shortened in the DSS high and medium-dose groups (P<0.05) with an increased number of crossing platform quadrants and residence time ratio (P<0.05). The pathological changes in CA1 of each DSS group were significantly improved, and the number of β-APP positive staining cells decreased (P<0.05). The number of p-Tau positive staining cells decreased in the DDS medium and low-dose groups (P<0.05). The protein expression levels of Aβ and p-Tau in each DDS group decreased (P<0.05), and the mRNA expression level of Ub in each group decreased (P <0.05). The mRNA expression levels of 26S, E3, and UCHL3 in the DDS high and medium-dose groups increased (P<0.05), and the mRNA expression level of UCHL1 in the DDS medium-dose group increased (P<0.05). The protein expression level of Ub in each DDS group decreased, and the protein expression levels of 26S, E3, UCHL1+3 in the DDS high and medium-dose groups increased (P<0.05).ConclusionDSS can improve the cognitive ability of SAMP8 mice, and its mechanism may be related to the reduction of the abnormal deposition of Aβ and p-Tau via decreasing the expression of Ub and increasing that of E3, 26S, UCHL1, and UCHL3 in the UPP.  
        Keywords:Danggui Shaoyaosan (DSS);Alzheimer's disease (AD);ubiquitin proteasome pathway (UPP)  
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        • CHEN Yunhui, XIA Jun, LIU Xinglong, HUAI Wenying, LIU Dan, ZHANG Tiane, XIE Yongmei, YOU Yu, YUE Wen, TANG Songqi, PENG Wei

          Vol. 28, Issue 24, Pages: 17-25(2022) DOI: 10.13422/j.cnki.syfjx.20211207
          Abstract:ObjectiveTo investigate the protective effect of Danggui Shaoyaosan (DSS)-contained serum on β-amyloid (Aβ)1-40-injured rat adrenal pheochromocytoma PC12 cells and its mechanism in regulating ubiquitin-proteasome pathway (UPP).MethodAβ1-40 was used to intervene PC12 cells to prepare the cell models of Alzheimer's disease (AD), and the experiment was divided into the blank, model, and DSS-contained serum high, medium, and low-dose groups (10%, 5%, and 2.5%). Cell viability and apoptosis were detected using cell counting kit-8 (CCK-8) method and flow cytometry, respectively. The content of Aβ and p-Tau protein was determined by enzyme-linked immunosorbent assay (ELISA). The ubiquitin (Ub), ubiquitin ligase E3 (E3), 26S proteasome, ubiquitin carboxyl terminal hydrolase1 (UCHL1), and UCHL3 protein expressions of UPP were displayed using immunofluorescence cytochemistry (ICC), and the mRNA and protein expression levels of Ub, E3-parkin, 26S, UCHL1, and UCHL3 were determined by real-time fluorescent quantitative polymerase chain reaction (Real-time PCR) and Western blot, respectively.ResultThe data of the CCK8 experiment verified that 5 μmol·L-1 and 48 hours were the optimal conditions for modeling Aβ1-40-injured PC12 cells. As compared with the blank group, the cell viability rate in the model group decreased (P<0.05) with an increased apoptosis rate (P<0.05), the content of Aβ and p-Tau contents was elevated (P<0.05), the mRNA and protein expression levels of Ub increased, and the mRNA and protein expression levels of 26S, E3, and UCHL1+3 decreased (P<0.05). As compared with the model group, the cell viability rate in the DSS-contained medium-dose group increased (P<0.05), whereas the apoptosis rate in each DSS-contained group decreased (P<0.05). The content of Aβ in each DDS-contained group decreased (P<0.05), and the content of p-Tau in the DDS-contained high and medium-dose groups decreased (P<0.05). The mRNA expression level of Ub decreased, and that of 26S increased in each DDS-contained group (P<0.05). The mRNA expression level of UCHL1 in the DDS-contained medium-dose group increased (P<0.05), and the mRNA expression levels of E3 and UCHL 3 in the DDS-contained high and medium-dose groups increased (P<0.05). The protein expression level of Ub in each DDS-contained group decreased, and the protein expression levels of 26S, E3, and UCHL1+3 in the DDS high and medium-dose groups increased. The DSS-contained serum medium-dose group exerted the optimal effect.ConclusionDSS-contained serum can increase cell viability rate, reduce cell apoptosis rate, eliminate Aβ and p-Tau protein deposits, and exert protective effects on Aβ1-40-injured PC12 cells. Its mechanism may involve UPP via decreasing the expression of Ub and increasing that of 26S, E3, UCHL1, and UCHL3.  
          Keywords:Danggui Shaoyaosan;Alzheimer's disease (AD);ubiquitin-proteasome pathway (UPP);rat adrenal pheochromocytoma (PC12) cells  
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          • TIAN Xiaoping, XIA Jun, WEI Jingwen, PENG Wei, HUAI Wenying, YOU Yu, ZHANG Tiane, ZHANG Jiayuan, HUANG Wei, CHEN Yunhui

            Vol. 28, Issue 24, Pages: 26-34(2022) DOI: 10.13422/j.cnki.syfjx.20221909
            Abstract:ObjectiveTo analyze the effects of Danggui Shaoyaosan (DSS) on the gut microbiota of the Alzheimer's disease (AD) model in SAMP8 mice based on 16S rDNA sequencing.MethodTwenty-four SAMP8 mice aged seven months were randomly divided into low-, medium-, and high-dose DSS groups (14.4, 28.8, 57.6 g·kg-1·d-1) and a model group according to a random number table, with six rats in each group. Six SAMR1 mice of the same age were assigned to the normal group. After intragastric administration for eight consecutive weeks, 16S rDNA sequencing was performed to detect the gut microbiota of feces in mice. Morris water maze was employed to assess the directional navigation and space exploration ability of mice. Nissl staining was performed to observe the pathological changes of neurons in the hippocampal CA1 area. Enzyme-linked immunosorbent assay (ELISA) was adopted to measure the protein content of hippocampal amyloid β-protein (Aβ) and hyperphosphorylated Tau (p-Tau).ResultCompared with the normal group, the model group presented a declining α diversity (P<0.05), markedly altered β diversity, prolonged escape latency (P<0.05), reduced number of platform crossings and cumulative duration in the targeted quadrant (P<0.05), decreased neurons and Nissl bodies in the CA1 hippocampal area, and up-regulated Aβ and p-Tau expression (P<0.05). However, DSS intervention enhanced the α diversity, and medium- and high-dose DSS, especially the medium-dose DSS, could result in α diversity similar to the control group. Moreover, at the phylum level, the abundance of Firmicutes increased (P<0.05), while the abundance of Bacteroidetes and Proteobacteria decreased (P<0.05). At the genus level, the abundance of Lactobacillus and other genera increased (P<0.05), while the abundance of Bacteroides, Helicobacterium, Rikenella, Parabacteroides, Sutterella, and Mucilaginibacter decreased (P<0.05). The DSS groups also showed shortened escape latency (P<0.05), increased number of platform crossings and cumulative duration in the targeted quadrant (P<0.05), increased Nissl bodies (P<0.05), and reduced Aβ and p-Tau content (P<0.05). Pearson correlation analysis showed that the abundance of Mucilaginibacter, Bacteroides, and Sutterella was negatively correlated with the cognitive ability of SAMP8 mice, while the abundance of Lactobacillus and Butyricimonas was positively correlated with the cognitive ability of SAMP8 mice.ConclusionDSS can improve the cognitive ability of SAMP8 mice, and its mechanism may be related to the regulation of gut microbiota diversity and community composition.  
            Keywords:Alzheimer's disease;Danggui Shaoyaosan;SAMP8;gut microbiota  
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            Updated:2022-11-17