1.Efficacy and Mechanism of Action of Ermiao Situ Decoction in Modulating JAK/STAT Pathway in Rats with Damp-heat Eczema
Kangning HAN ; Junjie HU ; Juan LI ; Min ZHANG ; Xian ZHOU ; Songlin LIU ; Xin CHEN
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(9):37-47
ObjectiveUltra performance liquid chromatography-quadrupole-time of flight tandem mass spectrometry (UPLC-Q-TOF-MS/MS) coupled with network pharmacology and molecular docking was utilized to explore the efficacy and mechanism of action of Ermiao Situ decoction on rats with damp-heat eczema. MethodsA rat model of damp-heat eczema was established by artificial climate chamber intervention combined with sensitization induction by dinitrochlorobenzene (DNCB), and it was randomly divided into the normal group, the model group, the medium- and high-dose groups of Ermiao Situ decoction (3.40 g·kg-1 and 6.80 g·kg-1), and the prednisone acetate group (2.51 mg·kg-1), with eight rats in each group, totalling 46 rats, of which six rats were tested with the drug-containing serum. The chemical analysis of drug-containing serum from rats was carried out by UPLC-Q-TOF-MS/MS, combined with network pharmacology for the prediction of key components, core targets, and signaling pathways, and molecular docking experiments were performed by CB-Dock2 online website. The pharmacological effects of Ermiao Situ decoction in the treatment of damp-heat eczema were investigated by epitaxial indexes combined with the pathologic tissue staining method. The serum levels of gastrin (GAS), interleukin-4 (IL-4), and interleukin-13 (IL-13) were measured by enzyme-linked immunosorbent assay (ELISA). Interleukin-6 (IL-6), Janus kinase 1 (JAK1), phosphorylated (p)-JAK1, signal transduction and activation of transcription factor 3 (STAT3), and p-STAT3 protein expression level was determined by Western bolt. ResultsA total of 19 active ingredients were detected in drug-containing serum samples of rats, which were predicted to act on 198 targets for the treatment of damp-heat eczema, among which the key ingredients included rhodopsin, huangpai alkaloids, and quercetin, and the main core targets included STAT3, tumor necrosis factor (TNF), and IL-6, which were mainly involved in the cancer signaling pathway, phosphatidylinositol 3-kinase (PI3K)/protein kinase (Akt) signaling pathway, T helper 17 (Th17) cell differentiation signaling pathway, and JAK/STAT signaling pathway. The molecular docking results suggested that the key components had strong binding activities with the core targets IL-6, JAK1, and STAT3 in the JAK/STAT signaling pathway. The results of animal experiments showed that compared with those in the normal group, rats in the model group were depressed. They had loose hair, loose stools, epidermal oozing, vesiculation, and generation of thick scabs in the form of scales, decreased body weight, increased anus temperature and water intake, and increased indexes of the spleen, thymus gland, and stomach (P<0.05, P<0.01), and the lesion tissue could be seen to be hyperkeratotic, with the aggregation of inflammatory cells and nonsignificant separation of epidermis and dermis. The gastric mucosa was thinned, deficient, and structurally disorganized, and obvious inflammatory cell aggregation was seen. The levels of GAS, IL-4, and IL-13 in serum were significantly reduced (P<0.05, P<0.01), and the protein expression levels of IL-6, JAK1, p-JAK1, and p-STAT3 in the lesion tissue were significantly increased (P<0.05, P<0.01). Compared with those in the model group, rats in each administration group had stable mental states, formed feces, a clean perianal area, and basically normal epidermis. Only a small amount of scaly scabs existed, and the rats had body weight increased, with decreased anal temperature and water intake, as well as decreased spleen, thymus, and gastric indexes (P<0.05, P<0.01). Epidermal thickness was decreased, and epidermal and dermal separation boundaries were obvious, but hyperkeratotic and accumulation of inflammatory cells could still be seen. The thickness of gastric mucosa increased, and the structure was restored to varying degrees. The levels of GAS, IL-4, and IL-13 content in the serum of rats were increased to varying degrees, and the protein expression levels of IL-6, JAK1, p-JAK1, and p-STAT3 in the dermal lesion tissue were significantly decreased (P<0.05, P<0.01). ConclusionErmiao Situ decoction may exert therapeutic effects on rats with damp-heat eczema by modulating the JAK/STAT signaling pathway.
2.Exploration of the antidepressant machanism of Shugan hewei tang based on metabolomics of PFC-NAc-VTA neural circuit
Xinyue QU ; Junjie HU ; Juan LI ; Min ZHANG ; Xian ZHOU ; Songlin LIU ; Xin CHEN
China Pharmacy 2025;36(10):1172-1178
OBJECTIVE To investigate the antidepressant mechanism of Shugan hewei tang (SGHWT) based on the metabolomics of prefrontal cortex (PFC)-nucleus accumbens (NAc)-ventral tegmental area (VTA) neural circuit. METHODS Male SD rats were randomly divided into blank group, model group, SGHWT low-, medium- and high-dose groups [3.67, 7.34, 14.68 g/(kg·d), by raw material], and fluoxetine group [1.58 mg/(kg·d), positive control], with 12 rats in each group. Except for the blank group, the depression model was established by chronic unpredictable mild stress combined with individual cage housing in the remaining groups, and the corresponding drug solution or normal saline was administered via gavage during modeling, once a day, for 6 consecutive weeks. After the last administration, the body weight, sucrose preference rate, total moving distance, frequency into the center and immobility time of rats in each group were detected. Samples of PFC, NAc and VTA areas of rats in the blank group, model group, SGHWT medium-dose group and fluoxetine positive control groups were collected,and their histomorphological features were observed, and non-targeted metabolomics analysis (except for fluoxetine group)were performed and validated. RESULTS Compared with model group, the cytolysis, structural damage and other pathological damages in three brain regions of rats were significantly alleviated in each drug group, while their body weight, sucrose preference rate, total moving distance and frequency into the center were all significantly higher or longer (P<0.05), and immobility time was significantly shorter (P<0.05). The results of non-targeted metabolomics showed that a total of 78 endogenous differential metabolites were identified, with 40, 35 and 24 in the PFC, NAc and VTA regions respectively, mainly involved in amino acid, lipid and sphingolipid metabolism. The results of metabolic pathway enrichment analysis showed that SGHWT affected the neural circuits of depressed rats by regulating sphingolipid metabolism, alanine, aspartic acid and glutamic acid metabolism, saturated fatty acid biosynthesis, among which alanine, aspartic acid and glutamic acid metabolism was predominantly involved. Validation experiments showed that SGHWT significantly increased the phosphorylation levels of protein kinase B (Akt) and mammalian target of rapamycin (mTOR), and decreased the protein expression of N-methyl-D-aspartic acid receptor 1 (NMDAR1) in the NAc region of rats. CONCLUSIONS SGHWT significantly improves the depression-like behavior and attenuates pathological damage of PFC-NAc-VTA neural circuit of model rats, the mechanism of which is associated with inhibiting NMDAR1 expression and activating the Akt/mTOR signaling pathway.
3.A thermo-sensitive hydrogel targeting macrophage reprogramming for sustained osteoarthritis pain relief.
Yue LIU ; Kai ZHOU ; Xinlong HE ; Kun SHI ; Danrong HU ; Chenli YANG ; Jinrong PENG ; Yuqi HE ; Guoyan ZHAO ; Yi KANG ; Yujun ZHANG ; Yue'e DAI ; Min ZENG ; Feier XIAN ; Wensheng ZHANG ; Zhiyong QIAN
Acta Pharmaceutica Sinica B 2025;15(11):6034-6051
Osteoarthritis (OA) causes chronic pain that significantly impairs quality of life, with current treatments often proving insufficient and accompanied by adverse effects. Recent research has identified the dorsal root ganglion (DRG) and its resident macrophages as crucial mediators of chronic OA pain through neuroinflammation driven by macrophage polarization. We present a novel injectable thermo-sensitive hydrogel system, KAF@PLEL, designed to deliver an anti-inflammatory peptide (KAF) specifically to the DRG. This biodegradable hydrogel enables sustained KAF release, promoting the reprogramming of DRG macrophages from pro-inflammatory to anti-inflammatory phenotypes. Through comprehensive in vitro and in vivo studies, we evaluated the hydrogel's biocompatibility, effects on macrophage polarization, and therapeutic efficacy in chronic OA pain management. The system demonstrated significant capabilities in preserving macrophage mitochondrial function, suppressing neuroinflammation, alleviating chronic OA pain, reducing cartilage degradation, and improving motor function in OA rat models. The sustained-release properties of KAF@PLEL enabled prolonged therapeutic effects while minimizing systemic exposure and side effects. These findings suggest that KAF@PLEL represents a promising therapeutic approach for improving outcomes in OA patients through targeted, sustained treatment.
4.Realationship between personality impulsivity and aggressivity in adolescents: the effecting path of sibling relationships
Nan LIN ; Xian LI ; Jing HU ; Junlin WU ; Jing ZHOU ; Wan GU ; Guoping HUANG
Sichuan Mental Health 2024;37(1):63-69
BackgroundIn China, the structure shift from just one-child family to both one-child and more-than-one-child families is happening. Exploring how the sibling relationships effect between adolescent personality impulsivity and aggressivity is of great significance for promoting adolescent mental health as well as maintaining social harmony and stability. ObjectiveTo investigate the effecting path of sibling relationships between personality impulsivity and aggressivity in adolescents, so as to provide references for the prevention of violent and aggressive behavior in adolescents. MethodsFrom February to April, 2023, a total of 1 200 students with sibling relationships from 12 primary and secondary schools in a county of Sichuan province were included by random sampling. Barratt Impulsivity Scale (BIS-11), Chinese Version of Buss & Perry Aggression Questionnaire (AQ-CV), and Sibling Relationship Questionnaire (SRQ) were used for cross-sectional investigation. Pearson Correlation Analysis was used to analyze the correlation between the scores of these scales. Bootstrap method was used to test the effecting path of sibling relationships between personality impulsivity and aggressivity. ResultsThe total score of BIS-11 was positively correlated with that of AQ-CV as well as the scores of conflict and competition dimensions in SRQ (r=0.485、0.276、0.280,P<0.01), while negatively correlated with the score of warmth/intimacy dimension in SRQ (r=-0.383, P<0.01). The total score of AQ-CV was positively correlated with the scores of conflict and competition dimensions in SRQ (r=0.387, 0.340, P<0.01), while negatively correlated with the score of warmth/intimacy dimension in SRQ (r=-0.304, P<0.01). Within SRQ, negative correlations could be observed between the score of warmth/intimacy and scores of conflict and competition (r=-0.307, -0.375, P<0.01), whereas positive correlation could be observed between the score of conflict and that of competition (r=0.267, P<0.01). The total effect of personality impulsivity level on aggressivity level in adolescent was 0.480 (P<0.01). Sibling relationships played a mediating role between personality impulsivity and aggressivity in adolescents. Meanwhile, the indirect effect values of warmth/intimacy, conflict and competition were 0.054, 0.075 and 0.062, with the effect values accounting for 11.21%, 15.70% and 12.93%, respectively. ConclusionThe personality impulsivity of adolescents can directly affect their aggressivity, and sibling relationships may act as an important channel connecting personality impulsivity and aggressivity. [Funded by 2023 Project of the Psychology and Behavioral Science Research Center of the Deyang Federation of Social Sciences (number, XLYXW2023305)]
5.Nervous protection provided by notoginsenoside Rg1 in rat model with Alzheimer's disease
Tingting WANG ; Huan WEI ; Yongli YANG ; Xian ZHOU ; Yang HU
Basic & Clinical Medicine 2024;44(8):1094-1100
Objective To explore the mechanism of notoginsenoside Rg1 in preventing and treating Alzheimer's disease(AD).Methods Rat model of AD was established by injecting amyloid beta peptide 1-42(Aβ1-42)into the lateral ventricle of SD rats.Then the animals were randomly divided into three groups:sham-operated group,model group and Rg1 treatment group.The treatment group was treated with Rg1 gavage and the sham-operated group was treated with saline gavage.Learning and memory capacity of rats were examined by Morris water maze experiment(MWM).Moreover,the contents of MDA and SOD in cerebral cortex were detected by chemical colorimetry;immuno-histochemistry was used to detect caspase-3 protein in the cerebral cortex and Western blot was employed to detect the expression of p38 and p-p38 proteins.Results Compared with the sham-operated group,the model group had a prolonged escape latency,reduced stay time in the target quad-rant and reduced frequency of leaping over platform;increased MDA and decreased SOD in cerebral cortex;increased caspase-3 protein-positive neurons.The difference of p38 expression was not statistically significant and the phosphorylation of p38 was upregulated(P<0.05).The rats in Rg1 treatment group had a shorter es-cape latency,increased stay time in quadrant Ⅲ,increased frequency of leaping over platform,decreased caspase-3 positive neurons and the phosphorylation level of p38,decreased MDA and increased SOD compared with the model group(P<0.05).Conclusions Rg1 significantly improves learning and memory capacities,increases antioxidant capacity and plays neuro-protective effect in AD rat model by inhibition of p38 activation.
6.Aumolertinib combined with anlotinib inhibits proliferation of non-small cell lung cancer cells by down-regulating the PI3K/AKT pathway
Yumei YANG ; Xuerou LIU ; Wei LIU ; Xingqi ZHOU ; Zhen ZHANG ; Yan HU ; Peipei LIU ; Xian LI ; Hao LIU ; Shanshan LI
Journal of Southern Medical University 2024;44(10):1965-1975
Objective To investigate the inhibitory effect of aumolertinib combined with anlotinib on proliferation of non-small cell lung cancer(NSCLC)cells.Methods CCK-8 assay,colony formation assay,and flow cytometry were used to assess the effect of different concentrations of aumolertinib or anlotinib on proliferation,survival,and apoptosis of PC-9 and HCC827 cells,and their synergistic effect was evaluated using the SynergyFinder model.In PC-9 and HCC827 cells treated with aumolertinib combined with anlotinib,the changes in cell invasion and migration abilities were assessed with Transwell assay,and the expressions of apoptosis-and invasion/migration-related proteins(Bax,Bcl-2,E-cadherin,vimentin,MMP2,and MMP9)and the key PI3K-Akt pathway proteins were detected using Western blotting.Results In PC-9 cells,the IC50 of aumolertinib and anlotinib was 1.701 μmol/L and 4.979 μmol/L,respectively,with a synergy score(ZIP)of 19.112;in HCC827 cells,their IC50 was 2.961 μmol/L and 7.934 μmol/L,respectively,with a ZIP of 12.325.Compared with aumolertinib and anlotinib used alone,their combined treatment more strongly inhibited the proliferation and survival,enhanced apoptosis and suppressed invasion and migration abilities of PC-9 and HCC827 cells.Western blotting showed that in both PC-9 and HCC827 cells,the combined treatment significantly upregulated the expressions of E-cadherin and Bax proteins,downregulated the expressions of Bcl-2,vimentin,MMP2,and MMP9 proteins,and reduced phosphorylation levels of PI3K and Akt.Conclusion Aumolertinib combined with anlotinib can effectively inhibit NSCLC cell proliferation by downregulating the PI3K-Akt pathway,suggesting a potentially new option for NSCLC treatment.
7.A Comprehensive Study of the Association between LEPR Gene rs1137101 Variant and Risk of Digestive System Cancers
Qiong Wei HU ; Guang Wei ZHOU ; Wei Guang ZHOU ; Xi Jia LIAO ; Xing Jia SHI ; FengYang XIE ; Heng Shou LI ; Yong WANG ; Hong Xian FENG ; Li Xiu GU ; Feng Bi CHEN
Biomedical and Environmental Sciences 2024;37(5):445-456
Objective The leptin receptor,encoded by the LEPR gene,is involved in tumorigenesis.A potential functional variant of LEPR,rs1137101(Gln223Arg),has been extensively investigated for its contribution to the risk of digestive system(DS)cancers,but results remain conflicting rather than conclusive.Here,we performed a case-control study and subsequent meta-analysis to examine the association between rs1137101 and DS cancer risk. Methods A total of 1,727 patients with cancer(gastric/liver/colorectal:460/480/787)and 800 healthy controls were recruited.Genotyping of rs1137101 was conducted using a polymerase chain reaction-restriction fragment length polymorphism(PCR-RFLP)assay and confirmed using Sanger sequencing.Twenty-four eligible studies were included in the meta-analysis. Results After Bonferroni correction,the case-control study revealed that rs1137101 was significantly associated with the risk of liver cancer in the Hubei Chinese population.The meta-analysis suggested that rs1137101 is significantly associated with the risk of overall DS,gastric,and liver cancer in the Chinese population. Conclusion The LEPR rs1137101 variant may be a genetic biomarker for susceptibility to DS cancers(especially liver and gastric cancer)in the Chinese population.
8.Aumolertinib combined with anlotinib inhibits proliferation of non-small cell lung cancer cells by down-regulating the PI3K/AKT pathway
Yumei YANG ; Xuerou LIU ; Wei LIU ; Xingqi ZHOU ; Zhen ZHANG ; Yan HU ; Peipei LIU ; Xian LI ; Hao LIU ; Shanshan LI
Journal of Southern Medical University 2024;44(10):1965-1975
Objective To investigate the inhibitory effect of aumolertinib combined with anlotinib on proliferation of non-small cell lung cancer(NSCLC)cells.Methods CCK-8 assay,colony formation assay,and flow cytometry were used to assess the effect of different concentrations of aumolertinib or anlotinib on proliferation,survival,and apoptosis of PC-9 and HCC827 cells,and their synergistic effect was evaluated using the SynergyFinder model.In PC-9 and HCC827 cells treated with aumolertinib combined with anlotinib,the changes in cell invasion and migration abilities were assessed with Transwell assay,and the expressions of apoptosis-and invasion/migration-related proteins(Bax,Bcl-2,E-cadherin,vimentin,MMP2,and MMP9)and the key PI3K-Akt pathway proteins were detected using Western blotting.Results In PC-9 cells,the IC50 of aumolertinib and anlotinib was 1.701 μmol/L and 4.979 μmol/L,respectively,with a synergy score(ZIP)of 19.112;in HCC827 cells,their IC50 was 2.961 μmol/L and 7.934 μmol/L,respectively,with a ZIP of 12.325.Compared with aumolertinib and anlotinib used alone,their combined treatment more strongly inhibited the proliferation and survival,enhanced apoptosis and suppressed invasion and migration abilities of PC-9 and HCC827 cells.Western blotting showed that in both PC-9 and HCC827 cells,the combined treatment significantly upregulated the expressions of E-cadherin and Bax proteins,downregulated the expressions of Bcl-2,vimentin,MMP2,and MMP9 proteins,and reduced phosphorylation levels of PI3K and Akt.Conclusion Aumolertinib combined with anlotinib can effectively inhibit NSCLC cell proliferation by downregulating the PI3K-Akt pathway,suggesting a potentially new option for NSCLC treatment.
9.Hemin attenuates bleomycin-induced lung fibrosis in mice by regulating the TGF-ββ1/MAPK and AMPK/SIRT1/PGC-1αα/HO-1/ NF-κκB pathways
Wei HAO ; Ting-ting YU ; Wei LI ; Guo-guang WANG ; Hui-xian HU ; Ping-ping ZHOU
The Korean Journal of Physiology and Pharmacology 2024;28(6):559-568
The objective of this study was to investigate the protective effect and potential mechanism of action of hemin on bleomycin-induced pulmonary fibrosis in mice. Male C57BL/6 mice were randomly divided into control, bleomycin and bleomycin + hemin groups. Mice in the bleomycin and bleomycin + hemin groups were injected intratracheally with bleomycin to establish the pulmonary fibrosis model.The bleomycin + hemin group mice were injected intraperitoneally with hemin starting 7 days before modeling until the end of Day 21 after modeling. Pathological changes in lung tissue were assessed by HE and Masson staining. Malondialdehyde (MDA), superoxide dismutase (SOD) and catalase (CAT) levels were determined in lung tissue. Immunohistochemistry was performed to assess the expression of α-SMA and collagen I. The serum levels of IL-6 and TNF-α were measured via ELISA.Western blotting was used to determine the expression of TGF-β1, SIRT1, PGC-1α and HO-1 and the phosphorylation levels of p38, ERK1/2, JNK, AMPK and NF-κB p65 in lung tissue. Hemin significantly reduced lung indices, increased terminal body weight. It also significantly increased SOD and CAT activities; decreased MDA, IL-6 and TNF-α levels; reduced the levels of α-SMA and collagen I-positive cells; upregulated SIRT1, PGC-1α and HO-1 expression; promoted AMPK phosphorylation; and downregulated TGF-β1 expression and p38, ERK1/2, JNK and NF-κB p65 phosphorylation. Hemin might attenuate oxidative damage and inflammatory responses and reduces extracellular matrix deposition by regulating the expression and phosphorylation of proteins associated with the TGF-β1/MAPK and AMPK/SIRT1/PGC-1α/HO-1/ NF-κB pathways, thereby alleviating bleomycin-induced pulmonary fibrosis.
10.Hemin attenuates bleomycin-induced lung fibrosis in mice by regulating the TGF-ββ1/MAPK and AMPK/SIRT1/PGC-1αα/HO-1/ NF-κκB pathways
Wei HAO ; Ting-ting YU ; Wei LI ; Guo-guang WANG ; Hui-xian HU ; Ping-ping ZHOU
The Korean Journal of Physiology and Pharmacology 2024;28(6):559-568
The objective of this study was to investigate the protective effect and potential mechanism of action of hemin on bleomycin-induced pulmonary fibrosis in mice. Male C57BL/6 mice were randomly divided into control, bleomycin and bleomycin + hemin groups. Mice in the bleomycin and bleomycin + hemin groups were injected intratracheally with bleomycin to establish the pulmonary fibrosis model.The bleomycin + hemin group mice were injected intraperitoneally with hemin starting 7 days before modeling until the end of Day 21 after modeling. Pathological changes in lung tissue were assessed by HE and Masson staining. Malondialdehyde (MDA), superoxide dismutase (SOD) and catalase (CAT) levels were determined in lung tissue. Immunohistochemistry was performed to assess the expression of α-SMA and collagen I. The serum levels of IL-6 and TNF-α were measured via ELISA.Western blotting was used to determine the expression of TGF-β1, SIRT1, PGC-1α and HO-1 and the phosphorylation levels of p38, ERK1/2, JNK, AMPK and NF-κB p65 in lung tissue. Hemin significantly reduced lung indices, increased terminal body weight. It also significantly increased SOD and CAT activities; decreased MDA, IL-6 and TNF-α levels; reduced the levels of α-SMA and collagen I-positive cells; upregulated SIRT1, PGC-1α and HO-1 expression; promoted AMPK phosphorylation; and downregulated TGF-β1 expression and p38, ERK1/2, JNK and NF-κB p65 phosphorylation. Hemin might attenuate oxidative damage and inflammatory responses and reduces extracellular matrix deposition by regulating the expression and phosphorylation of proteins associated with the TGF-β1/MAPK and AMPK/SIRT1/PGC-1α/HO-1/ NF-κB pathways, thereby alleviating bleomycin-induced pulmonary fibrosis.

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