Endothelial dysfunction induced by inflammation and oxidative stress represents a critical pathological mechanism in cardiovascular and cerebrovascular diseases, including sepsis and atherosclerosis. Although crebanine has been reported to possess anti-inflammatory and analgesic properties, its effects on inflammation and oxidative stress in endothelial cells remain unknown. In this study, we assessed cell viability, apoptosis, and migration using the Cell Counting Kit-8 (CCK-8), flow cytometry, and a wound healing assay, respectively. The levels of reactive oxygen species (ROS) and the expression of inflammatory and oxidative stress markers were determined by qRT-PCR, enzyme-linked immunosorbent assay (ELISA), and Western blotting analysis. Our results demonstrated that crebanine alleviated lipopolysaccharide (LPS)-induced apoptosis and dysfunction in human umbilical vein endothelial cells (HUVECs). Crebanine treatment inhibited the production of pro-inflammatory cytokines (TNF-α, IL-6, IL-1β), ROS, and malondialdehyde (MDA), while it enhanced the activity of the antioxidant enzyme superoxide dismutase (SOD). Mechanistically, crebanine suppressed LPS-induced activation of the NF-κB signaling pathway in HUVECs. Furthermore, the improvement effect of crebanine on the inflammation and dysfunction in LPS-treated HUVECs was reversed by diprovocim, an NF-κB activator. These findings suggest that crebanine ameliorates LPS-induced inflammation and oxidative stress in HUVECs by inhibiting the NF-κB signaling pathway, indicating its potential therapeutic value for treating vascular endothelial dysfunction-related diseases.
The regeneration of the liver involves a process governed by diverse biological routes. The zinc finger protein Zinc Finger MAtrin-3 (ZMAT3) is vital in regulating transcription. This research intends to clarify how ZMAT3 influences liver regeneration and to pinpoint possible novel therapeutic intervention targets. We utilized the GEO database to examine differential gene expression and developed a liver regeneration mouse model that underwent two-thirds partial hepatectomy. Our analysis showed that ZMAT3 expression was significantly upregulated during the phase post-surgery. We then created a mouse model with overexpression of ZMAT3 in hepatocytes. After 2/3 hepatectomy, these mice exhibited enhanced liver regeneration, characterized by accelerated cell cycle progression and increased hepatocyte proliferation compared to controls. Bioinformatics analysis using STRING revealed a significant correlation between ZMAT3 and P21. Consistent with existing studies, we demonstrate that ZMAT3 decreases the stability of P21 mRNA, thereby reducing P21 protein levels and promoting cell cycle progression and hepatocyte proliferation, thereby enhancing liver regeneration. ZMAT3 is upregulated during the period of hepatocyte proliferation in mice and is associated with cell cycle regulation. These results suggest that ZMAT3 may serve as a potential therapeutic target to improve liver regeneration.
Atherosclerosis (AS) remains a leading cause of cardiovascular disease and mortality globally. This chronic condition is characterized by inflammation, lipid accumulation, and the deposition of cellular components within arterial walls. Emerging evidence has highlighted the multifaceted therapeutic potential of short-chain fatty acids (SCFAs) in mitigating AS progression. SCFAs have demonstrated anti-inflammatory properties and the ability to regulate immune responses, metabolic pathways, vascular integrity, and intestinal barrier function in animal models of AS. Consequently, SCFAs have garnered significant attention as a promising approach for the prevention and treatment of AS. However, further clinical trials and studies are necessary to fully elucidate the underlying mechanisms and effects of SCFAs. Additionally, different types of SCFAs may exert distinct impacts, necessitating more in-depth investigation into their specific roles and mechanisms. This review provides an overview of the diverse cellular mechanisms contributing to AS formation, as well as a discussion of the significance of SCFAs in AS pathogenesis and their multifaceted therapeutic potential. Nonetheless, additional research is warranted to comprehensively understand and harness the potential of various SCFAs in the context of AS.
The prevalence of metabolic dysfunction-associated steatotic liver disease (MASLD) has significantly increased, prompting the increased use of steatotic donor livers in transplantation, contributing to a higher incidence and severity of ischemia–reperfusion injury (IRI), necessitating the development of targeted interventions for MASLD-related liver transplantation (MASLD-IRI). Here, we identified epithelial membrane protein 1 (EMP1) as a potential diagnostic and therapeutic target in MASLD-IRI using multi-omics analysis and mechanistic investigations in rodent models and cells, further validating our findings in human samples. Phenotypic observations revealed significant activation of hepatic stellate cells (HSCs) under MASLD-IRI conditions, leading to increased inflammatory liver injury, which correlated with significant upregulation of EMP1 in HSC. Mechanistically, EMP1 upregulation inhibited SMAD-specific E3 ubiquitin-protein ligase 1 (SMURF1)-mediated ubiquitination and degradation of talin1 (TLN1) by competing with SMURF1 for the TLN1 binding site. The subsequent accumulation of TLN1 further promoted phosphorylation of focal adhesion kinase (FAK), establishing a pro-inflammatory signaling axis—EMP1/TLN1/FAK—that amplified HSC activation and aggravated liver injury. Silencing EMP1 suppressed the TLN1/FAK post-translational modification cascade, thereby attenuating HSC activation and downstream inflammation. These findings highlight the potential of EMP1 as a biomarker to monitor the prognosis of MASLD transplantation, as well as a therapeutic target to improve prognosis.
T-cell immunoglobulin domain and mucin domain-3 (Tim-3) is a versatile immunomodulator that protects against intestinal inflammation. Necroptosis is a type of cell death that regulates intestinal homeostasis and inflammation. The mechanism(s) underlying the protective role of macrophage Tim-3 in intestinal inflammation is unclear; thus, we investigated whether specific Tim-3 knockdown in macrophages drives intestinal inflammation via necroptosis. Tim-3 protein and mRNA expression were assessed via double immunofluorescence staining and single-cell RNA sequencing (sc-RNA seq), respectively, in the colonic tissues of patients with inflammatory bowel disease (IBD) and healthy controls. Macrophage-specific Tim3-knockout (Tim-3M−KO) mice were generated to explore the function and mechanism of Tim-3 in dextran sodium sulfate (DSS)-induced colitis. Necroptosis was blocked by pharmacological inhibitors of receptor-interacting protein kinase (RIP)1, RIP3, and reactive oxygen species (ROS). Additionally, in vitro experiments were performed to assess the mechanisms of neutrophil necroptosis induced by Tim-3 knockdown macrophages. Although Tim-3 is relatively inactive in macrophages during colon homeostasis, it is highly active during colitis. Compared to those in controls, Tim-3M−KO mice showed increased susceptibility to colitis, higher colitis scores, and increased pro-inflammatory mediator expression. Following the administration of RIP1/RIP3 or ROS inhibitors, a significant reduction in intestinal inflammation symptoms was observed in DSS-treated Tim-3M−KO mice. Further analysis indicated the TLR4/NF-κB pathway in Tim-3 knockdown macrophages mediates the TNF-α-induced necroptosis pathway in neutrophils. Macrophage Tim-3 regulates neutrophil necroptosis via intracellular ROS signaling. Tim-3 knockdown macrophages can recruit neutrophils and induce neutrophil necroptosis, thereby damaging the intestinal mucosal barrier and triggering a vicious cycle in the development of colitis. Our results demonstrate a protective role of macrophage Tim-3 in maintaining gut homeostasis by inhibiting neutrophil necroptosis and provide novel insights into the pathogenesis of IBD.
Among the diseases of the digestive system, the incidence of acute pancreatitis (AP) has increased. Although the AP is primarily self-limited, mortality remains high when it progressed to severe acute pancreatitis (SAP). Despite significant advances in new drug development, treatments for AP are not ideal. Here, we discovered a novel hydroxycinnamic acid, sinapic acid (SA), which is widely distributed in plants and is an effective treatment for AP. Using in vitro and in vivo models, we demonstrated that pretreatment with SA ameliorated cerulein-induced pancreatic damage and inflammation and inhibited the activation of Caspase-1 and Caspase-11, which mediate pyroptosis of pancreatic acinar cells during AP. These effects may occur through the inhibition of AMPK phosphorylation and downregulation of NF-[Formula: see text]B. Our findings demonstrate the therapeutic effects and reveal the underlying mechanisms of SA, which warrants its further study as an effective treatment for AP.
Among digestive system cancers, the extremely poor prognosis of pancreatic cancer (PC) is a pressing concern. Nonoperative treatments such as targeted and immunotherapy, have improved the current situation, however, the accompanying side effects of these chemicals should not be ignored. Here, we discovered a novel hydroxycinnamic acid named sinapic acid (SA) derived from fruits, vegetables, cereals, and oil crops as an effective anti-PC molecule. Both the in vitro and in vivo models we designed showed that SA exhibited anticancer activities but not apoptosis induction. Research on the underlying mechanisms illustrated that AKT phosphorylation was blocked by SA, and the downstream Gsk-3β was downregulated subsequently. Our study revealed the inhibitory activity and underlying mechanisms of SA, providing evidence that SA is a potential strategy for cancer research and can be a promising option of PC chemotherapy.
Long non-coding RNAs (lncRNAs) play a significant role in multiple human cancers as competing endogenous RNAs (ceRNAs). However, a systematic mRNA-microRNA (miRNA)-lncRNA network linked to kidney renal clear cell carcinoma (KIRC) prognosis has not been described. In this study, we aimed to identify the prognosis-related ceRNA regulatory network and analyzed its relationship with immune cell infiltration to predict KIRC patient survival. The MMP25-AS1/hsa-miR-10a-5p/SERPINE1 ceRNA network related to the prognosis of KIRC was obtained through bioinformatics analysis based on The Cancer Genome Atlas (TCGA) and Gene Expression Omnibus (GEO) databases. Meanwhile, we constructed a three-gene-based survival predictor model, which could be referential for future clinical research. Methylation analyses suggested that the abnormal upregulation of the SERPINE1 likely resulted from hypomethylation. Furthermore, the immune infiltration analysis showed that the MMP25-AS1/hsa-miR-10a-5p/SERPINE1 axis could affect the changes in the tumor immune microenvironment and the development of KIRC by affecting the expression of chemokines (CCL4, CCL5, CXCL13, and XCL2). Tumor Immune Dysfunction and Exclusion (TIDE) analysis indicated that the high expression of SERPINE1 might be related to tumor immune evasion in KIRC. In summary, the current study constructing the MMP25-AS1/hsa-miR-10a-5p/SERPINE1 ceRNA network might be a novel significant prognostic factor associated with the diagnosis and prognosis of KIRC.
BackgroundCurrently, many nutritional indicators, including controlling nutritional status score (CONUT), can be used to assess a patient’s nutritional status and have been reported as reliable predictors of multiple malignancies. However, the value of CONUT score in predicting postoperative outcomes in patients with hilar cholangiocarcinoma has not been explored. In this study, its predictive value will be discussed and compared with the known predictors the neutrophil lymphocyte ratio (NLR) and prognostic nutritional index (PNI).MethodsPreoperative CONUT scores, PNI and NLR levels of 94 Hilar cholangiocarcinoma (HCCA) patients who underwent radical-intent resection of hepatobiliary surgery in our hospital from March 2010 to April 2019 were retrospectively collected and analyzed. They were grouped according to their optimal cutoff value and the prognostic effects of patients in each group were compared respectively.ResultsCONUThigh was more frequent in patients with Clavien–Dindo classification of ≥IIIa (P = 0.008) and Bile leakage presence (P = 0.011). Kaplan-Meier curves analyzing the relationship between CONUT, PNI, and NLR values and HCCA patient survival (including total survival (OS) and recurrence-free survival (RFS) showed significant differences between groups (P <0.001). Meanwhile, multi-factor analysis found that Degree of cure, PNI, NLR, and preoperative CONUT score were independent prognostic factors for OS and RFS. The predictive power of CONUT score was higher than that of NLR and PNI based on time-dependent receiver operating Characteristic (ROC) analysis and the net reclassification index (NRI) and integrated discriminatory index (IDI) values (P < 0.05).ConclusionCONUT score may be of some clinical reference value in evaluating postoperative prognosis of HCCA patients.
Alcoholic liver disease (ALD), a type of chronic liver disease that is prevalent worldwide, is still identified to have a poor prognosis despite many medical treatment protocols. Thus, it is urgent to develop and test new treatment protocols for ALD. Lactobacillus reuteri (L. reuteri) has been widely used in the clinical treatment of digestive system diseases, but studies on the protective effect of L. reuteri on ALD are considered to be rare. Therefore, in the present study, we examined the effect of L. reuteri on ALD and provide data that are significant in the development of new treatment protocols for ALD. An ALD model has been established in C57BL/6J mice treated according to the Gao-binge modeling method. Mice in the treatment group were administered with L. reuteri. Hematoxylin and eosin (H&E) staining, oil red O staining, immunohistochemistry, and biochemical analyses were performed to detect the phenotypic changes in the liver among mice in the different treatment groups. L. reuteri treatment reversed inflammatory cell infiltration and lipid accumulation. Moreover, AST, ALT, TG, and TCH levels were also reduced in the probiotics-treatment group. Five candidate biomarkers were found in the liver metabolites of different treatment groups by UPLC/QTOF-MS and a multivariate analysis. Several fatty acid metabolic pathways such as linoleic acid metabolism and glycerolipid metabolism were involved. All these findings suggested that L. reuteri treatment reversed the phenotype of ethanol-induced hepatitis and metabolic disorders. These findings provide evidence that L. reuteri might serve as a new therapeutic strategy for ALD.
Bronchogenic cyst (BC) is a rare congenital disease with pre-embryonic intestinal malformation. BC of the stomach is rare. The present study reported on the case of a 68-year-old male who presented with a spleen and stomach space mass detected incidentally upon a routine health examination. The patient underwent laparotomy. Postoperative histopathological diagnosis confirmed BC of the stomach. Postoperative recovery was smooth and the patient is currently under follow-up. A literature review suggested that BC is a rare disease and the location of the stomach is very rare. Indications of surgical intervention remain controversial for asymptomatic cases. Owing to no specific clinical or radiologic features to define the disease profile for diagnosis, surgery may be a good choice for both diagnosis and therapy if the patient's condition permits.
Spontaneous internal hemorrhage from a hepatic hemangioma is rare. This case describes a 59-year-old woman who was hospitalized with recurrent cough and fever for 6 months. The doctor thought that she had pneumonia, but other infectious diseases could not be ruled out. Therefore, related tests were performed and strong antibiotics were used, but the symptom of fever was persistent and recurred. Enhanced computed tomography (CT) findings showed a right hepatic giant hemangioma with hemorrhage, while tuberculosis, liver abscess, and immune disease were excluded by the physician. Because the patient's fever was associated with a large hepatic hemangioma, the patient was transferred to surgery. During treatment, the amount of bleeding increased, so she underwent a right hepatic hemangioma resection in the emergency department. Her postoperative fever symptoms subsequently resolved. Pathological examination confirmed hemorrhagic necrosis with infection in hepatic hemangioma. Follow-up showed that the patient was afebrile.
AIM:To explore the role and mechanism of Hydrogen peroxide-inducible clone-5 (Hic-5) in hepatic ischemia reperfusion injury.METHODS:Hic-5 KO and WT mice were used to establish the liver ischemia reperfusion model (HI/R). Primary hepatocytes were isolated to establish hypoxic reoxygenation model (H/R). AST and ALT were measured by automatic biochemical analyzer. Liver tissue sections were stained with HE and Tunnel. RNA and proteins were extracted from liver tissues, and expressions of Il-6, Il-10, CCL-2, CXCL-10, P65, Caspase-3, TLR4 and FADD were detected at gene and protein levels. Liver cell apoptosis was detected by flow cytometry and immunofluorescence. Primary hepatocytes were stimulated by LPS to establish a model of hepatocyte apoptosis, and cell inflammation and apoptosis-related proteins were detected.RESULTS:After HI/R, ALT and AST in serum were up-regulated, some hepatocyte apoptosis were observed in pathological sections. Hic-5 expression was increased in WT mice after HI/R, and liver damage were severer than KO mice. The expression of IL-6, CCL-2 and CXCL-10 in the liver of KO mice was low, and the expression of IL-10 was high. Further studies showed that KO mice showed lower expression of P65, Caspase3 and TLR4. In H/R model, hepatocytes also showed the same trend. Finally, after LPS stimulation, the results showed that the inflammation and apoptosis induced by LPS were significantly reduced in Hic-5 knocked hepatocytes.CONCLUSION:Hic-5 was found to promote inflammation through NF-kb signaling pathway and apoptosis through TLR4-FADD signaling pathway in mice with HI/R, thus aggravating liver injury in mice.
Pancreatic stellate cells (PSCs) have been recognized as key mediators of pancreatic fibrosis, a characteristic feature of chronic pancreatitis (CP). As a cullin-based E3 ubiquitin ligase, speckle-type POZ protein (SPOP) has been identified to participate in tumorigenesis and organ development. However, its biological role in CP remains unknown. Therefore, this study sought to investigate the changed expression of SPOP in CP and to examine the effect on mice PSCs activation of SPOP. We found that SPOP was downregulated in the pancreatic tissues of cerulein-induced CP mice. siRNA-mediated knockdown of SPOP led to significant promotion in primary PSCs activity by activating the nuclear factor-kappaB (NF-κB)/interleukin-6 (IL-6) signaling pathway. In addition, we examined the effects of Fas-associated death domain (FADD), a proven SPOP substrate that activates NF-κB, on the regulation of PSCs activation. We found that FADD was downregulated by SPOP via interaction-mediated degradation, and was upregulated during PSCs activation. The promotion of PSCs activation in knocking down SPOP with siSPOP-1 were counteracted by knocking down FADD. The results suggest that the SPOP-induced inhibition of PSCs activation partially depended on FADD. These results highlight the importance of SPOP in CP and provide a potential target for therapeutic intervention.
Pancreatic cancer is one of the most severe types of tumors, with a 5-year survival rate of less than 7%. The prognosis and treatment of pancreatic cancer are largely limited by the extent of tumor invasion and the presence of lymph node and distant metastases. Therefore, exploring the biological behavior of pancreatic cancer cells (PCCs) is extremely important for the understanding, diagnosis, and treatment of pancreatic cancer. Current studies have shown that pancreatic stellate cells (PSCs) regulate the biological behavior of PCCs, such as their proliferation, apoptosis, invasion, and migration, by remodeling the extracellular matrix. Though Hic-5 is an important gene in PSCs, no study has investigated the regulation of PCCs by Hic-5. Here, we demonstrate that Hic-5 expression is upregulated in pancreatic cancer and that siRNA transfection can effectively inhibit Hic-5 expression. Compared to the control group, Hic-5 inhibition significantly reduced proliferation, increased apoptosis, and reduced invasion and migration of PCCs. Moreover, the inhibition of Hic-5 expression simultaneously reduced matrix metalloproteinase-9 (MMP-9) expression. Statistical analysis revealed that Hic-5 expression was higher among the pancreatic cancer group than among the normal group and was negatively correlated with postoperative survival time among patients with pancreatic cancer. These results have important clinical significance for further exploring the molecular mechanism involved in Hic-5-mediated invasion and metastasis of pancreatic cancer and ameliorating the prognosis of patients with pancreatic cancer.
We discovered that Na+/H+ exchanger isoform 8 (NHE8) expression is strongly inhibited in human colorectal cancer and that loss of NHE8 function resulted in increased tumor burden in mice. Furthermore, we found that NHE8 is expressed in intestinal stem cells. Thus, NHE8 likely is involved in Wnt/beta-catenin pathway regulation. BACKGROUND & AIMS: Lgr5 overexpression has been detected in colorectal cancers (CRCs), including some cases of colitis-associated CRCs. In colitis-associated CRCs, chronic inflammation is a contributing factor in carcinogenesis. We recently reported that intestinal Na+/H+ exchanger isoform 8 (NHE8) plays an important role in intestinal mucosal protection and that loss of NHE8 expression results in an ulcerative colitis-like condition. Therefore, we hypothesized that NHE8 may be involved in the development of intestinal tumors. METHODS: We assessed NHE8 expression in human CRCs by immunohistochemistry and studied tumor burden in NHE8 knockout (KO) mice using an azoxymethane/dextran sodium sulfate colon cancer model. We also evaluated cell proliferation in HT29(NHE8KO) cells and assessed tumor growth in NOD scid gamma (NSG) mice xenografted with HT29(NHE8KO) cells. To verify if a relationship exists between Lgr5 and NHE8 expression, we analyzed Lgr5 expression in NHE8KO mice by polymerase chain reaction and in situ hybridization. Lgr5 expression and cell proliferation in the absence of NHE8 were confirmed in colonic organoid cultures. The expression of beta-catenin and c-Myc also were analyzed to evaluate Wnt/beta-catenin activation. RESULTS: NHE8 was undetectable in human CRC tissues. Although only 9% of NHE8 wild-type mice showed tumorigenesis in the azoxymethane/dextran sodium sulfate colon cancer model, almost 10 times more NHE8KO mice (89%) developed tumors. In the absence of NHE8, a higher colony formation unit was discovered in HT29(NHE8KO) cells. In NSG mice, larger tumors developed at the site where HT29(NHE8KO) cells were injected compared with HT29(NHE8 wild type) cells. Furthermore, NHE8 deficiency resulted in increased Lgr5 expression in the colon, in HT29-derived tumors, and in colonoids. The absence of NHE8 also increased Wnt/beta-catenin activation. CONCLUSIONS: NHE8 might be an intrinsic factor that regulates Wnt/beta-catenin in the intestine.
胰源性脂膜炎又称结节性脂肪坏死,是一种与胰腺疾病相关的罕见并发症.最早由Chiari[1]于1883年研究发现.目前国内相关文献报道较少.本文报道本院近期收治的1例胰源性脂膜炎患者,并结合文献对该病的发病机制、临床病理等特点进行探讨,以期加深对该病的认识.
Background: The effects of gender and age on the growth of hepatic hemangioma remain inconclusive. This study aims to further explore the natural growth of hepatic hemangioma and its influencing factors. Methods: From June 2014 to April 2019, 534 untreated patients who were diagnosed with hepatic hemangioma in our hospital were enrolled. The growth changes of hepatic hemangioma were observed at follow-up by ultrasound. Results: During the median 18 (14,22) (months of follow-up, 215 (40.3%) patients showed an increase in tumor diameter, 217 (40.6%) tumor diameters decreased, and102 (19.1%) tumor diameters did not change. Before the age of 40, the diameter of hemangiomas in each group of men and women increased with age. After 40 years old, those in men continued to grow slowly, while those in women had a relatively downward trend. Therefore, by investigating annual changes in tumor, it was found that the diameter of female tumors showed a significant downward trend after the age of 40, the difference is most pronounced between 50?60 years old (the annual change is ?0.39 (?0.87,0.40) cm). Conclusion: In the natural growth process of hepatic hemangioma, male and female patients present different trends, which may be related to sex.
ObjectiveTo investigate the effect of Hic-5 gene knockout on NF-κB/p65 expression and liver fibrosis. MethodsTen wild-type male C57BL/6 mice were randomly divided into wild-type control group (WT-Control group with 5 mice) and wild-type experimental group (WT-CCl4 group with 5 mice), and ten male C57BL/6 mice with Hic-5 gene knockout were randomly divided into Hic-5 knockout control group (Hic-5 KO-Control group with 5 mice) and Hic-5 knockout experimental group (Hic-5 KO-CCl4 group with 5 mice). The serum levels of alanine aminotransferase (ALT) and aspartate aminotransferase (AST) were measured. Picrosirius red staining was used to observe collagen deposition in liver tissue. Immunohistochemistry was used to measure the expression of alpha-smooth muscle actin (α-SMA) and p65 protein, and real-time quantitative PCR was used to measure the mRNA expression of α-SMA, collagen 1, and p65 in liver tissue. The primary hepatic stellate cells of mice were isolated and stimulated with different concentrations of TGF-β1, and then real-time quantitative PCR was used to measure the mRNA expression of α-SMA, collagen 1, and p65 in primary hepatic stellate cells. A one-way analysis of variance was used for comparison of continuous data between multiple groups, and the least significant difference t-test was used for further comparison between two groups. ResultsPicrosirius red staining showed that compared with the WT-CCl4 group, the Hic-5 KO-CCl4 group had a significant reduction in collagen fibers in liver tissue (P<0.001). Measurement of serum ALT and AST showed that there were significant differences in ALT and AST between the WT-Control group, the WT-CCl4 group, the Hic-5 KO-Control group, and the Hic-5 KO-CCl4 group (F=22.85 and 25.15, both P<0.001), and the Hic-5 KO-CCl4 group had significantly lower serum levels of ALT and AST than the WT-CCl4 group (both P<0.05). Immunohistochemistry showed that there were significant differences in the expression levels of α-SMA and p65 protein in liver tissue between the WT-Control group, the WT-CCl4 group, the Hic-5 KO-Control group, and the Hic-5 KO-CCl4 group (F=207.10 and 98.16, both P<0.001), and the Hic-5 KO-CCl4 group had significantly lower expression of α-SMA and p65 protein in liver tissue than the WT-CCl4 group (both P<0.01). The results of real-time quantitative PCR showed that there were significant differences in the relative mRNA expression of α-SMA, collagen 1, and p65 in liver tissue between the WT-Control group, the WT-CCl4 group, the Hic-5 KO-Control group, and the Hic-5 KO-CCl4 group (F=41.62, 13.93, and 98.16, all P<0.001), and the Hic-5 KO-CCl4 group had significantly lower relative mRNA expression of α-SMA, collagen 1, and p65 in liver tissue than the WT-CCl4 group (all P<0.05). After the primary hepatic stellate cells were stimulated by TGF-β1 at concentrations of 0, 5, and 10 ng/ml, there were significant differences in the relative mRNA expression of α-SMA, collagen 1, and p65 between the WT 0 ng/ml group, the WT 5 ng/ml group, the WT 10 ng/ml group, the KO 0 ng/ml group, the KO 5 ng/ml group, and the KO 10 ng/ml group (F=53.9, 75.82, and 52.41, all P<0.001), and the Hic-5 KO group had significantly lower relative mRNA expression of α-SMA, collagen 1, and p65 than the WT group (all P<0.01). ConclusionHic-5 knockout inhibits NF-κB/p65 expression and hepatic stellate cell activation and alleviates CCl4-induced liver fibrosis.