BACKGROUND Lingguizhugan(LGZG)decoction is a widely used classic Chinese medicine formula that was recently shown to improve high-fat diet(HFD)-induced insulin resistance(IR)in animal studies.AIM To assess the therape...BACKGROUND Lingguizhugan(LGZG)decoction is a widely used classic Chinese medicine formula that was recently shown to improve high-fat diet(HFD)-induced insulin resistance(IR)in animal studies.AIM To assess the therapeutic effect of LGZG decoction on HFD-induced IR and explore the potential underlying mechanism.METHODS To establish an IR rat model,a 12-wk HFD was administered,followed by a 4-wk treatment with LGZG.The determination of IR status was achieved through the use of biochemical tests and oral glucose tolerance tests.Using a targeted metabolomics platform to analyze changes in serum metabolites,quantitative real-time PCR(qRT-PCR)was used to assess the gene expression of the ribosomal protein S6 kinase beta 1(S6K1).RESULTS In IR rats,LGZG decreased body weight and indices of hepatic steatosis.It effectively controlled blood glucose and food intake while protecting islet cells.Metabolite analysis revealed significant differences between the HFD and HFDLGZG groups.LGZG intervention reduced branched-chain amino acid levels.Levels of IR-related metabolites such as tryptophan,alanine,taurine,and asparagine decreased significantly.IR may be linked to amino acids due to the contemporaneous increase in S6K1 expression,as shown by qRT-PCR.CONCLUSIONS Our study strongly suggests that LGZG decoction reduces HFD-induced IR.LGZG may activate S6K1 via metabolic pathways.These findings lay the groundwork for the potential of LGZG as an IR treatment.展开更多
Objective:To investigate the effect of Maxingganshi decoction on the expression of STAT4 and STAT6 in lung tissues of rats with chronic obstructive pulmonary disease (COPD).Methods:A total of 30 COPD Wistar rat models...Objective:To investigate the effect of Maxingganshi decoction on the expression of STAT4 and STAT6 in lung tissues of rats with chronic obstructive pulmonary disease (COPD).Methods:A total of 30 COPD Wistar rat models with phlegm-heat depression and lung depression were established, with half male and half female. The 30 model rats were fed in different cages, weighed and labeled. They were randomly divided into three groups: Maxingganshi decoction group, roxithromycin tablets control group, model control group. At the same time, 10 normal rats were selected as a blank control group. The white blood cell count and other cell count levels in the alveolar lavage fluid of the rats in the four groups, as well as the STAT4 and STAT6 protein levels in the lung tissues, were observed and compared.Results: After treatment, the white cell counts in Maxingganshi decoction group were significantly higher than that of the model control group (P<0.05);lymph, neutral particles and eosinophil levels were significantly lower than those of the model control group (P<0.05). Compared with roxithromycin tablets control group, white blood cell count and other classification level of cell count in Maxingganshi decoction group were not significantly different (P>0.05). After treatment, STAT4 protein levels in roxithromycin tablets control group and Maxingganshi decoction group were lower than that in the model control group (P<0.05), and STAT6 protein levels in roxithromycin tablets control group and Maxingganshi decoction group were higher than that of the model control group (P<0.05), suggesting the two means of intervention in this study could inhabit the STAT4 protein expression in lung tissue of COPD rats and promote effect on STAT6 protein. In addition, the level of STAT4 and STAT6 in the Maxingganshi decoction group was not significantly different from that in the roxithromycin tablets control group (P>0.05), suggesting that the effect of Maxingganshi decoction was similar to that of roxithromycin tablets.Conclusions: The action mechanism of Maxingganshi decoction group treating COPD may be through the STAT4 and STAT6 protein expression level to impose an effect, and thus interfere with IL-12 / STAT4 and IL-4 / STAT6 these two signaling pathways of Th1 cells and Th2 cells in the body of the gene expression, inhibiting the Th1 polarization and adjusting the imbalance of Thl/Th2 cells, so as to lower inflammatory response mediated by T cells and various kinds of pathological damage.展开更多
AIM To explore the role of macrophages in chronic pancreatitis(CP) and the effect of Dachaihu decoction(DCHD) on pancreatic fibrosis in mice.METHODS Kun Ming mice were randomly divided into a control group, CP group, ...AIM To explore the role of macrophages in chronic pancreatitis(CP) and the effect of Dachaihu decoction(DCHD) on pancreatic fibrosis in mice.METHODS Kun Ming mice were randomly divided into a control group, CP group, and DCHD group. In the CP and DCHD groups, mice were intraperitoneally injected with 20% L-arginine(3 g/kg twice 1 d/wk for 6 wk). Mice in the DCHD group were administered DCHD intragastrically at a dose of 14 g/kg/d 1 wk after CP induction. At 2 wk, 4 wk and 6 wk post-modeling, the morphology of the pancreas was observed using hematoxylin and eosin, and Masson staining. Interleukin-6(IL-6) serum levels were assayed using an enzyme-linked immunosorbent assay. Double immunofluorescence staining was performed to observe the co-expression of F4/80 and IL-6 in the pancreas. Inflammatory factors including monocyte chemoattractant protein-1(MCP-1), macrophage inflammatory protein-1α(MIP-1α) and IL-6 were determined using real time-polymerase chain reaction. Western blot analysis was used to detect fibronectin levels in the pancreas. RESULTS Compared with the control group, mice with 20% L-arginine-induced CP had obvious macrophage infiltration and a higher level of fibrosis. IL-6 serum concentrations were significantly increased. Double immunofluorescence staining showed that IL-6 and F4/80 were co-expressed in the pancreas. With the administration of DCHD, the infiltration of macrophages and degree of fibrosis in the pancreas were significantly attenuated; IL-6, MCP-1 and MIP-1α m RNA, and fibronectin levels were reduced. CONCLUSION The dominant role of macrophages in the development of CP was mainly related to IL-6 production. DCHD was effective in ameliorating pancreatic fibrosis by inhibiting macrophage infiltration and inflammatory factor secretion in the pancreas.展开更多
基金Supported by the Preresearch Project of the National Natural Science Foundation of China,No.ZRYY1906the Applied Basic Research Project of the Science and Technology Department of Sichuan Province,No.2021YJ0154+1 种基金the Talent Research Promotion Plan of Xinglin Scholars of Chengdu University of Traditional Chinese Medicine,No.QNXZ2019035the Chengdu University of Traditional Chinese Medicine‘Xinglin Scholars'subject talent research promotion Program(young scholars),No.QNXZ2019037.
文摘BACKGROUND Lingguizhugan(LGZG)decoction is a widely used classic Chinese medicine formula that was recently shown to improve high-fat diet(HFD)-induced insulin resistance(IR)in animal studies.AIM To assess the therapeutic effect of LGZG decoction on HFD-induced IR and explore the potential underlying mechanism.METHODS To establish an IR rat model,a 12-wk HFD was administered,followed by a 4-wk treatment with LGZG.The determination of IR status was achieved through the use of biochemical tests and oral glucose tolerance tests.Using a targeted metabolomics platform to analyze changes in serum metabolites,quantitative real-time PCR(qRT-PCR)was used to assess the gene expression of the ribosomal protein S6 kinase beta 1(S6K1).RESULTS In IR rats,LGZG decreased body weight and indices of hepatic steatosis.It effectively controlled blood glucose and food intake while protecting islet cells.Metabolite analysis revealed significant differences between the HFD and HFDLGZG groups.LGZG intervention reduced branched-chain amino acid levels.Levels of IR-related metabolites such as tryptophan,alanine,taurine,and asparagine decreased significantly.IR may be linked to amino acids due to the contemporaneous increase in S6K1 expression,as shown by qRT-PCR.CONCLUSIONS Our study strongly suggests that LGZG decoction reduces HFD-induced IR.LGZG may activate S6K1 via metabolic pathways.These findings lay the groundwork for the potential of LGZG as an IR treatment.
文摘Objective:To investigate the effect of Maxingganshi decoction on the expression of STAT4 and STAT6 in lung tissues of rats with chronic obstructive pulmonary disease (COPD).Methods:A total of 30 COPD Wistar rat models with phlegm-heat depression and lung depression were established, with half male and half female. The 30 model rats were fed in different cages, weighed and labeled. They were randomly divided into three groups: Maxingganshi decoction group, roxithromycin tablets control group, model control group. At the same time, 10 normal rats were selected as a blank control group. The white blood cell count and other cell count levels in the alveolar lavage fluid of the rats in the four groups, as well as the STAT4 and STAT6 protein levels in the lung tissues, were observed and compared.Results: After treatment, the white cell counts in Maxingganshi decoction group were significantly higher than that of the model control group (P<0.05);lymph, neutral particles and eosinophil levels were significantly lower than those of the model control group (P<0.05). Compared with roxithromycin tablets control group, white blood cell count and other classification level of cell count in Maxingganshi decoction group were not significantly different (P>0.05). After treatment, STAT4 protein levels in roxithromycin tablets control group and Maxingganshi decoction group were lower than that in the model control group (P<0.05), and STAT6 protein levels in roxithromycin tablets control group and Maxingganshi decoction group were higher than that of the model control group (P<0.05), suggesting the two means of intervention in this study could inhabit the STAT4 protein expression in lung tissue of COPD rats and promote effect on STAT6 protein. In addition, the level of STAT4 and STAT6 in the Maxingganshi decoction group was not significantly different from that in the roxithromycin tablets control group (P>0.05), suggesting that the effect of Maxingganshi decoction was similar to that of roxithromycin tablets.Conclusions: The action mechanism of Maxingganshi decoction group treating COPD may be through the STAT4 and STAT6 protein expression level to impose an effect, and thus interfere with IL-12 / STAT4 and IL-4 / STAT6 these two signaling pathways of Th1 cells and Th2 cells in the body of the gene expression, inhibiting the Th1 polarization and adjusting the imbalance of Thl/Th2 cells, so as to lower inflammatory response mediated by T cells and various kinds of pathological damage.
基金Supported by the National Natural Science Foundation of China,No.81673816the Key Basic Research Project of Shaanxi Province,No.2017ZDJC-14the Key Research Program of Natural Science of Shaanxi Education Department,No.15JS027
文摘AIM To explore the role of macrophages in chronic pancreatitis(CP) and the effect of Dachaihu decoction(DCHD) on pancreatic fibrosis in mice.METHODS Kun Ming mice were randomly divided into a control group, CP group, and DCHD group. In the CP and DCHD groups, mice were intraperitoneally injected with 20% L-arginine(3 g/kg twice 1 d/wk for 6 wk). Mice in the DCHD group were administered DCHD intragastrically at a dose of 14 g/kg/d 1 wk after CP induction. At 2 wk, 4 wk and 6 wk post-modeling, the morphology of the pancreas was observed using hematoxylin and eosin, and Masson staining. Interleukin-6(IL-6) serum levels were assayed using an enzyme-linked immunosorbent assay. Double immunofluorescence staining was performed to observe the co-expression of F4/80 and IL-6 in the pancreas. Inflammatory factors including monocyte chemoattractant protein-1(MCP-1), macrophage inflammatory protein-1α(MIP-1α) and IL-6 were determined using real time-polymerase chain reaction. Western blot analysis was used to detect fibronectin levels in the pancreas. RESULTS Compared with the control group, mice with 20% L-arginine-induced CP had obvious macrophage infiltration and a higher level of fibrosis. IL-6 serum concentrations were significantly increased. Double immunofluorescence staining showed that IL-6 and F4/80 were co-expressed in the pancreas. With the administration of DCHD, the infiltration of macrophages and degree of fibrosis in the pancreas were significantly attenuated; IL-6, MCP-1 and MIP-1α m RNA, and fibronectin levels were reduced. CONCLUSION The dominant role of macrophages in the development of CP was mainly related to IL-6 production. DCHD was effective in ameliorating pancreatic fibrosis by inhibiting macrophage infiltration and inflammatory factor secretion in the pancreas.