1.BANCR/miR-145-5p-Reg3A/DMBT1 Axis Facilitates AKT-GLUT1/HK2-Mediated Warburg Effect in Gastric Cancer
Liang WANG ; Yufei LIANG ; Yan ZHAO ; Shan LIN
Cancer Research on Prevention and Treatment 2026;53(2):112-120
Objective To elucidate the mechanism by which the BANCR/miR-145-5p axis regulates the AKT-GLUT1/HK2 pathway through downstream targets Reg3A/DMBT1 to facilitate the Warburg effect in gastric cancer. Methods Expression levels of BANCR, miR-145-5p, Reg3A, and DMBT1 were detected by RT-qPCR and Western blot in gastric cancer tissues and cell lines. Dual-luciferase reporter assays confirmed targeted relationships. Glycolytic capacity was assessed via glucose uptake. Immunohistochemistry analyzed molecular expression in 60 paired clinical samples. The prognostic values of key molecules in the BANCR/miR-145-5p-Reg3A/DMBT1 axis were evaluated by Kaplan-Meier survival analysis and Cox proportional hazards regression model. Results BANCR was significantly upregulated, whereas miR-145-5p was downregulated in gastric cancer tissues, correlating with advanced TNM stage, lymph node metastasis, and poor differentiation. Reg3A and DMBT1 were identified as direct targets of miR-145-5p. Knockdown of BANCR or overexpression of miR-145-5p significantly suppressed Reg3A/DMBT1 expression, reduced AKT phosphorylation and GLUT1/HK2 levels, and inhibited glycolysis. Clinical analysis revealed positive correlations between Reg3A/DMBT1 expression and glycolytic markers, with both serving as independent risk factors for poor prognosis. Conclusion The BANCR/miR-145-5p axis activates the AKT pathway by targeting Reg3A/DMBT1, thereby promoting GLUT1/HK2/LDHA-mediated glycolysis and facilitating the Warburg effect in gastric cancer. This regulatory axis represents a potential therapeutic target and prognostic biomarker.
2.Mechanism of ductular reaction and related treatment strategies
Jiayan SHAN ; Huaqian XU ; Chengzhi BAI ; Liang ZHANG ; Chao DU ; Yong ZHANG ; Shanhong TANG
Journal of Clinical Hepatology 2026;42(3):733-738
Ductular reaction (DR) refers to the adaptive pathological changes that occur after hepatobiliary injury, and it is essentially a repair response involving the proliferation, fibrosis, and inflammation of biliary epithelial cell (BEC). With the understanding of the biological function of BEC, the potential value of DR in disease prognosis and treatment has gradually become a research hotspot. This article systematically reviews the molecular mechanism of DR, its potential as a therapeutic target, and future development directions, as well as novel therapies suggested by targeting these molecular mechanisms, in order to provide a new direction for overcoming current bottlenecks in the treatment of bile duct diseases.
3.Acetyl-coenzyme A synthetase 2-mediated acetyl-coenzyme A accumulation promotes mitophagy and tumor growth via increased H3K27ac in hepatitis B virus-related hepatocellular carcinoma
Shan LI ; Jie HU ; Yihan YAN ; Xinrui LIU ; Xiao DONG ; Huijun LIANG ; Xin TANG ; Junji TAO ; Rong ZHANG ; Yuan HU ; Ailong HUANG ; Kai WANG ; Ni TANG
Clinical and Molecular Hepatology 2026;32(2):661-682
Background/Aims:
Acetyl coenzyme A (acetyl-CoA) is one of the most essential metabolites in cell metabolism but its function and concentration in hepatocellular carcinoma (HCC) remain elusive and controversial.
Methods:
A comprehensive analysis of acetyl-CoA levels and acetyl-CoA synthetase 2 (ACSS2) expression across a range of samples, including patient specimens from both hepatitis B virus (HBV) positive and HBV negative HCC individuals, HBV-transgenic mouse HCC models, and multiple cell lines. Furthermore, to evaluate the functional significance of ACSS2 in HBV-related HCC, we implemented both genetic and pharmacological inhibition strategies targeting ACSS2. Molecular mechanism and mitophagy assessment were revealed by cleavage under target and tagmentation sequencing, RNA sequencing, bioinformatic analyses, transmission electron microscopy and JC-1 staining.
Results:
Our study revealed a distinct metabolic signature of HBV-related HCC, marked by elevated acetyl-CoA, which was driven by ACSS2. ACSS2 was upregulated by the carbohydrate response element-binding protein in HBV-related HCC. Furthermore, ACSS2 improved tumor cell proliferation, an effect that was dependent on its enzymatic activity. Mechanistically, ACSS2-induced acetyl-CoA accumulation activated voltage-dependent anion channels 1 transcription through increased H3K27ac occupancy, which subsequently promoted mitophagy and HBV-related HCC tumorigenesis. Notably, targeting ACSS2 by depletion or inhibition with a catalytic inhibitor significantly suppressed tumor growth.
Conclusions
These findings not only illustrate the interplay between metabolic reprogramming, epigenetic modification, and tumorigenesis in the context of HBV infection, but also highlight ACSS2 as a novel metabolic vulnerability in HBV-related HCC. Therefore, targeting ACSS2 could be a novel strategy against HBV-related HCC.
4.Negative pressure wound therapy promotes wound healing by regulating riboflavin and glutathione metabolism: based on metabolomics
Xinwen KUANG ; Zhengyun LIANG ; Yijun XIA ; Mengjie SHAN ; Yan HAO ; Cheng FENG ; Zhi WANG ; Youbin WANG
Chinese Journal of Plastic Surgery 2025;41(10):1061-1071
Objective:To investigate the role and mechanism of negative pressure wound therapy (NPWT) in a rabbit full-thickness wound model using non-targeted metabolomics.Methods:Eighteen male New Zealand rabbits (11-12 weeks old) were used. Two symmetrical circular full-thickness skin defects were created on the back of each rabbit. The animals were randomly divided into three groups: Control group (no treatment), Saline group (debridement with saline irrigation), and NPWT+ Saline group (saline debridement followed by 2 h of NPWT at -125 mm Hg once daily for two weeks). Wound healing was documented on days 0, 3, 7, 10, and 14. The wound healing rate was calculated as (original area-unhealed area)/original area × 100%. Histopathological changes were evaluated via hematoxylin and eosin (HE) staining. Metabolomic profiling of wound tissues was performed using ultra-high-performance liquid chromatography-tandem mass spectrometry (UHPLC-MS/MS). Differential metabolites were identified, and pathway enrichment analysis was conducted. Oxidative stress markers, including superoxide dismutase (SOD) and catalase (CAT) activities and malondialdehyde (MDA) content, were measured using commercial kits. Data were analyzed using SPSS 20.0. One-way ANOVA with Tukey’s HSD test or Welch’s ANOVA with Games-Howell test was applied as appropriate.Results:On days 3, 10, and 14, the wound healing rate in the NPWT+ Saline group was significantly higher than that in the Control and Saline groups ( P<0.05). On day 7, the NPWT+ Saline group showed a significantly higher healing rate than the Saline group ( P<0.01), but no significant difference compared with the Control group ( P>0.05). HE staining on day 7 revealed enhanced epithelialization, thicker granulation tissue, higher microvessel density, and more abundant, well-organized collagen in the NPWT+ Saline group. By day 14, all groups had formed relatively continuous epithelial structures. Non-targeted metabolomics identified riboflavin and spermidine as differential metabolites. Pathway analysis highlighted riboflavin metabolism and glutathione metabolism as the most significantly enriched pathways. Compared with the Control and Saline groups, the NPWT+ Saline group exhibited significantly increased CAT and SOD activities ( P<0.05) and decreased MDA content ( P<0.01), indicating reduced oxidative stress. Conclusion:NPWT may promote wound healing by elevating riboflavin and spermidine levels, thereby modulating riboflavin and glutathione metabolism and regulating local redox reactions.
5.Tissue engineering technology for repairing temporomandibular joint:problems and challenges
Pengyu LAI ; Ran LIANG ; Shan SHEN
Chinese Journal of Tissue Engineering Research 2025;29(22):4804-4812
BACKGROUND:Traditional therapies for temporomandibular joint disorders are limited by the severity of the condition and individual differences.In contrast,tissue engineering,as an emerging therapeutic approach,offers personalized treatment options tailored to the specific needs of patients,reducing uncertainties during surgical procedures,and enhancing clinical outcomes.OBJECTIVE:To summarize the latest research achievements and advancements in tissue engineering for temporomandibular joint repair.METHODS:Literature searches were conducted on PubMed and China National Knowledge Infrastructure(CNKI)databases using the Chinese and English search terms"temporomandibular joint,tissue engineering,seed cell,scaffold,growth factor,animal model."The search period covered the inception of each database up to March 2024.Literature screening was performed by analyzing and reviewing relevant articles according to exclusion criteria,ultimately including 57 articles for review.RESULTS AND CONCLUSION:(1)With advancements in biology,materials science,and engineering,significant progress has been made in temporomandibular joint tissue engineering,including the selection of seed cells,development of novel scaffolds,exploration of growth factor mechanisms,and construction of various animal models.Most studies are still in the in vitro experimental stage,and in vivo studies such as animal experiments are not yet widely conducted.The clinical application of tissue engineering in repairing the temporomandibular joint requires more evidence.(2)Despite the remaining challenges and issues to be addressed in temporomandibular joint tissue engineering research,it still presents vast clinical application prospects and is poised to become an excellent and efficient treatment modality for temporomandibular joint disorders in the future.
6.Mitochondrial dysfunction in tendinopathy:possibility of mitochondria-targeting therapy
Shuo YANG ; Zhen ZHANG ; Shuo BAI ; Li SHENG ; Liang SHEN ; Qingfeng SUN ; Beiyao GAO ; Ruidong GE ; Shan JIANG
Chinese Journal of Tissue Engineering Research 2025;29(20):4276-4285
BACKGROUND:Various clinical strategies for the treatment of tendinopathy have good short-term effects but poor long-term effects,and some studies have proven that mitochondria are closely related to the occurrence and development of tendinopathy.However,the relationship between mitochondria and tendinopathy and mitochondria-targeting therapeutic strategies for tendinopathy have not been summarized so far,which is not good for specialists and scholars in related fields to understand the recent research situation.OBJECTIVE:To review the existing clinical or preclinical original studies,in order to summarize the relationship between mitochondrial dysfunction and tendinopathy and the mitochondria-targeting methods for the treatment of tendinopathy,and to provide certain prospects for the evaluation and management of mitochondria in tendinopathy in the future.METHODS:The relevant literatures in PubMed,Web of Science,CNKI,WanFang and VIP databases were searched.The search time was from January 2009 to March 2024,and the search terms were"tendinopathy,tendon injuries,tendon,tendons,mitochondria,mitochondria dysfunction,mitochondria disease"both in English and Chinese.According to the exclusion and inclusion criteria,62 articles were finally included for review and analysis.RESULTS AND CONCLUSION:(1)In clinical tendinopathy patients or tendinopathy models,mitochondrial dysfunction is common,mainly represented by excessive production of reactive oxygen species,decreased activity of superoxide dismutase,ridge clutter and decreased number of mitochondria,which indicates that mitochondrial dysfunction will occur due to tendon injury,thus further worsening tendinopathy and forming a vicious cycle.(2)When the tendon has not been injured or tendinopathy has not yet occurred,the mitochondrial function will be affected by various internal and external factors,resulting in tendinopathy.This indicates that the normal tendon will be damaged,lesioned or even ruptured due to the abnormal function of the mitochondria.(3)Mechanical tensile stress,advanced glycosylation end products,aging and other internal and external factors are the main causes of mitochondrial dysfunction,and these factors will damage and weaken the biological activity and mechanical properties of normal tendons through molecular mechanisms such as apoptosis,inflammation and respiratory chain damage,and thereby induce tendinopathy.(4)According to molecular mechanisms,mitochondria-targeting therapies mainly include mitochondrial transfer/transplantation,transplantation,targeted antioxidants,etc.(5)This review mainly aims at clinical patients with tendinopathy or animal models with similar modeling methods,providing a reliable idea for clinical exploration of the pathogenesis of tendinopathy and targeted therapies for tendinopathy.However,the disadvantage is that the included studies are mainly animal experiments,and there is a lack of more clinical trials for verification.
7.Oxidative Phosphorylation Regulates the Metabolism of Lung Squamous Cell Carcinoma
Liang WANG ; Shan-Yuan ZHANG ; Yue YANG ; Yuan-Yuan MA
Chinese Journal of Biochemistry and Molecular Biology 2025;41(3):437-445
Metabolic reprogramming is a crucial feature of cancer.Among various metabolic processes,oxidative phosphorylation(OXPHOS)metabolism serves as the primary biochemical pathway for energy production and significantly influences tumorigenesis and tumor development.Therefore,this study aims to explore the impact of the metabolic characteristics of lung squamous cell carcinoma(LUSC)on its ma-lignant properties.By analyzing the single-cell transcriptome sequencing data of LUSC,lung adenocarci-noma,and normal lung tissues from the gene expression profile database,it was found that the OXPHOS signaling pathway and molecules related to ATP synthesis were remarkably enriched in LUSC tissues.Based on the OXPHOS signal intensity score,LUSC cells were classified into OXPHOShigh and OXPH-OSlow groups.Bioinformatics analysis revealed that 126 transcription factors were highly expressed in both LUSC tumor tissues and the OXPHOShigh group.Notably,the expression levels of cancer stem cell-related signals(such as SOX2,SOX9,POU2F1,CDX1,ARID3A,EZH2,and KLF5)were significantly en-hanced in the OXPHOShigh cell subset(P<0.05).Treatment of LUSC cells with an OXPHOS antagonist significantly inhibited the sphere formation rate of H520 and SKMES-1 cells,which is a key characteristic of cancer stemness(P<0.05).Analysis of cell-cell communication data from the LUSC single-cell tran-scriptome indicated that the signal emission and reception in OXPHOShigh cells were stronger than those in OXPHOSlow cells.Moreover,fibroblasts showed significant interaction with OXPHOShigh-LUSC cells.Co-culture of LUSC cell lines H520 and SKMES-1 with human lung fibroblast-like cell lines significantly in-creased the sphere formation rate of tumor cells(P<0.05).Additionally,the levels of ATP,NADH-ac-tive enzymes,and reactive oxygen species(ROS)in co-cultured H520 and SKMES-1 cells were signifi-cantly elevated(P<0.05).The results of this study confirm that the OXPHOS pathway is a key signal involved in LUSC metabolism,which is closely associated with the characteristics of cancer stem cells and the regulatory signals of fibroblast interactions.This finding holds promises for providing novel strategies for tumor treatment.
8.Comparison of active constituent contents and their biological activities of Buzhong Yiqi Recipe with different dosage forms
Yan-ran HE ; Jing WANG ; Jia-qiang XU ; Zhao-zhao XIA ; Ying-jiao LIU ; Zi-shu DONG ; Liang-shan MING ; Hong-ning LIU ; Qi-meng FAN
Chinese Traditional Patent Medicine 2025;47(2):357-364
AIM To compare total sugar,total protein,total phenol,total flavonoid,calycosin-7-O-β-D-glucoside,liquiritin,lobetyolin,quercetin,isoferulic acid,hesperidin,glycyrrhizic acid contents and their antioxidant activities,hypoglycemic activities of big honey pill,small honey pill,water pill,concentrated pill,granule,mixture and decoction of Buzhong Yiqi Recipe.METHODS Anthraquinone-sulfuric acid method,Coomassie brilliant blue method,Folin-phenol colorimetry method,sodium nitrite-aluminum nitrate method and HPLC were adopted in the content determination of total sugar,total protein,total phenol,total flavonoid and seven constituents,respectively,after which the scavenging capacities,reducing powers on DPPH·free radical,ABTS+free radical,hydroxyl free radical,and inhibition capacity on α-glucosidase activity were detected.Subsequently,correlation analysis was performed.RESULTS Total sugar,total protein,total phenol and total flavonoid contents demonstrated significant differences among different dosage forms(P<0.05,P<0.01).Calycosin-7-O-β-D-glucoside,glycyrrhizin,codonoside and quercetin displayed the highest contents in the decoction,while those of isoferulic acid,hesperidin and glycyrrhizin were observable in the mixture.The water pill exhibited the strongest antioxidant activity,while those of the concentrated pill and mixture were weak;the big honey pill exhibited the strongest hypoglycemic activity,while that of the decoction was the weakest.Total protein,total phenol,total flavonoid and liquiritin contents displayed significant positive correlations between antioxidant activity(P<0.05,P<0.01),while hesperidin content displayed significant negative correlation between the latter(P<0.05);total protein,calycosin-7-O-β-D-glucoside,codonoside and quercetin contents displayed significant negative correlations between hypoglycemic activity(P<0.05,P<0.01).CONCLUSION Active constituent contents and their biological activities of Buzhong Yiqi Recipe with different dosage forms exist differences,total sugar,total protein,total flavonoids,calycosin-7-O-β-D-glucoside,licorice glycoside,hesperidin,codonoside and quercetin can be taken as quality control indices for this prescription.
9.Tissue engineering technology for repairing temporomandibular joint:problems and challenges
Pengyu LAI ; Ran LIANG ; Shan SHEN
Chinese Journal of Tissue Engineering Research 2025;29(22):4804-4812
BACKGROUND:Traditional therapies for temporomandibular joint disorders are limited by the severity of the condition and individual differences.In contrast,tissue engineering,as an emerging therapeutic approach,offers personalized treatment options tailored to the specific needs of patients,reducing uncertainties during surgical procedures,and enhancing clinical outcomes.OBJECTIVE:To summarize the latest research achievements and advancements in tissue engineering for temporomandibular joint repair.METHODS:Literature searches were conducted on PubMed and China National Knowledge Infrastructure(CNKI)databases using the Chinese and English search terms"temporomandibular joint,tissue engineering,seed cell,scaffold,growth factor,animal model."The search period covered the inception of each database up to March 2024.Literature screening was performed by analyzing and reviewing relevant articles according to exclusion criteria,ultimately including 57 articles for review.RESULTS AND CONCLUSION:(1)With advancements in biology,materials science,and engineering,significant progress has been made in temporomandibular joint tissue engineering,including the selection of seed cells,development of novel scaffolds,exploration of growth factor mechanisms,and construction of various animal models.Most studies are still in the in vitro experimental stage,and in vivo studies such as animal experiments are not yet widely conducted.The clinical application of tissue engineering in repairing the temporomandibular joint requires more evidence.(2)Despite the remaining challenges and issues to be addressed in temporomandibular joint tissue engineering research,it still presents vast clinical application prospects and is poised to become an excellent and efficient treatment modality for temporomandibular joint disorders in the future.
10.Mitochondrial dysfunction in tendinopathy:possibility of mitochondria-targeting therapy
Shuo YANG ; Zhen ZHANG ; Shuo BAI ; Li SHENG ; Liang SHEN ; Qingfeng SUN ; Beiyao GAO ; Ruidong GE ; Shan JIANG
Chinese Journal of Tissue Engineering Research 2025;29(20):4276-4285
BACKGROUND:Various clinical strategies for the treatment of tendinopathy have good short-term effects but poor long-term effects,and some studies have proven that mitochondria are closely related to the occurrence and development of tendinopathy.However,the relationship between mitochondria and tendinopathy and mitochondria-targeting therapeutic strategies for tendinopathy have not been summarized so far,which is not good for specialists and scholars in related fields to understand the recent research situation.OBJECTIVE:To review the existing clinical or preclinical original studies,in order to summarize the relationship between mitochondrial dysfunction and tendinopathy and the mitochondria-targeting methods for the treatment of tendinopathy,and to provide certain prospects for the evaluation and management of mitochondria in tendinopathy in the future.METHODS:The relevant literatures in PubMed,Web of Science,CNKI,WanFang and VIP databases were searched.The search time was from January 2009 to March 2024,and the search terms were"tendinopathy,tendon injuries,tendon,tendons,mitochondria,mitochondria dysfunction,mitochondria disease"both in English and Chinese.According to the exclusion and inclusion criteria,62 articles were finally included for review and analysis.RESULTS AND CONCLUSION:(1)In clinical tendinopathy patients or tendinopathy models,mitochondrial dysfunction is common,mainly represented by excessive production of reactive oxygen species,decreased activity of superoxide dismutase,ridge clutter and decreased number of mitochondria,which indicates that mitochondrial dysfunction will occur due to tendon injury,thus further worsening tendinopathy and forming a vicious cycle.(2)When the tendon has not been injured or tendinopathy has not yet occurred,the mitochondrial function will be affected by various internal and external factors,resulting in tendinopathy.This indicates that the normal tendon will be damaged,lesioned or even ruptured due to the abnormal function of the mitochondria.(3)Mechanical tensile stress,advanced glycosylation end products,aging and other internal and external factors are the main causes of mitochondrial dysfunction,and these factors will damage and weaken the biological activity and mechanical properties of normal tendons through molecular mechanisms such as apoptosis,inflammation and respiratory chain damage,and thereby induce tendinopathy.(4)According to molecular mechanisms,mitochondria-targeting therapies mainly include mitochondrial transfer/transplantation,transplantation,targeted antioxidants,etc.(5)This review mainly aims at clinical patients with tendinopathy or animal models with similar modeling methods,providing a reliable idea for clinical exploration of the pathogenesis of tendinopathy and targeted therapies for tendinopathy.However,the disadvantage is that the included studies are mainly animal experiments,and there is a lack of more clinical trials for verification.

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