1.Endoscopic surgery monitoring technique based on precision monitoring of hemorrhage and irrigation fluid absorption
Journal of Modern Urology 2026;31(2):105-108
Excessive hemorrhage and irrigation fluid absorption during endoscopic surgery may cause severe complications, while traditional monitoring methods are inaccurate and invasive. To address such problems, our research team jointly developed with industry partners an endoscopic surgery monitoring system employing multisensor fusion technique. This system achieves dynamic blood loss quantification through photoelectric measurement of hemoglobin concentration in effluent fluid and precisely calculates irrigation absorption using strain-gauge sensors with urine-compensation algorithms based on volume-balance principles, integrated with real-time threshold alerts. Validation confirms measurement errors ≤ ±4% for hemorrhage and ≤±2% irrigation fluid for absorption. Clinical applications in transurethral resection of the prostate (TURP), percutaneous nephrolithotomy (PCNL), and hysteroscopic surgeries demonstrate high accuracy and stability. The system effectively enhances surgical safety by preventing TURP syndrome, urinary tract infections, and major hemorrhage, showing significant clinical translational value.
2.Thyroid Hormone Network Regulation in MASLD: Mechanisms and Targeted Therapies
Wen-Ping XIAO ; Yang MA ; Heng GUAN ; Sha WAN ; Wen HAN ; Bing-Bing LUO ; Wu-Feng WANG ; Fang LIU
Progress in Biochemistry and Biophysics 2026;53(3):643-661
Metabolic dysfunction-associated steatotic liver disease (MASLD) has become the most prevalent chronic liver disease worldwide, affecting approximately 32%-38% of the adult population and posing a growing public health burden. MASLD represents a continuous disease spectrum ranging from simple steatosis to metabolic dysfunction-associated steatohepatitis (MASH), progressive hepatic fibrosis, cirrhosis, and ultimately hepatocellular carcinoma (HCC). The pathological core of MASLD lies in disruption of hepatic lipid metabolic homeostasis, characterized by an imbalance among de novo lipogenesis, fatty acid β-oxidation, and very-low-density lipoprotein (VLDL)-mediated lipid export. This metabolic disequilibrium subsequently drives inflammatory injury and fibrotic progression. Among the multiple regulatory pathways involved, thyroid hormone (TH) signaling has emerged as a central regulator of hepatic metabolic homeostasis. The liver is a major peripheral target organ of TH action, where TH predominantly exerts its metabolic effects through thyroid hormone receptor β (TRβ). Large-scale epidemiological studies and meta-analyses have demonstrated that hypothyroidism is significantly associated with increased MASLD prevalence, more severe histological injury, and advanced hepatic fibrosis, suggesting that dysregulation of TH signaling may participate throughout the entire MASLD disease spectrum. At the molecular level, TH regulates hepatic lipid metabolism by coordinating suppression of lipogenesis, enhancement of mitochondrial fatty acid oxidation, and promotion of VLDL assembly and secretion through integrated genomic actions of the T3-TRβ axis and non-genomic signaling pathways. Across different stages of MASLD, TH signaling exerts stage-dependent protective effects. In the steatosis stage, TH improves metabolic flexibility by modulating insulin sensitivity, glucose metabolism, and lipid droplet clearance, thereby alleviating early lipotoxic stress. During progression to MASH, TH attenuates inflammatory amplification by improving mitochondrial homeostasis, suppressing activation of the NOD-like receptor family pyrin domain containing 3 (NLRP3) inflammasome, and modulating the gut-liver axis microenvironment. In advanced stages, TH signaling influences hepatic stellate cell activation and extracellular matrix deposition, partly through interaction with the transforming growth factor-β (TGF-β)/SMAD pathway, while alterations in intrahepatic TH availability, mediated by dynamic changes in iodothyronine deiodinase 1 (DIO1), contribute to fibrosis progression and hepatocellular dedifferentiation. In hepatocellular carcinoma, coordinated downregulation of TRβ and DIO1 establishes a tumor-associated hypothyroid state that promotes metabolic reprogramming and tumor progression. The clinical relevance of TH signaling in MASLD has been underscored by the recent approval of Resmetirom, a liver-targeted TRβ‑selective agonist, for the treatment of non-cirrhotic MASH with moderate-to-severe fibrosis (F2-F3). This approval represents a landmark transition from mechanistic understanding to metabolism-centered precision therapy in MASLD. Clinical trials have demonstrated that Resmetirom not only improves key histological endpoints, including MASH resolution and fibrosis regression, but also favorably modulates atherogenic lipid profiles, highlighting the therapeutic potential of selectively targeting hepatic TH pathways. This review systematically summarizes the multidimensional regulatory roles of TH across the MASLD disease spectrum and discusses emerging diagnostic and therapeutic implications of TH-based interventions, aiming to inform future mechanistic research and optimize clinical management strategies.
3.Development trajectories of clustered health risk behaviors and their association with self esteem and loneliness among junior high school students
XU Tao, LIU Lü ; hao, CHEN Jiajia, WANG Yongsheng, ZHANG Tiancheng, YANG Xuejing
Chinese Journal of School Health 2026;47(2):189-193
Objective:
To analyze the developmental trajectories of clustered health risk behaviors and their association with self-esteem and lonelinesss among junior high school students, so as to provide a reference for formulating comprehensive prevention and control measures of health risk behaviors among adolescents.
Methods:
In October 2023, 1 165 first year junior high school students from two schools of Jishou City in Hunan Province were selected by convenient sampling method for three follow up surveys (T1:October 2023; T2:April 2024; T3:October 2024). The Adolescent Health Risk Behavior Questionnaire, Rosenberg Self esteem Scale and Loneliness Scale were used to assess health risk behaviors, self esteem and loneliness, respectively. Latent growth curve modeling and latent growth mixture modeling were applied to analyze the developmental trajectories of clustered health risk behaviors among junior high school students. Logistic regression was used to analyze the association of the developmental trajectories of clustered health risk behaviors with self esteem and loneliness among junior high school students.
Results:
The overall developmental trajectories among junior high school students showed a declining trend (intercept=0.15, slope=-1.65, both P <0.05), with three heterogeneous categories:low risk improvement group ( n =862, 74.0%), moderate risk stable group ( n =260, 22.3%), and high risk deterioration group ( n =43, 3.7%). After adjusting the status of the left behind individuals,using the low risk improvement group as the reference category in multinomial Logistic regression analysis, results indicated that higher loneliness scores among junior high school students increased the risks of belonging to the moderate risk stable group ( OR=1.02, 95%CI =1.00- 1.04 ) and the high risk deterioration group ( OR=1.04, 95%CI =1.00-1.08), while higher self esteem scores reduced the risks of belonging to the moderate risk stable group ( OR=0.93, 95%CI =0.91-0.96) and the high risk deterioration group ( OR=0.88, 95%CI =0.83-0.94) (all P <0.05).
Conclusions
The overall trend of clustered health risk behaviors among junior high school students gradually improves, and the self esteem and loneliness are significant correlative factors. Targeted intervention measures should be developed for the junior high school students, with a focus on enhancing their self esteem and alleviating loneliness.
4.Human amniotic mesenchymal stem cell exosomes repair radiation-induced submandibular gland damage in rats
Min ZHANG ; Nini ZHANG ; Guilin HUANG ; Zhuangzhuang LI ; Xue WANG ; Huike WANG
Chinese Journal of Tissue Engineering Research 2025;29(36):7804-7815
BACKGROUND:Radiotherapy for head and neck tumors can easily cause xerostomia,seriously affecting the quality of life of patients.In recent years,engineered stem cells and their paracrine factors have shown therapeutic potential in the repair of salivary gland injury.However,there is currently no experimental study on the application of amniotic mesenchymal stem cell-derived exosome in radiation-induced salivary gland injury.OBJECTIVE:To preliminarily explore the repair effect of exosome derived from human amniotic mesenchymal stem cells on radiation-induced submandibular gland injury.METHODS:H uman amniotic mesenchymal stem cell exosomes were extracted and identified by ultrafiltration and ultracentrifugation.SD rats were randomly divided into a control group,a radiation injury group,and a radiation injury+exosome group.An in vitro model of radiation-induced submandibular gland injury was constructed using the submandibular gland tissue of SD rats irradiated with 18 Gy of radiation.One day after radiation modeling,exosome derived from human amniotic mesenchymal stem cells was injected into the submandibular gland in situ.Samples are taken at 1,3,7,and 14 days to detect the resting salivary flow rate.The structure of the submandibular gland tissue was observed by hematoxylin-eosin staining.The expression of glycogen particles in the submandibular gland tissue was observed by Periodic Acid-Schiff staining.Fibrosis in the submandibular gland tissue was observed by Masson staining.The secretion of salivary amylase was detected by enzyme-linked immunosorbent assay.The expression of aquaporin and tight junction proteins in submandibular gland tissue was observed by immunofluorescence staining.Real-time fluorescence quantitative PCR was used to detect the relative expression levels of aquaporins and salivary amylase mRNA in submandibular gland tissue.TUNEL assay was used to detect the apoptosis rate of submandibular gland tissues in each group.RESULTS AND CONCLUSION:After radiomodeling,compared with the radiation injury group,(1)hematoxylin-eosin staining observed that the submandibular gland tissue structure in the radiation injury+exosome group was restored,the nucleoli increased,the number of acinus increased,and the acinar atrophy improved.(2)Glycogen staining observed that the number and density of positive zymogen granules in the acinar cytoplasm of the radiation injury+exosome group gradually increased.(3)Masson staining results observed that the number and density of positive collagen fibers in the interstitium and around the ducts in the radiation injury+exosome group gradually decreased,the degree of fibrosis decreased,and the collagen deposition decreased.(4)The salivary flow rate in the radiation injury+exosome group increased(P<0.05).The fluorescence intensity of aquaporin-5 was enhanced(P<0.05)and the gene expression was significantly enhanced(P<0.01).The fluorescence distribution of tight junction protein 4 was weakened and the fluorescence intensity decreased(P<0.05,P<0.01).The content of salivary amylase increased(P<0.05)and gene expression were significantly increased(P<0.01).The number of positive apoptotic cells decreased(P<0.05,P<0.01).It is indicated that local injection of exosome derived from human amniotic mesenchymal stem cells could improve the pathological morphology of submandibular gland tissue,promote saliva flow rate and amylase expression,and may play a functional repair role in radioactive submandibular gland injury by inhibiting acinar apoptosis.
5.Analysis of Factors Influencing Avoidable Hospitalization Costs for Stable Angina Pectoris in Liaoning Province
Tong SU ; Jingying ZHANG ; Guilin WANG ; Fengchun ZHENG ; Yuedan MA
Chinese Health Economics 2025;44(11):63-66,78
Objective:To provide evidence-based support and policy recommendations for improving the prevention and management of stable angina pectoris(SAP)within the current government chronic disease control system,based on the theory of Ambulatory Care Sensitive Conditions(ACSCs).Methods:A total of 104 066 hospitalized cases of angina pectoris were included.Using the SHA 2011 framework for total health expenditure analysis,factors influencing avoidable hospitalization for SAP were identified.Multivariable logistic regression analysis was conducted to examine the associations between these factors and hospitalization costs for SAP.Results:Avoidable hospitalizations were predominantly concentrated in tertiary hospitals(82.01%),where hospitalization costs were significantly higher than those in primary healthcare institutions.Multivariable logistic regression analysis revealed that insurance type had a significant effect on hospitalization costs,and patients treated in tertiary hospitals were more likely to incur high medical expenses.Conclusions:The current SAP prevention and treatment system faces challenges such as insufficient capacity of primary healthcare,resource concentration in tertiary hospitals,and the impact of medical insurance policies on hospital choice.It is recommended to strengthen primary healthcare services and include SAP in chronic disease management programs to reduce unnecessary hospitalizations.Additionally,expanding insurance coverage could help reduce the risk of catastrophic health expenditure among self-paying patients.
6.Exploring the Mechanism of Gastrointestinal Tumor Treatment from the Perspective of Dampness Pathogen Theory Based on Inflammatory-Metabolic-Immune Microenvironment
Yinggang TANG ; Tongfei QI ; Guilin AN ; Lan HE ; Yilan JIANG ; Qimei WANG ; Yingchun HE
World Science and Technology-Modernization of Traditional Chinese Medicine 2025;27(2):466-473
Tumor microenvironment(TME)includes inflammatory,metabolic,and immune microenvironment,which interact in a complex network,influencing tumorigenesis,progression,and metastasis.Clinical studies on traditional Chinese medicine(TCM)have found that dampness pathogen plays a significant role in gastrointestinal precancerous lesions,tumorigenesis,and metastasis.It disrupts the gastrointestinal tumor's inflammatory,metabolic,and immune microenvironments,promoting tumor development through various mechanisms.Based on the theory of dampness pathogen,it is proposed to eliminate dampness combined with detoxification to regulate tumor inflammatory microenvironment;invigorate qi,warm yang,and remove dampness to regulate metabolic microenvironment;and strengthen the spleen,support vital energy,and dispel dampness to improve immunosuppressive microenvironment.Treating gastrointestinal tumors from the perspective of dampness pathogen theory can offer new insights and focus areas for clinical diagnosis and treatment,as well as directions for research into the molecular mechanisms of compound Chinese herbal formulas.
7.Exploring the Mechanism of Gastrointestinal Tumor Treatment from the Perspective of Dampness Pathogen Theory Based on Inflammatory-Metabolic-Immune Microenvironment
Yinggang TANG ; Tongfei QI ; Guilin AN ; Lan HE ; Yilan JIANG ; Qimei WANG ; Yingchun HE
World Science and Technology-Modernization of Traditional Chinese Medicine 2025;27(2):466-473
Tumor microenvironment(TME)includes inflammatory,metabolic,and immune microenvironment,which interact in a complex network,influencing tumorigenesis,progression,and metastasis.Clinical studies on traditional Chinese medicine(TCM)have found that dampness pathogen plays a significant role in gastrointestinal precancerous lesions,tumorigenesis,and metastasis.It disrupts the gastrointestinal tumor's inflammatory,metabolic,and immune microenvironments,promoting tumor development through various mechanisms.Based on the theory of dampness pathogen,it is proposed to eliminate dampness combined with detoxification to regulate tumor inflammatory microenvironment;invigorate qi,warm yang,and remove dampness to regulate metabolic microenvironment;and strengthen the spleen,support vital energy,and dispel dampness to improve immunosuppressive microenvironment.Treating gastrointestinal tumors from the perspective of dampness pathogen theory can offer new insights and focus areas for clinical diagnosis and treatment,as well as directions for research into the molecular mechanisms of compound Chinese herbal formulas.
8.PDZ-binding kinase as a prognostic biomarker for pancreatic cancer: a pan-cancer analysis and validation in pancreatic adenocarcinoma cells.
Jinguo WANG ; Yang MA ; Zhaoxin LI ; Lifei HE ; Yingze HUANG ; Xiaoming FAN
Journal of Southern Medical University 2025;45(10):2210-2222
OBJECTIVES:
To investigate the prognostic significance of PDZ-binding kinase (PBK) in pan-cancer and its potential as a therapeutic target for pancreatic cancer.
METHODS:
PBK expression levels were investigated in 33 cancer types based on data from TCGA, GEO and CPTAC databases. RT-PCR and Western blotting were employed to examine PBK expression in clinical pancreatic cancer specimens and cell lines. The diagnostic and prognostic value of PBK in pancreatic cancer was evaluated using survival analysis, Cox regression analysis, ROC curve analysis, and clinical correlation studies. Gene enrichment and immune correlation analyses were conducted to explore the potential role of PBK in tumor microenvironment, and its correlation with drug sensitivity was investigated using GDSC and CTRP datasets. In pancreatic cancer BXPC-3 cells, the effects of lentivirus-mediated PBK knockdown on cell proliferation, migration, and invasion were examined using CCK-8, colony formation, and Transwell assays. The interaction between PBK and non-SMC condensin II complex subunit G2 (NCAPG2) was analyzed using co-immunoprecipitation and Western blotting.
RESULTS:
PBK was overexpressed in multiple cancer types, including pancreatic cancer. A high PBK expression was associated with a poor prognosis of the patients and correlated with immune infiltration and alterations in the tumor microenvironment. Elevated PBK expression was positively correlated with the sensitivity to MEK inhibitors (Trametinib) and EGFR inhibitors (Afatinib) but negatively with the sensitivity to Bcl-2 inhibitors (TW37) and niclosamide. In BXPC-3 cells, PBK knockdown significantly suppressed NCAPG2 expression and inhibited cell proliferation, migration, and invasion. Co-immunoprecipitation confirmed a direct binding between PBK and NCAPG2.
CONCLUSIONS
PBK is a key regulator of pancreatic cancer and interacts with NCAPG2 to promote tumor progression, suggesting its value as a potential biomarker and therapeutic target for pancreatic cancer.
Humans
;
Pancreatic Neoplasms/genetics*
;
Prognosis
;
Biomarkers, Tumor/genetics*
;
Cell Line, Tumor
;
Cell Proliferation
;
Adenocarcinoma/metabolism*
;
Tumor Microenvironment
;
Cell Movement
;
Mitogen-Activated Protein Kinase Kinases
9.Correlation between differences in starch gelatinization, water distribution, and terpenoid content during steaming process of Curcuma kwangsiensis root tubers by multivariate statistical analysis.
Yan LIANG ; Meng-Na YANG ; Xiao-Li QIN ; Zhi-Yong ZHANG ; Zhong-Nan SU ; Hou-Kang CAO ; Ke-Feng ZHANG ; Ming-Wei WANG ; Bo LI ; Shuo LI
China Journal of Chinese Materia Medica 2025;50(10):2684-2694
To elucidate the mechanism by which steaming affects the quality of Curcuma kwangsiensis root tubers, methods such as LSCM, RVA, dual-wavelength spectrophotometry, LF-NMR, and LC-MS were employed to qualitatively and quantitatively detect changes in starch gelatinization characteristics, water distribution, and material composition of C. kwangsiensis root tubers under different steaming durations. Based on multivariate statistical analysis, the correlation between differences in gelatinization parameters, water distribution, and terpenoid material composition was investigated. The results indicate that steaming affects both starch gelatinization and water distribution in C. kwangsiensis. During the steaming process, transformations occur between amylose and amylopectin, as well as between semi-bound water and free water. After 60 min of steaming, starch gelatinization and water distribution reached an equilibrium state. The content of amylopectin, the amylose-to-amylopectin ratio, and parameters such as gelatinization temperature, viscosity, breakdown value, and setback value were significantly correlated(P≤0.05). Additionally, the amylose-to-amylopectin ratio was significantly correlated with total free water and total water content(P≤0.05). Steaming induced differences in the material composition of C. kwangsiensis root tubers. Clustering of primary metabolites in the OPLS-DA model was distinct, while secondary metabolites were classified into 9 clusters using the K-means clustering algorithm. Differential terpenoid metabolites such as(-)-α-curcumene were significantly correlated with zerumbone, retinal, and all-trans-retinoic acid(P<0.05). Curcumenol was significantly correlated with isoalantolactone and ursolic acid(P<0.05), while all-trans-retinoic acid was significantly correlated with both zerumbone and retinal(P<0.05). Alpha-tocotrienol exhibited a significant correlation with retinal and all-trans-retinoic acid(P<0.05). Amylose was extremely significantly correlated with(-)-α-curcumene, curcumenol, zerumbone, retinal, all-trans-retinoic acid, and α-tocotrienol(P<0.05). Amylopectin was significantly correlated with zerumbone(P<0.05) and extremely significantly correlated with(-)-α-curcumene, curcumenol, zerumbone, retinal, all-trans-retinoic acid, and 9-cis-retinoic acid(P<0.01). The results provide scientific evidence for elucidating the mechanism of quality formation of steamed C. kwangsiensis root tubers as a medicinal material.
Curcuma/chemistry*
;
Starch/chemistry*
;
Multivariate Analysis
;
Water/chemistry*
;
Terpenes/analysis*
;
Plant Roots/chemistry*
;
Plant Tubers/chemistry*
;
Drugs, Chinese Herbal/chemistry*
10.Establishment and identification of hepatocyte-specific Tmem121 knockout mouse model
Yue Wang ; Guoliang He ; Lanyu Li ; Qian Wu ; Junmei Zhou
Acta Universitatis Medicinalis Anhui 2025;60(9):1591-1598
Objective:
To establish and identify hepatocyte-specific transmembrane protein 121 ( Tmem121 ) knockout mice.
Methods:
The hepatocyte-specific Tmem121 knockout mice ( Tmem121flox / flox / Cre,Tmem121ΔHep) were obtained by crossbreeding of Tmem121flox / + / Cre and Tmem121flox / flox mice,which were generated using the CRISPR / Cas9 and Cre / Loxp systems.The genotype was verified by PCR using genomic DNA extracted from mouse tails as template.The growth,reproduction and organ development of both control and knockout mice were ob- served and analyzed.PCR and Western blot methods were performed to assess the knockout efficiency of Tmem121 in mouse primary hepatocytes.CellMaskTM Deep Red plasma membrane staining was employed to compare the mor- phological differences in primary hepatocytes between control and knockout mice.
Results:
Tmem121flox / flox / Cre mice were successfully obtained according to genotype identification analysis,and there were no significant differ- ences between control and knockout mice in body mass,reproductive ability,growth and development of liver.The specific knockout of Tmem121 gene in primary hepatocytes did not significantly affect the morphological structure or pathological characteristics of liver tissue.However,compared to the control group,the levels of Tmem121 mRNA and protein in the primary hepatocytes of the knockout group were significantly reduced ( P <0. 01) .CellMaskTM Deep Red plasma membrane staining indicated that the proportion of binucleated hepatocytes in Tmem121-deficient mice significantly increased ( P<0. 05) ,while the cell area was significantly reduced ( P<0. 001) .
Conclusion
Hepatocyte-specific Tmem121 knockout mice are successfully constructed,which provides an animal model for further exploration of the function and mechanism of Tmem121 gene in liver diseases.


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