1.The SMAD-Pathway Mediates HMGB1-Induced Proliferation and Metastatic Progression in Cutaneous Squamous Cell Carcinoma Cells
De-De LIAN ; Xue Mei LI ; Yu-Xi JIA ; Ming-Wei ZHOU ; Xiang-Ru CHEN ; Yang-Yang TIAN ; Min LI ; Ming-Hui SUN ; Ye ZHAO ; Hong-Jun LI ; Qing-Ling ZHANG
Annals of Dermatology 2026;38(1):51-58
Background:
High-mobility group box protein 1 (HMGB1) is a chromatin-binding protein involved in arthritis, ischemia, sepsis, atherosclerosis, neurodegenerative disorders, meningitis, and cancer. HMGB1 exhibits dual roles in cancer, acting as either a tumor suppressor or oncoprotein depending on context.
Objective:
This research aimed to elucidate HMGB1’s functional significance in cutaneous squamous cell carcinoma (cSCC).
Methods:
We overexpressed HMGB1 in cSCC cell lines using recombinant adenovirus and examined its effects on cell proliferation, colony formation, and cell migration.
Results:
Immunohistochemical analysis revealed elevated HMGB1 expression levels in cSCC tissue relative to normal epidermis. To assess the influence of HMGB1, we employed recombinant adenoviruses expressing HMGB1 to transduce SCC cell lines (SCC12 and SCC13). Enhanced HMGB1 expression significantly promoted cellular proliferation and colony formation capacity.Notably, HMGB1 overexpression elevated the levels of proliferation regulators, including P63, SOX2, CDK4 and CDK6. Furthermore, HMGB1 overexpression substantially enhanced tumor invasiveness, accompanied by upregulation of epithelial-mesenchymal transition (EMT) biomarkers. Mechanistically, overexpression of HMGB1 enhanced transforming growth factor-β signaling by increasing phosphorylation of SMAD2/3, the key mediators of EMT.
Conclusion
These data imply that HMGB1 acts as a tumor-promoting factor in cSCC.
2.Mechanism of Aerobic Exercise in Delaying Brain Aging in Aging Mice by Regulating Tryptophan Metabolism
De-Man ZHANG ; Chang-Ling WEI ; Yuan-Ting ZHANG ; Yu JIN ; Xiao-Han HUANG ; Min-Yan ZHENG ; Xue LI
Progress in Biochemistry and Biophysics 2025;52(6):1362-1372
ObjectiveTo explore the molecular mechanism of aerobic exercise to improve hippocampal neuronal degeneration by regulating tryptophan metabolic pathway. Methods60 SPF-grade C57BL/6J male mice were divided into a young group (2 months old, n=30) and a senile group (12 months old, n=30), and each group was further divided into a control group (C/A group, n=15) and an exercise group (CE/AE group, n=15). An aerobic exercise program was used for 8 weeks. Learning memory ability was assessed by Y-maze, and anxiety-depression-like behavior was detected by absent field experiment. Hippocampal Trp levels were measured by GC-MS. Nissl staining was used to observe the number and morphology of hippocampal neurons, and electron microscopy was used to detect synaptic ultrastructure. ELISA was used to detect the levels of hippocampal Trp,5-HT, Kyn, KATs, KYNA, KMO, and QUIN; Western blot was used to analyze the activities of TPH2, IDO1, and TDO enzymes. ResultsGroup A mice showed significant decrease in learning and memory ability (P<0.05) and increase in anxiety and depressive behaviors (P<0.05); all of AE group showed significant improvement (P<0.05). Hippocampal Trp levels decreased in group A (P<0.05) and increased in AE group (P<0.05). Nidus vesicles were reduced and synaptic structures were degraded in group A (P<0.05), and both were significantly improved in group AE (P<0.05). The levels of Trp, 5-HT, KATs, and KYNA were decreased (P<0.05) and the levels of Kyn, KMO, and QUIN were increased (P<0.05) in group A. The activity of TPH2 was decreased (P<0.05), and the activities of IDO1 and TDO were increased (P<0.05). The AE group showed the opposite trend. ConclusionThe aging process significantly reduces the learning memory ability and increases the anxiety-depression-like behavior of mice, and leads to the reduction of the number of nidus vesicles and degenerative changes of synaptic structure in the hippocampus, whereas aerobic exercise not only effectively enhances the spatial learning memory ability and alleviates the anxiety-depression-like behavior of aging mice, but also improves the morphology and structure of neurons in hippocampal area, which may be achieved by the mechanism of regulating the tryptophan metabolic pathway.
3.Study on Kinetic and Static Tasks With Different Resistance Coefficients in Post-stroke Rehabilitation Training Based on Functional Near-infrared Spectroscopy
Ling-Di FU ; Jia-Xuan DOU ; Ting-Ting YING ; Li-Yong YIN ; Min TANG ; Zhen-Hu LIANG
Progress in Biochemistry and Biophysics 2025;52(7):1890-1903
ObjectiveFunctional near-infrared spectroscopy (fNIRS), a novel non-invasive technique for monitoring cerebral activity, can be integrated with upper limb rehabilitation robots to facilitate the real-time assessment of neurological rehabilitation outcomes. The rehabilitation robot is designed with 3 training modes: passive, active, and resistance. Among these, the resistance mode has been demonstrated to yield superior rehabilitative outcomes for patients with a certain level of muscle strength. The control modes in the resistance mode can be categorized into dynamic and static control. However, the effects of different control modes in the resistance mode on the motor function of patients with upper limb hemiplegia in stroke remain unclear. Furthermore, the effects of force, an important parameter of different control modes, on the activation of brain regions have rarely been reported. This study investigates the effects of dynamic and static resistance modes under varying resistance levels on cerebral functional alterations during motor rehabilitation in post-stroke patients. MethodsA cohort of 20 stroke patients with upper limb dysfunction was enrolled in the study, completing preparatory adaptive training followed by 3 intensity-level tasks across 2 motor paradigms. The bilateral prefrontal cortices (PFC), bilateral primary motor cortices (M1), bilateral primary somatosensory cortices (S1), and bilateral premotor and supplementary motor cortices (PM) were examined in both the resting and motor training states. The lateralization index (LI), phase locking value (PLV), network metrics were employed to examine cortical activation patterns and topological properties of brain connectivity. ResultsThe data indicated that both dynamic and static modes resulted in significantly greater activation of the contralateral M1 area and the ipsilateral PM area when compared to the resting state. The static patterns demonstrated a more pronounced activation in the contralateral M1 in comparison to the dynamic patterns. The results of brain network analysis revealed significant differences between the dynamic and resting states in the contralateral PFC area and contralateral M1 area (F=4.709, P=0.038), as well as in the contralateral PM area and ipsilateral M1 area (F=4.218, P=0.049). Moreover, the findings indicated a positive correlation between the activation of the M1 region and the increase in force in the dynamic mode, which was reversed in the static mode. ConclusionBoth dynamic and static resistance training modes have been demonstrated to activate the corresponding brain functional regions. Dynamic resistance modes elicit greater oxygen changes and connectivity to the region of interest (ROI) than static resistance modes. Furthermore, the effects of increasing force differ between the two modes. In patients who have suffered a stroke, dynamic modes may have a more pronounced effect on the activation of exercise-related functional brain regions.
4.Exploring the mechanism of jolkinolide B in gastric cancer treatment based on network pharacology and molecular docking approach
Hao ZHANG ; Ling-Min LI ; Nan WU ; Ning-Ning WANG ; Xue-Yan LI ; Bai-Yu JIAN
Acta Anatomica Sinica 2025;56(1):37-42
Objective To explore the mechanism of action of jolkinolide B in the treatment of gastric cancer by network pharmacology combined with molecular docking technique.Methods The SwissTargetPrediction database was used to obtain the targets of the active compounds.Search Genecards,OMIM,Drugbank,TTD,and PharmGKB databases to obtain targets for gastric cancer.The intersection between the targets of jolkinolide B and those of gastric cancer was identified pinpoint potential targets for jolkinolide B in treating gastric cancer.The String database was utilized construct a protein-protein interaction(PPI)network.Bioconductor bioinformatics packages with R software was employed conduct Gene Ontology(GO)functional enrichment analysis and Kyoto Encyclopedia of Genes and Genomes(KEGG)pathway enrichment analysis on the shared targets.This process revealed significant regulatory pathways crucial for jolkinolide B's efficacy in treating gastric cancer.Cytoscape 3.7.1 software was utilized create the core network of"Potential Targets of Triptolide B in Gastric Cancer Treatment",and SYBYL-X2.1.1 software was employed conduct molecular docking validation of the selected main active ingredients and critical targets.Results Jolkinolide B may target multiple proteins,including MAPK1,glycogen synthase kinae-3β(GSK-3β),and JUN,impacting the proliferation,invasion,and metastasis of gastric cancer,ultimately inhibiting its growth.Conclusion We predicted the possible molecular mechanism of jolkinolide B in the treatment of gastric cancer to provide guide information for the subsequent experimental research and clinical application.
5.Investigating mechanism of cinobufagin in gastric cancer treatment based on network pharmacology and bioinformatics
Hao ZHANG ; Xue-Yan LI ; Ling-Min LI ; Bai-Yu JIAN
Acta Anatomica Sinica 2025;56(1):43-49
Objective To explore the mechanism of cinobufagin(CBG)in treating gastric cancer based on network pharmacology combined with bioinformatics and molecular docking technology.Methods Active ingredients and potential targets of CBG in treating gastric cancer were collected from PubChem,TCMSP,and SwissTargetPrediction databases.Transcriptional data of gastric cancer samples were obtained from TGGA database,and gastric cancer-related targets were identified through differential gene analysis.Intersection of targets between CBG and gastric cancer diseases was subjected to Gene Ontology(GO)and Kyoto Encyclopedia of Genes and Genomes(KEGG)enrichment analysis.Protein-protein interaction(PPI)network of common targets was constructed using STRING database,and core targets were selected using Cytoscape software.Molecular docking verification of core targets screened with SYBYL-X 2.1.1 software was conducted with CBG.Results CBG treatment of gastric cancer involved 59 targets,with 19 key targets identified.Key targets such as aurora kinase A(AURKA),cyclin-dependent kinase 1(CDK1),enhancer of zeste homolog 2(EZH2),hepatocyte growth factor receptor(MET),matrix metallopeptidase 3(MMP-3),progesterone receptor(PGR),prostaglandin-endoperoxide synthase 1(PTGS1),and thymidylate synthase(TYMS)which exhibited good binding activity with CBG and were closely associated with gastric cancer prognosis.Conclusion CBG may exert anti-gastric cancer effects through multiple targets and pathways.
6.Regulatory effect of oral probiotics adjuvant therapy on imbalance of helper T cell 1/helper T cell 2,intestinal flora and pulmonary function in children with allergic asthma
Weihuan KONG ; Min LU ; Xiang LI ; Ling QIU ; Hong XU
Journal of Clinical Medicine in Practice 2025;29(14):68-74
Objective To explore the regulatory effect of oral probiotics as adjuvant therapy on the imbalance of helper T cell 1(Th1)/helper T cell 2(Th2),intestinal flora and lung function in children with allergic asthma and its clinical efficacy.Methods A retrospective analysis was con-ducted in the clinical data of 122 children with allergic asthma.According to different treatment regi-mens,the children were divided into control group(n=60)and observation group(n=62).The control group received conventional treatment combined with budesonide,while the observation group received oral probiotics as adjunctive therapy in addition to the treatment in the control group.The asthma control effects[Childhood Asthma Control Test(C-ACT)score],intestinal flora(Escherichia co-li,Bifidobacterium,Lactobacillus),relevant lung function indicators[peak expiratory flow as a percentage of predicted value(PEF%pred),fractional exhaled nitric oxide(FeNO),forced expiratory volume in one second as a percentage of predicted value(FEV1%pred)],respiratory mechanics parameters[work of breathing(WOB),airway resistance(Raw),peak inspiratory pressure(PIP),dynamic lung compliance(Cdyn)],levels of sputum adhesion molecules[integrin α4β1,vascular cell ad-hesion molecule-1(VCAM-1),intercellular adhesion molecule-1(ICAM-1)],levels of Th1/Th2 cytokine-related indicators[interleukin-4(IL-4),interferon--y(IFN-γ),the ratio of IFN-γ to IL-4(IFN-γ/IL-4),the ratio of Th1 to Th2(Th1/Th2)],symptom disappearance time,clinical effica-cy,and the incidence of adverse reactions were compared between the two groups.Results After treatment,the observation group demonstrated significantly higher C-ACT scores,overall clinical re-sponse rates,IFN-γ/IL-4 and Th1/Th2 ratios,along with elevated levels of Lactobacillus,Bifidobacterium,PEF%pred,FEV1%pred,Cdyn and IFN-γ compared to the control group(P<0.05).Conversely,adverse reaction rates,and levels of Escherichia coli,FeNO,Raw,WOB,PIP,integrin α4β1,VCAM-1,ICAM-1 and IL-4 were significantly lower in the observation group(P<0.05).Symptom resolution time was also shorter in the observation group(P<0.05).The total Naranjo scale score was 3,indicating a"possible"causal relationship between adverse drug re-actions and probiotic use.Conclusion Oral probiotics as adjunctive therapy can effectively regulate Th1/Th2 imbalance induced by allergic asthma in children,improve clinical outcomes,pulmonary function,respiratory mechanics,intestinal microbiota composition,and sputum adhesion molecule levels.
7.Survival analysis and prognostic factors of a long-course venetoclax-based regimen in acute myeloid leukemia
Kong FANCONG ; Ji DEXIANG ; Yu MIN ; Qi LING ; Song BAOQUAN ; Chen ZHIWEI ; Li TIANTIAN ; Zhang LUTAO ; Li FEI
Chinese Journal of Clinical Oncology 2025;52(10):515-522
Objective:To explore the survival and prognostic factors of a long-course venetoclax-based(VEN-based)regimen in patients with de novo acute myeloid leukemia(AML)and provide evidence for the maintenance treatment of AML.Methods:A retrospective study was conducted in patients who received a VEN-based regimen and completed at least four courses of efficacy evaluation at The First Affiliated Hospital of Nanchang University from May 2021 to January 2024.The composite complete response rate(cCR),minimal residual disease(MRD)-negative rate,overall survival(OS)time,relapse-free survival(RFS)time,and adverse events were analyzed.Results:Overall,30 newly diagnosed patients with AML were enrolled in this study.The median age was 65(range,53-78)years,and the median number of treat-ment cycles was 7(range,4-20)years.After one cycle,the CR-and MRD-negative rates were 80.0%and 63.3%,respectively.The cumulative cCR was 96.7%,and MRD negative rate was 80.0%,respectively.The median follow-up time was 21.3(95%confidence intervals 14.7-27.9)months.The median OS time was 32.3 months and RFS time was not reached.The 2-year OS and RFS rates were 70.6%and 54.8%,respect-ively.Univariate analysis suggested that ELN2017 risk stratification and relapse status affected RFS and OS(P<0.05).However,the multivari-ate analysis failed to reveal any relationship between these factors and survival(P>0.05).In terms of safety,hematological adverse events were the most common,followed by infections.Overall,the VEN-based regimen was tolerated for patients with AML.Conclusions:A long-course VEN-based regimen is effective and safe.More than half of patients survive for>2 years,and it can be used as an effective mainten-ance treatment option for patients with AML.
8.Photothermal Immunotherapy of Triple Negative Breast Cancer Mediated by M1 Macrophage Derived Nanoparticles
Yan-Min GUO ; Jie LIU ; Wei LI ; Hong-Ling WANG
Chinese Journal of Analytical Chemistry 2025;53(3):429-440,中插1-中插2
Photothermal therapy,as a novel anti-tumor treatment strategy,faces many challenges such as insufficient targeting,limited penetration ability,and inability to achieve long-term inhibition when used alone for anti-tumor treatment.Based on this,in this study,macrophage extracellular vesicles(MEVs)were modified onto the surface of a vector carrying CSF1R-siRNA and photothermal agents to form a multifunctional gene delivery vector MEVs@RNPs.It could induce the macrophages to reprogram from M2 type to M1 type,so as to achieve efficient photothermal and immunotherapy for triple negative breast cancer(TNBC).The basic physicochemical properties of each nanocarrier were characterized using nanoparticle size analyzer,UV-vis spectrometer,fluorescence spectrometer,thermal imaging instrument,etc.TNBC cells 4T1,endothelial cells Bend3,and macrophages 264.7 were used as in vitro experimental subjects for measurement of MEVs@RNPs.The ability to target tumor cells,kill tumor cells,and induce macrophage reprogramming in vitro was investigated.With Balb/c mice as the in vivo research object,a subcutaneous transplant tumor model was established in mice,and the changes in tumor volume and body weight of mice in different treatment groups were measured.In addition,further isolation of mouse blood and tumor tissue was performed,and hematoxylin-eosin(HE)staining,terminal deoxynucleotidyl transferase dUTP nick end labeling(TUNEL)method,and enzyme-linked immunosorbent assay(ELISA)method were used to determine the apoptosis and cytokine secretion of tumor cells for comprehensive evaluation of MEVs@RNPs.The results showed that the MEVs@RNPs could preferentially target tumor cells and induce stronger TNBC cell killing effect under photothermal conditions.Meanwhile,the results of flow cytometry and ELISA analysis showed that the MEVs@RNPs could promote the transformation of macrophages from M2 type to anti-tumor M1 type,significantly enhancing the secretion levels of anti-tumor cytokines tumor necrosis factor-α(TNF-α)and interleukin-12(IL-12).The in vivo anti-tumor treatment effect assessment of the MEVs@RNPs showed that under laser processing conditions,the MEVs@RNPs could significantly induce pathological necrosis and apoptosis of tumor cells,promote macrophage reprogramming and infiltration of CD4+/CD8+T cells into the tumor site,and enhance the secretion levels of TNF-α and IL-12,thereby comprehensively improving the therapeutic effect of TNBC.
9.Research and application of thermosensitive Pickering emulsion with X-ray and ultrasound dual-modal imaging functions for intra-arterial embolization treatment
Ling LI ; Anran GUO ; Haixia SUN ; Yanbing ZHAO ; Qing YAO ; Ling ZHANG ; Peng SHI ; Hongan TIAN ; Min ZHENG
Journal of Pharmaceutical Analysis 2025;15(4):759-774
Transcatheter arterial embolization(TAE)is the mainstay for treating advanced hepatocellular carcinoma(HCC),and the performance of the embolization material is crucial in TAE.With the development of medical imaging and the birth of"X-ray-free"technologies,we designed a new dual-mode imaging material of dimethoxy tetraphenyl ethylene(DMTPE)via emulsification by mixing poly(N-iso-propylacrylamide-co-acrylic acid)(PNA)with lipiodol and fluorocarbons,which was evaluated for temperature sensitivity,stability,and dual-mode visualization in vitro.Additionally,blood vessel casting embolization and renal artery imaging were assessed in healthy rabbits.In a rabbit model with a VX2 tumor,the effectiveness of TAE for treating HCC was examined,with an emphasis on evaluating long-term outcomes of embolization and its effects on tumor growth,necrosis,and proliferation through imaging techniques.In vitro experiments confirmed that the temperature-sensitive dual-oil-phase Pickering emulsion had good flow,stable contrast,and embolism when the oil-to-oil ratio and water-to-oil ratio were both 7∶3(v/v)and stabilized with 8%PNA.Similarly,in vivo,arterial embolization confirmed the excellent properties of DMTPE prepared at the abovementioned ratios.It was observed that DMTPE not only has an antitumor effect but can also achieve dual imaging using X-rays and ultrasound,making it a promising excellent vascular embolization material for TAE in tumor treatment.
10.Analysis of variants of VPS13B gene in a child with Cohen syndrome.
Xin XU ; Hong XU ; Hongying LI ; Min ZHU ; Yikang HE ; Ling ZHANG
Chinese Journal of Medical Genetics 2025;42(11):1387-1392
OBJECTIVE:
To explore the genetic basis for a boy affected with Cohen syndrome.
METHODS:
A boy admitted to Children's Hospital of Nanjing Medical University in January 2021 was selected as the study subject. Genome DNA was extracted from peripheral blood samples from the child and his parents. Whole exome sequencing (WES) was carried out. And candidate variants were verified by Sanger sequencing. This study was approved by the Medical Ethics Committee of the hospital (Ethics No.: 202106060-1).
RESULTS:
WES revealed that the child has harbored compound heterozygous variants of the VPS13B gene, namely c.1563+1G>A and c.3007insC (p.A1003Afs*13), which were inherited from his mother and father, respectively. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), both variants were rates as pathogenic. The c.3007insC (p.A1003Afs*13) was unreported previously.
CONCLUSION
The compound heterozygous variants c.1563+1G>A and c.3007insC (p.A1003Afs*13) of the VPS13B gene probably underlay the pathogenesis of Cohen syndrome in this child. Above finding has enriched the mutational spectrum of VPS13B gene.
Humans
;
Male
;
Vesicular Transport Proteins/genetics*
;
Intellectual Disability/genetics*
;
Muscle Hypotonia/genetics*
;
Microcephaly/genetics*
;
Fingers/abnormalities*
;
Myopia/genetics*
;
Obesity/genetics*
;
Developmental Disabilities/genetics*
;
Mutation
;
Exome Sequencing
;
Child
;
Heterozygote
;
Retinal Degeneration

Result Analysis
Print
Save
E-mail