1.GPSM2 is highly expressed in gastric cancer to affect patient prognosis by promoting tumor cell proliferation.
Xue SONG ; Yue CHEN ; Min ZHANG ; Nuo ZHANG ; Lugen ZUO ; Jing LI ; Zhijun GENG ; Xiaofeng ZHANG ; Yueyue WANG ; Lian WANG ; Jianguo HU
Journal of Southern Medical University 2025;45(2):229-238
OBJECTIVES:
To explore the association between GPSM2 expression level and gastric cancer progression and analyze the functional pathways and action mechanism of GPSM2.
METHODS:
We analyzed GPSM2 expression levels in gastric cancer tumors based on data from the GEPIA database and the clinical data of 109 patients. Public databases enrichment analysis were used to assess the impact of GPSM2 expression level on survival outcomes and the functional pathways and action mechanism of GPSM2. We further observed the effects of GPSM2 knockdown and overexpression on proliferation, migration and apoptosis of MGC803 cells using CCK-8 assay, colony formation assay, flow cytometry and immunoblotting and on the growth of MGC803 cell xenografts in nude mice.
RESULTS:
Bioinformatic analysis and immunohistochemical staining of the clinical specimens both revealed high GPSM2 expressions in gastric cancer (P<0.01). A high GPSM2 expression was significantly correlated with T3-4 stages, N2-3 stages, a carcinoembryonic antigen (CEA) level ≥5 μg/L, and a carbohydrate antigen (CA) 19-9 level ≥37 kU/L (P<0.05). Cox regression analysis identified high GPSM2 expression as an independent risk factor affecting 5-year survival of the patients (P<0.05). Gene ontology (GO) analysis suggested that GPSM2 was involved in cell cycle regulation. In MGC803 cells, GPSM2 overexpression significantly promoted cell proliferation and G1/S transition and xenograft growth in nude mice. KEGG pathway enrichment analysis indicated that GPSM2 executed its biological functions by regulating the p53 signaling pathway, which was confirmed by the results of immunoblotting experiments showing suppression of p53 signaling pathway activity in GPSM2-over expressing MGC803 cells.
CONCLUSIONS
GPSM2 is highly expressed in gastric cancer to affect patient prognosis by promoting tumor cell proliferation and G1/S transition possibly via inhibiting the p53 pathway.
Stomach Neoplasms/metabolism*
;
Humans
;
Cell Proliferation
;
Prognosis
;
Animals
;
Mice, Nude
;
Cell Line, Tumor
;
Mice
;
Apoptosis
;
Tumor Suppressor Protein p53/metabolism*
;
Cell Movement
2.Nodakenin ameliorates TNBS-induced experimental colitis in mice by inhibiting pyroptosis of intestinal epithelial cells.
Ju HUANG ; Lixia YIN ; Minzhu NIU ; Zhijun GENG ; Lugen ZUO ; Jing LI ; Jianguo HU
Journal of Southern Medical University 2025;45(2):261-268
OBJECTIVES:
To investigate the therapeutic mechanism of nodakenin for Crohn's disease (CD)-like colitis in mice.
METHODS:
Using a colonic organoid model with lipopolysaccharide (LPS)- and ATP-induced pyroptosis, we investigated the effects of nodakenin on pyroptosis, intestinal barrier function and inflammatory response by detecting key pyroptosis-regulating factors and assessing changes in permeability and pro-inflammatory factors. In a mouse model of 2,4,6-trinitrobenzenesulfonic acid (TNBS)-induced CD-like colitis, the therapeutic effect of nodakenin was evaluated by measuring changes in body weight, DAI score, colonic histopathologies, inflammation score, intestinal barrier function and intestinal epithelial cell pyroptosis. The mechanism of nodakenin protection against pyroptosis of intestinal epithelial cells was explored using network pharmacology analysis and in vivo and in vitro experiments.
RESULTS:
In LPS- and ATP-induced colonic organoids, treatment with nodakenin significantly inhibited the expressions of NLRP3, GSDMD-N, cleaved caspase-1 and caspase-11, improved intestinal FITC-dextran (FD4, 4000) permeability, and decreased the levels of IL-1β and IL-18. In the mouse model of TNBS-induced colitis, nodakenin treatment significantly alleviated weight loss, reduced DAI score, inflammatory cell infiltration and inflammation score, and decreased serum FD4 and I-FABP levels and bacteria translocation to the mesenteric lymph nodes, spleen and liver. The mice with nodakenin treatment had also lowered expressions of NLRP3, GSDMD-N, cleaved caspase-1 and caspase-11 in the intestinal mucosa. Network pharmacology analysis suggested that the inhibitory effect of nodakenin on colitis was associated with the PI3K/Akt pathway. In both the colonic organoid model and mouse models of colitis, nodakenin effectively inhibited the activation of the PI3K/Akt pathway, and the application of IGF-1, a PI3K/Akt pathway activator, strongly attenuated the protective effect of nodakenin against intestinal epithelial cell pyroptosis and intestinal barrier dysfunction.
CONCLUSIONS
Nodakenin protects intestinal barrier function and alleviates CD-like colitis in mice at least partly by inhibiting PI3K/Akt signaling to reduce intestinal epithelial cell pyroptosis.
Animals
;
Pyroptosis/drug effects*
;
Mice
;
Trinitrobenzenesulfonic Acid
;
Colitis/drug therapy*
;
Epithelial Cells/drug effects*
;
Intestinal Mucosa/cytology*
;
Disease Models, Animal
;
Coumarins/pharmacology*
;
NLR Family, Pyrin Domain-Containing 3 Protein/metabolism*
;
Crohn Disease/drug therapy*
3.Cimifugin ameliorates Crohn's disease-like colitis in mice by modulating Th-cell immune balance via inhibiting the MAPK pathway.
Lixia YIN ; Minzhu NIU ; Keni ZHANG ; Zhijun GENG ; Jianguo HU ; Jiangyan LI ; Jing LI
Journal of Southern Medical University 2025;45(3):595-602
OBJECTIVES:
To investigate the therapeutic effects of cimifugin on Crohn's disease (CD)-like colitis in mice and its possible mechanism.
METHODS:
Thirty adult male C57BL/6 mice were randomized equally into control group, 2,4,6-trinitrobenzenesulfonic acid (TNBS)-induced CD-like colitis model group, and cimifugin treatment (daily gavage at 12.5 mg/kg) group. The therapeutic effect of cimifugin was evaluated by observing changes in body weight, disease activity index (DAI) scores, colon length, histopathological inflammation scores, and inflammatory cytokine levels in the colonic mucosa. Intestinal barrier integrity in the mice was assessed using immunofluorescence assay and Western blotting for claudin-1 and ZO-1; T-helper (Th) cell subset ratios in the mesenteric lymph nodes were analyzed with flow cytometry. Network pharmacology, KEGG enrichment analysis and molecular docking were used to predict the targets of cimifugin and analyze the key pathways and cimifugin-MAPK protein interactions, which were validated by Western blotting in the mouse models.
RESULTS:
In mice with TNBS-induced colitis, cimifugin treatment significantly attenuated body weight loss and colon shortening, lowered DAI and histopathological scores, decreased IFN-γ and IL-17 levels, and increased IL-4 and IL-10 levels in the colonic mucosa. Cimifugin treatment also significantly improved TNBS-induced claudin-1 dislocation and reduction of goblet cells, upregulated claudin-1 and ZO-1 expressions, reduced Th1 and Th17 cell percentages, and increased Th2 and Treg cell percentages in the colonic mucosa of the mice. KEGG analysis suggested a possible connection between the effect of cimifugin and MAPK signaling, and molecular docking showed strong binding affinity between cimifugin and MAPK core proteins. Western blotting demonstrated significantly decreased phosphorylation levels of JNK, ERK, and p38 in the colonic mucosa of cimifugin-treated mouse models.
CONCLUSIONS
Cimifugin alleviates TNBS-induced CD-like colitis by repairing intestinal barrier damage and restoring Th1/Th2 and Th17/Treg balance via suppressing MAPK pathway activation.
Animals
;
Mice, Inbred C57BL
;
Male
;
Mice
;
Crohn Disease/immunology*
;
Colitis/immunology*
;
MAP Kinase Signaling System/drug effects*
;
Trinitrobenzenesulfonic Acid
;
T-Lymphocytes, Helper-Inducer/drug effects*
;
Intestinal Mucosa
;
Disease Models, Animal
4.High MYO1B expression promotes proliferation, migration and invasion of gastric cancer cells and is associated with poor patient prognosis.
Qingqing HUANG ; Wenjing ZHANG ; Xiaofeng ZHANG ; Lian WANG ; Xue SONG ; Zhijun GENG ; Lugen ZUO ; Yueyue WANG ; Jing LI ; Jianguo HU
Journal of Southern Medical University 2025;45(3):622-631
OBJECTIVES:
To analyze MYO1B expression in gastric cancer, its association with long-term prognosis and its role in regulating biological behaviors of gastric cancer cells.
METHODS:
We analyzed MYO1B expression in gastric cancer and its correlation with tumor grade, tumor stage, and patient survival using the Cancer Public Database. We also examined MYO1B expression with immunohistochemistry in gastric cancer and paired adjacent tissues from 105 patients receiving radical surgery and analyzed its correlation with cancer progression and postoperative 5-year survival of the patients. GO and KEGG enrichment analyses were used to explore the biological functions of MYO1B and the key pathways. In cultured gastric cancer cells, we examined the changes in cell proliferation, migration and invasion following MYO1B overexpression and knockdown.
RESULTS:
Data from the Cancer Public Database showed that MYO1B expression was significantly higher in gastric cancer tissues than in normal tissues with strong correlations with tumor grade, stage and patient prognosis (P<0.05). In the clinical tissue samples, MYO1B was significantly overexpressed in gastric cancer tissues in positive correlation with Ki67 expression (r=0.689, P<0.05) and the parameters indicative of gastric cancer progression (CEA ≥5 μg/L, CA19-9 ≥37 kU/L, G3-4, T3-4, and N2-3) (P<0.05). Kaplan-Meier analysis and multivariate Cox regression analysis suggested that high MYO1B expression was associated with decreased postoperative 5-year survival and was an independent risk factor (HR: 3.522, 95%CI: 1.783-6.985, P<0.05). MYO1B expression level was a strong predictor of postoperative survival (cut-off value: 3.11, AUC: 0.753, P<0.05). GO and KEGG analyses suggested that MYO1B may regulate cell migration and the mTOR signaling pathway. In cultured gastric cancer cells, MYO1B overexpression significantly enhanced cell proliferation, migration, and invasion and promoted the phosphorylation of Akt and mTOR.
CONCLUSIONS
High MYO1B expression promotes proliferation, migration and invasion of gastric cancer cells and is correlated with poor patient prognosis.
Humans
;
Stomach Neoplasms/metabolism*
;
Cell Proliferation
;
Prognosis
;
Cell Movement
;
Myosin Type I/genetics*
;
Neoplasm Invasiveness
;
Cell Line, Tumor
;
Female
;
Male
5.Ecliptasaponin A ameliorates DSS-induced colitis in mice by suppressing M1 macrophage polarization via inhibiting the JAK2/STAT3 pathway.
Minzhu NIU ; Lixia YIN ; Tong QIAO ; Lin YIN ; Keni ZHANG ; Jianguo HU ; Chuanwang SONG ; Zhijun GENG ; Jing LI
Journal of Southern Medical University 2025;45(6):1297-1306
OBJECTIVES:
To investigate the effect of ecliptasaponin A (ESA) for alleviating dextran sulfate sodium (DSS)-induced inflammatory bowel disease (IBD) in mice and the underlying mechanism.
METHODS:
Twenty-four male C57BL/6 mice (8-10 weeks old) were equally randomized into control group, DSS-induced IBD model group, and DSS+ESA (50 mg/kg) treatment group. Disease activity index (DAI), colon length and spleen index of the mice were measured, and intestinal pathology was examined with HE staining. The expressions of inflammatory mediators (TNF-α, IL-6, and iNOS) in the colon mucosa were detected using ELISA and RT-qPCR, and intestinal barrier integrity was assessed using AB-PAS staining and by detecting ZO-1 and claudin-1 expressions using immunofluorescence staining and Western blotting. In cultured RAW264.7 macrophages, the effects of treatment with 50 μmol/L ESA, alone or in combination with 20 μmol/L RO8191 (a JAK2/STAT3 pathway activator), on M1 polarization of the cells induced by LPS and IFN-γ stimulation and expressions of JAK2/STAT3 pathway proteins were analyzed using flow cytometry and Western blotting.
RESULTS:
In the mouse models of DSS-induced IBD, ESA treatment significantly alleviated body weight loss and colon shortening, reduced DAI, spleen index and histological scores, and ameliorated inflammatory cell infiltration in the colon tissue. ESA treatment also suppressed TNF‑α, IL-6 and iNOS expressions, protected the goblet cells and the integrity of the mucus and mechanical barriers, and upregulated the expressions of ZO-1 and claudin-1. ESA treatment obviously decreased CD86+ M1 polarization in the mesenteric lymph nodes of IBD mice and in LPS and IFN-γ-induced RAW264.7 cells, and significantly reduced p-JAK2 and p-STAT3 expressions in both the mouse models and RAW264.7 cells. Treatment with RO8191 caused reactivation of JAK2/STAT3 and strongly attenuated the inhibitory effect of ESA on CD86+ polarization in RAW264.7 cells.
CONCLUSIONS
ESA alleviates DSS-induced colitis in mice by suppressing JAK2/STAT3-mediated M1 macrophage polarization and mitigating inflammation-driven intestinal barrier damage.
Animals
;
Mice
;
Janus Kinase 2/metabolism*
;
STAT3 Transcription Factor/metabolism*
;
Mice, Inbred C57BL
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Male
;
Dextran Sulfate
;
Macrophages/cytology*
;
Colitis/metabolism*
;
Saponins/pharmacology*
;
Signal Transduction/drug effects*
;
RAW 264.7 Cells
;
Triterpenes/pharmacology*
;
Interleukin-6/metabolism*
6.Pinostrobin targets the PI3K/AKT/CCL2 axis in intestinal epithelial cells to inhibit intestinal macrophage infiltration and alleviate dextran sulfate sodium-induced colitis in mice.
Keni ZHANG ; Tong QIAO ; Lin YIN ; Ju HUANG ; Zhijun GENG ; Lugen ZUO ; Jianguo HU ; Jing LI
Journal of Southern Medical University 2025;45(10):2199-2209
OBJECTIVES:
To investigate the mechanism through which pinostrobin (PSB) alleviates dextran sulfate sodium (DSS)-induced colitis in mice.
METHODS:
C57BL/6 mice were randomized into control group, DSS model group, and PSB intervention (30, 60, and 120 mg/kg) groups. Colitis severity of the mice was assessed by examining body weight changes, disease activity index (DAI), colon length, and histopathology. The expressions of tight junction proteins ZO-1 and claudin-1 in the colon tissues were examined using immunofluorescence staining, and macrophage infiltration and polarization were analyzed with flow cytometry. ELISA and RT-qPCR were used for detecting the expressions of inflammatory factors (TNF‑α and IL-6) and chemokines (CCL2, CXCL10, and CX3CL1) in the colon tissues, and PI3K/AKT phosphorylation levels were analyzed with Western blotting. In cultured Caco-2 and RAW264.7 cells, the effect of PSB on CCL2-mediated macrophage migration was assessed using Transwell assay. Network pharmacology analysis was performed to predict the key pathways that mediate the therapeutic effect of PSB.
RESULTS:
In DSS-induced mouse models, PSB at 60 mg/kg optimally alleviated colitis, shown by reduced weight loss and DAI scores and increased colon length. PSB treatment significantly upregulated ZO-1 and claudin-1 expressions in the colon tissues, inhibited colonic macrophage infiltration, and promoted the shift of macrophage polarization from M1 to M2 type. In cultured intestinal epithelial cells, PSB significantly inhibited PI3K/AKT phosphorylation and suppressed chemokine CCL2 expression. PSB treatment obviously blocked CCL2-mediated macrophage migration of RAW264.7 cells, which could be reversed by exogenous CCL2. Network pharmacology analysis and rescue experiments confirmed PI3K/AKT and CCL2 signaling as the core targets of PSB.
CONCLUSIONS
PSB alleviates DSS-induced colitis in mice by targeting intestinal epithelial PI3K/AKT signaling, reducing CCL2 secretion, and blocking macrophage chemotaxis and migration, highlighting the potential of PSB as a novel natural compound for treatment of inflammatory bowel disease.
Animals
;
Mice
;
Mice, Inbred C57BL
;
Phosphatidylinositol 3-Kinases/metabolism*
;
Colitis/drug therapy*
;
Dextran Sulfate
;
Proto-Oncogene Proteins c-akt/metabolism*
;
Macrophages
;
Chemokine CCL2/metabolism*
;
Humans
;
Signal Transduction/drug effects*
;
Caco-2 Cells
;
RAW 264.7 Cells
;
Epithelial Cells/drug effects*
;
Intestinal Mucosa/metabolism*
7.Elevated TMCO1 expression in gastric cancer is associated poor prognosis and promotes malignant phenotypes of tumor cells by inhibiting apoptosis.
Bowen SONG ; Renjie ZHOU ; Ying XU ; Jinran SHI ; Zhizhi ZHANG ; Jing LI ; Zhijun GENG ; Xue SONG ; Lian WANG ; Yueyue WANG ; Lugen ZUO
Journal of Southern Medical University 2025;45(11):2385-2393
OBJECTIVES:
To investigate the impact of high expression of transmembrane and coiled helix structural domain 1 (TMCO1) on prognosis of gastric cancer and the possible mechanisms.
METHODS:
TMCO1 expression in gastric cancer and its effect on gastric cancer progression and prognosis were analyzed using publicly available databases and clinical data of patients undergoing radical surgery in our hospital, and its possible biological functions were explored using KEGG and GO analyses. In gastric cancer HGC-27 cells, the effects of lentivirus-mediated TMCO1 overexpression and TMCO1 silencing on cell apoptosis, proliferation, invasion and migration were examined.
RESULTS:
TMCO1 expression was significantly elevated in gastric cancer tissues (P<0.05), and its high expression was positively correlated with cancer progression (P<0.001) and a lowered postoperative 5-year survival rate of the patients (P<0.05). Bioinformatic analyses suggested that TMCO1 may affect gastric cancer cell apoptosis via Wnt signaling. In HGC-27 cells, TMCO1 overexpression significantly promoted tumor cell proliferation, inhibited cell apoptosis, and enhanced cell migration and invasion, whereas TMCO1 silencing produced the opposite effects. Western blotting showed that β-catenin levels were significantly upregulated in TMCO1-overexpressing cells and downregulated in cells with TMCO1 silencing.
CONCLUSIONS
TMCO1 is overexpressed in gastric cancer tissues, and its high expression promotes gastric cancer progression and affects long-term prognosis of the patients possibly by activating the Wnt/ β-catenin signaling pathway to inhibit apoptosis of gastric cancer cells.
Humans
;
Stomach Neoplasms/metabolism*
;
Apoptosis
;
Prognosis
;
Cell Line, Tumor
;
Cell Proliferation
;
Cell Movement
;
Wnt Signaling Pathway
;
beta Catenin/metabolism*
;
Gene Expression Regulation, Neoplastic
8.Asperosaponin VI alleviates TNBS-induced Crohn's disease-like colitis in mice by reducing intestinal epithelial cell apoptosis via inhibiting the PI3K/AKT/NF-κB signaling pathway.
Minzhu NIU ; Lixia YIN ; Ting DUAN ; Ju HUANG ; Jing LI ; Zhijun GENG ; Jianguo HU ; Chuanwang SONG
Journal of Southern Medical University 2024;44(12):2335-2346
OBJECTIVES:
To investigate the effects of asperosaponin VI (AVI) on intestinal epithelial cell apoptosis and intestinal barrier function in a mouse model of Crohn's disease (CD)-like colitis and explore its mechanisms.
METHODS:
Male C57BL/6 mice with TNBS-induced CD-like colitis were treated with saline or AVI (daily dose 150 mg/kg) by gavage for 6 days. The changes in body weight, colon length, DAI scores, and colon pathologies of the mice were observed, and the expressions of inflammatory factors and tight injunction proteins were detected using ELISA and RT-qPCR. The effects of AVI on barrier function and apoptosis of mouse intestinal epithelial cells and TNF‑α‑treated Caco-2 cells were analyzed using immunofluorescence staining, TUNEL assay, and Western blotting. Network pharmacology, TUNEL assay, and Western blotting were performed to explore and validate the therapeutic mechanisms of AVI for CD.
RESULTS:
In the mouse models of CD-like colitis, AVI significantly improved body weight loss, colon shortening and DAI and tissue inflammation scores, alleviated intestinal villi and goblet cell injuries, and lowered the expressions of inflammatory factors. AVI treatment significantly reduced the loss of tight junction proteins and apoptosis in both mouse intestinal epithelial cells and TNF‑α-stimulated Caco-2 cells. KEGG enrichment pathway analysis suggested that the therapeutic effect of AVI on CD was associated with inhibition of PI3K/AKT/NF-κB pathway activation, which was confirmed by lowered expressions of p-PI3K, p-AKT, and p-p65 in AVI-treated mouse models and Caco-2 cells. In Caco-2 cells, Recilisib significantly blocked the inhibitory effect of AVI on the PI3K/AKT/NF-κB pathway and TNF-α-induced apoptosis, and AKT1 knockdown experiment confirmed the role of the PI3K/AKT pathway for mediating the activation of downstream NF-κB signaling.
CONCLUSIONS
AVI can improve TNBS-induced CD-like colitis in mice by reducing intestinal epithelial cell apoptosis and intestinal barrier damage via inhibiting the PI3K/AKT/NF-κB signaling pathway.
Animals
;
Saponins/therapeutic use*
;
Mice
;
Crohn Disease/metabolism*
;
Apoptosis/drug effects*
;
Signal Transduction/drug effects*
;
Proto-Oncogene Proteins c-akt/metabolism*
;
Mice, Inbred C57BL
;
Male
;
Humans
;
Caco-2 Cells
;
Phosphatidylinositol 3-Kinases/metabolism*
;
NF-kappa B/metabolism*
;
Colitis/drug therapy*
;
Disease Models, Animal
;
Epithelial Cells/drug effects*
;
Trinitrobenzenesulfonic Acid
;
Intestinal Mucosa/drug effects*
;
Tumor Necrosis Factor-alpha/metabolism*
9.α-Cyperone Antagonizes Intestinal Mucosal Inflammatory Response Through Modulation of TLR4/NF-κB Signaling Pathway to Alleviate Crohn's Disease-Like Colitis in Mice
Nuo ZHANG ; Min ZHANG ; Xue SONG ; Xiaofeng ZHANG ; Zhijun GENG ; Lian WANG ; Sitang GE ; Jing LI ; Lugen ZUO ; Jianguo HU
Journal of Sichuan University (Medical Sciences) 2024;55(5):1166-1174
Objective To investigate the effect and potential mechanisms of α-cyperone(CYP)on Crohn's disease(CD)-like colitis induced by 2,4,6-trinitrobenzene sulfonic acid(TNBS)in mice.Methods The mice were randomly and evenly divided into wild type(WT),TNBS,CYP and 5-aminosalicylic acid(5-ASA)groups,with 10 mice in each group.The symptoms of enteritis,the function and structure of the intestinal barrier,and the expression levels of inflammatory factors,including interleukin-6(IL-6),tumor necrosis factor-α(TNF-α),interleukin-1β(IL-1β),and gamma-interferon(IFN-γ),in the colon were assessed.The lipopolysaccharide(LPS)-induced inflammation model of Caco2 cells was constructed and the cells were divided into Control,LPS and LPS+CYP groups.The expression levels of tight junction protein and inflammatory factors in each group were assessed.Gene Ontology(GO)functional enrichment analysis was conducted to predict the possible pathways of action and potential molecular mechanisms of CYP,and to verify them in vivo and in vitro.Results In the in vivo study,compared with those of the TNBS group,the body mass and colon length of mice in the CYP group and the 5-ASA group were significantly increased,while the disease activity scores and histological inflammation scores were significantly decreased(P<0.05).The level of lucifcein-glucan isothiocyanate and the bacterial translocation rate(in the liver,the spleen,and mesenteric lymph nodes)were significantly decreased,while the transepithelial electric resistance(TEER)value and the expression levels of zonula occluden protein-1(ZO-1),and claudin-1 were significantly increased(P<0.05).The expression of inflammatory factors was significantly decreased(P<0.05).In the in vitro study,compared with those of the LPS group,the TEER value and the expression of ZO-1 and claudin-1 in the Caco2 cells in the LPS+CYP group were significantly increased(P<0.05).The expression of inflammatory factors was significantly decreased(P<0.05).Enrichment analysis showed that CYP was correlated with inflammatory response(P<0.001).Western blot results showed that CYP could significantly reduce the expression of key proteins in toll-like receptor 4(TLR4)/nuclear factor-κB(NF-κB)signaling pathway in vivo and in vitro(P<0.05).Conclusion CYP may protect the intestinal barrier by antagonizing the inflammatory response of the intestinal mucosa through regulating the expression of the TLR4/NF-κB signaling pathway,thereby alleviating TNBS-induced CD-like colitis in mice.
10.Isongifolene Improves Crohn's Disease-Like Colitis in Mice by Reducing Apoptosis of Intestinal Epithelial Cells
Ting DUAN ; Zhijun GENG ; Jingjing YANG ; Lixia YIN ; Mingxi SUN ; Shunyin WANG ; Xiaofeng ZHANG ; Jing LI ; Jianguo HU ; Guoyu LU
Journal of Sichuan University (Medical Sciences) 2024;55(5):1175-1185
Objective To investigate the effect and molecular mechanism of isolongifolene(ISO)on the apoptosis of intestinal epithelial cells and 2,4,6-trinitrobenzenesulfonic acid(TNBS)-induced Crohn's disease(CD)-like colitis in mice.Methods In the animal experiments,mice were randomly assigned to the wild type(WT)group,TNBS group and TNBS+ISO group,with 8 mice in each group.Colitis models of mice were established in the TNBS group and the TNBS+ISO group by rectal injection of TNBS.After modeling,the mice in the TNBS+ISO group were given ISO intervention via intragastric gavage(10 mg/kg),and the other two groups were given the same amount of normal saline via intragastric gavage.The mice were sacrificed on the 7th day.The changes in body mass,disease activity scores(DAI),and the colon length of mice were measured,and transepithelial electrical resistance(TEER)of the colon tissues was determined.The score of colon inflammation was calculated according to HE staining.The levels of intestinal mucosal inflammatory factors,including tumor necrosis factor alpha(TNF-α),interferon(IFN)-γ,interleukin(IL)-1 β,and IL-6,were measured by RT-PCR and ELISA.The apoptosis of colon tissue cells was determined by TUNEL assay.The expressions of apoptotic proteins(cleaved caspase-3/caspase-3 and Bax),an anti-apoptotic protein(Bcl-2),and tight junction proteins(ZO-1 and claudin-1)were detected by Western blot and immunofluorescence.In the cell experiment,TNF-α was used to induce intestinal epithelial cell Caco-2 apoptosis model,which was treated with ISO.Then,intervention with the AMPK inhibitor Compound C was given.TUNEL assay,Western blot assay,and immunofluorescence assay were performed to measure apoptosis and the expression of apoptosis proteins in the Caco-2 cells.Gene Ontology(GO)enrichment analysis was performed to predict the biological function of ISO.Then,the mechanism involved was verified by examination of the mice and Caco-2 cells.Western blot was performed to determine the expression levels of p-AMPK/AMPK and p-PGC1α in the colon tissues from the mice of different groups and Caco-2 cells.The apoptosis of the cells was determined by TUNEL assay.Results According to the results of the animal experiment,ISO could alleviate experimental colitis and intestinal barrier dysfunction,leading to improvements in body mass loss,colon length shortening,DAI score,inflammatory rating,and TEER values(all P<0.05)in mice.Furthermore,ISO decreased the expression of pro-inflammatory factors TNF-α,IFN-γ,IL-1β,and IL-6 and increased the expression of the tight junction proteins ZO-1 and claudin-1(all P<0.05).In the cell experiment,in a TNF-α-induced intestinal epithelial cell model,ISO was also found to protect intestinal barrier against damage.ISO reduced the proportion of apoptotic intestinal epithelial cells,reduced the expression of cleaved-caspase-3/caspase-3 and Bax,and upregulated the level of Bcl-2(all P<0.05).GO enrichment predictive analysis showed that the role of ISO in improving CD-like enteritis might be associated with the negative regulation of apoptosis.Verification of the mechanism showed that the expression of p-AMPK and p-PGC1α in the mice colon tissue was significantly upregulated after ISO intervention(P<0.05).In contrast,the AMPK inhibitor Compound C increased the apoptosis rate of ISO-treated Caco-2 cells and decreased the relative expression levels of ZO-1 and claudin-1(P<0.05).Conclusion ISO reduces intestinal epithelial cell apoptosis at least in part by activating AMPK/PGC1α signaling pathway,thereby alleviating TNBS-induced intestinal barrier dysfunction and CD-like colitis in mice.

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