1.Mechanisms, risks, and management strategies of artificial liver support system in treating liver failure with thrombocytopenia
Ru MA ; Zhiwei WANG ; Li MA ; Zihui DING ; Xingyu LI ; Yan WANG
Journal of Clinical Hepatology 2026;42(7):1717-1722
Artificial liver support therapy for liver failure is often complicated by thrombocytopenia, which increases the risk of bleeding. This article systematically elaborates on the pathophysiological role of platelets in liver disease, and systematically analyzes the differential effect of various artificial liver support modalities on platelets, with a focus on key factors such as biocompatibility and anticoagulation strategies. This article also summarizes the clinical management approaches including individualized platelet transfusion and the application of thrombopoietic agents and discusses the value of platelet count as a predictive indicator for treatment safety and efficacy, in order to provide a basis for precise clinical intervention.
2.Spatiotemporal characteristics of diesel exhaust particle pollution in confined space and impacts of ventilation and airflow: A laboratory simulation study
Zheyu HUANG ; Jian ZHANG ; Lihua HE ; Wenchu HUANG ; Zihui LI ; Bilige HASEN ; Hongbo WANG ; Yun WANG
Journal of Environmental and Occupational Medicine 2025;42(7):814-821
Background Diesel engines are widely used in transportation, agriculture, construction, industry, and other fields. Diesel exhaust, classified as a Group 1 carcinogen, emits particles (DEP) that can penetrate deep into the respiratory tract, posing significant health risks. DEP pollution is particularly severe in confined environments, necessitating effective control measures. Objective Under laboratory simulation conditions, to explore the spatiotemporal distribution characteristics of the mass and number concentrations of DEP as it diffuses indoors and to reveal the effects of ventilation and additional airflow on indoor DEP pollution levels. Methods A diesel engine was placed in a laboratory (length 3.39 m × width 2.85 m × height 2.4 m) with its exhaust emitted from east to west. An air purifier was installed 1 m south of the engine. Eight measurement points (1 m horizontal distance from the exhaust outlet, height: 1 m/1.5 m) were setup to monitor DEP concentrations using portable laser particle sizers. The effects of engine power (4.05 kW vs. 5.15 kW), ventilation (maximum airflow: 600 m3·h−1), additional airflow intensity (low and high), and direction (forward/reverse) on DEP pollution were analyzed. DEP levels of 5 diesel vehicle models were also compared. Results The mass and number concentrations of DEP indoors increased immediately after the diesel engine started. The peak mass concentration time at the eastern measurement point (−1, 0) m opposite to the exhaust direction (17.70 min) was significantly longer than that at the western (1, 0) m (16.20 min), southern (0, -1) m (14.45 min), and northern (0, 1) m (12.70 min) points (P<0.05), with no significant differences between the other points (western, southern, and northern) (P>0.05). The northern point (0, 1) m exhibited the highest DEP mass and number concentration peaks (174.62 μg·m−3,
3.A Novel Real-time Phase Prediction Network in EEG Rhythm.
Hao LIU ; Zihui QI ; Yihang WANG ; Zhengyi YANG ; Lingzhong FAN ; Nianming ZUO ; Tianzi JIANG
Neuroscience Bulletin 2025;41(3):391-405
Closed-loop neuromodulation, especially using the phase of the electroencephalography (EEG) rhythm to assess the real-time brain state and optimize the brain stimulation process, is becoming a hot research topic. Because the EEG signal is non-stationary, the commonly used EEG phase-based prediction methods have large variances, which may reduce the accuracy of the phase prediction. In this study, we proposed a machine learning-based EEG phase prediction network, which we call EEG phase prediction network (EPN), to capture the overall rhythm distribution pattern of subjects and map the instantaneous phase directly from the narrow-band EEG data. We verified the performance of EPN on pre-recorded data, simulated EEG data, and a real-time experiment. Compared with widely used state-of-the-art models (optimized multi-layer filter architecture, auto-regress, and educated temporal prediction), EPN achieved the lowest variance and the greatest accuracy. Thus, the EPN model will provide broader applications for EEG phase-based closed-loop neuromodulation.
Humans
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Electroencephalography/methods*
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Brain/physiology*
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Machine Learning
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Signal Processing, Computer-Assisted
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Male
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Adult
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Neural Networks, Computer
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Brain Waves/physiology*
4.Comparative Analysis of Histological Tools for Myelin.
Zihui AN ; Shuo YAN ; Jiayi WANG ; Hanqing QIU ; Binghua XIE ; Shumei FENG ; Mengsheng QIU ; Zhou TAN
Neuroscience Bulletin 2025;41(9):1656-1668
Myelin is an essential structure that facilitates rapid saltatory conduction in the nervous system. Discrepancies in myelin microstructure are a hallmark of numerous neurological disorders, rendering the assessment of myelin integrity and content an indispensable tool in clinical diagnostics and neuroscience research. Extensive research has been dedicated to scrutinizing its biochemical makeup and morphology under normal, pathological, and experimental conditions over the years. In this review, we present an updated summary of the myelin sheath's structure, composition, and developmental trajectory. We systematically enumerate and contrast eight prevalent myelin staining techniques across dimensions of sensitivity, specificity, and resolution, delving into their underlying staining principles. With an initial application of myelin histology on the mouse demyelination model, our review accentuates the accurate delineation of myelination and the microstructural analysis of the myelin sheath. Such insights are anticipated to significantly contribute to the evaluation and understanding of white matter pathologies.
Myelin Sheath/metabolism*
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Animals
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Humans
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Demyelinating Diseases/pathology*
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Staining and Labeling/methods*
5.Design and synthesis of novel saponin-triazole derivatives in the regulation of adipogenesis.
Yongsheng FANG ; Zhiyun ZHU ; Chun XIE ; Dazhen XIA ; Huimin ZHAO ; Zihui WANG ; Qian LU ; Caimei ZHANG ; Wenyong XIONG ; Xiaodong YANG
Chinese Journal of Natural Medicines (English Ed.) 2025;23(8):920-931
Saponins associated with Panax notoginseng (P. notoginseng) demonstrate significant therapeutic efficacy across multiple diseases. However, certain high-yield saponins face limited clinical applications due to their reduced pharmacological efficacy. This study synthesized and evaluated 36 saponin-1,2,3-triazole derivatives of ginsenosides Rg1/Rb1 and notoginsenoside R1 for anti-adipogenesis activity in vitro. The research revealed that the ginsenosides Rg1-1,2,3-triazole derivative a17 demonstrates superior adipogenesis inhibitory effects. Structure-activity relationships (SARs) analysis indicates that incorporating an amidyl-substituted 1,2,3-triazole into the saponin side chain via Click reaction enhances anti-adipogenesis activity. Additionally, several other derivatives exhibit general adipogenesis inhibition. Compound a17 demonstrated enhanced potency compared to the parent ginsenoside Rg1. Mechanistic investigations revealed that a17 exhibits dose-dependent inhibition of adipogenesis in vitro, accompanied by decreased expression of preadipocytes. Peroxisome proliferator-activated receptor γ (PPARγ), fatty acid synthase (FAS), and fatty acid binding protein 4 (FABP4) adipogenesis regulators. These findings establish the ginsenoside Rg1-1,2,3-triazole derivative a17 as a promising adipocyte differentiation inhibitor and potential therapeutic agent for obesity and associated metabolic disorders. This research provides a foundation for developing effective therapeutic approaches for various metabolic syndromes.
Adipogenesis/drug effects*
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Triazoles/chemical synthesis*
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Ginsenosides/chemical synthesis*
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Saponins/chemical synthesis*
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Animals
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Mice
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Structure-Activity Relationship
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PPAR gamma/genetics*
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3T3-L1 Cells
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Adipocytes/metabolism*
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Panax notoginseng/chemistry*
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Drug Design
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Molecular Structure
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Humans
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Cell Differentiation/drug effects*
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Fatty Acid-Binding Proteins/genetics*
6.Regulation of methyltransferase METTL3 on radiotherapy sensitivity of oral squamous cell carcinoma cells
Qingzhe MENG ; Junhong HUANG ; Xinjie YANG ; Huan LI ; Zihui YANG ; Jun WANG ; Yahui LI ; Rong LIU ; Jianhua WEI
Journal of Practical Stomatology 2025;41(2):206-213
Objective:To study the influence of methyltransferases like 3(METTL3)on the radiosensitivity of oral squamous cell carcinoma cells(OSCCs).Methods:The apoptosis level of OSCCs CAL27,SCC9 and SCC15 treated with X-ray radiation doses of 2,4 and 8 Gy respectively was compared by flow cytometry,the expression of methylated gene RNA and protein in the cells were examined by qRT-PCR and Western blot.m6A in the cells was quantified by LC/LC-MS method.qRT-PCR and Western blot were used to investigate the expression of methylated gene RNA and protein in the cells.Flow cytometry was used to examine the cell apoptosis level of CAL27 and SCC15 cells treated with METTL3 overexpression and knockdown respectively.The clone forma-tion of CAL27 and SCC15 cells after knockdown and overexpression of target genes followed by radiation treatment was observed by clonogenic assays.Results:The apoptosis rate of all the cell lines increased with the increase dose of radiation at each dose,CAL27 cells showed the highest and SCC15 showed the lowerst apoptosis rate.The RNA and protein expression levels of METTL3 in CAL27 were significantly lower than those of SCC15.m6A quantification showed that the methylation modification in CAL27 cells was lower than that in SCC15.The expression of METTL3 was increased in CAL27 and SCC15 cells after radiation treatment.Knockdown of METTL3 increaced the apoptosis rate and decreased the clonogenesity,overession of METTL3 the decreaced the ap optosis rate and increased the clonogenecity of the cells.Conclusion:Regulation of METTL3 can affect the radiotherapy sensitivity of OSCCs,METTL3 may become a new target for radiosensitization of OSCCs.
7.Preparation and mechanical property analysis of hydrophilic Gyroid structure implant
Xinghua YAN ; Xinyu WANG ; Miao LIU ; Zekui HAN ; Yihan SONG ; Yan ZHANG ; Zihui SUN
Chinese Journal of Tissue Engineering Research 2025;29(16):3343-3350
BACKGROUND:The elastic modulus of traditional solid titanium alloy implants is higher than that of human bone,and the resulting"stress shielding"phenomenon may affect the osseointegration of implants.Simultaneously,the wettability of 3D printed titanium alloy surface needs to be improved.OBJECTIVE:To prepare hydrophilic Gyroid implants with excellent biomechanical properties.METHODS:The 3D models of Gyroid implant,solid implant,mandibular bone and crown were established,and the mechanical properties of different implants were analyzed by finite element analysis.The Gyroid structure implant model was imported into the 3D printer to make the Gyroid structure implant materialized,and then the hydrophilic Gyroid structure implant with excellent mechanical properties and surface activity was prepared by sandblasting acid etching and ultraviolet functionalization.The morphology and hydrophilicity of 3D printed Ti6Al4V specimens before and after surface modification were analyzed by scanning electron microscopy and contact angle test.RESULTS AND CONCLUSION:(1)The finite element analysis results showed that under the vertical average bite force,the Gyroid structure could uniformly disperse the load acting on the implant into the entire structure.The load on the solid structure implant could only be dispersed on its outer surface and concentrated in the neck.The maximum equivalent stress of the Gyroid structure implant was 200.67 MPa,which did not exceed 50%of the yield strength of Ti6Al4V material.The maximum equivalent stress of the Gyroid structure implant on the surrounding bone tissue was 24.27 MPa,which was slightly higher than the maximum equivalent stress of the solid structure implant 17.32 MPa,and in the range of 20-60 MPa.The stimulation effect of the Gyroid structure implant on new bone formation was better than that of the solid structure implant.(2)The 3D printing technology could materialize the Gyroid structure implant model.Scanning electron microscopy showed that there were many unmelted spherical metal particles on the surface of the 3D printed Ti6Al4V specimens.After sandblasting and acid etching,a micron-scale mesh pore structure was formed on the surface,and no protruding metal particles were seen.The surface morphology of the superimposed UV functional treatment group was basically consistent with that after sandblasting and acid etching.The contact angle test results showed that the surface hydrophilicity of the specimens treated with ultraviolet functionalization plus sandblasting and acid etching was better than that of the sandblasting and acid etching and non-surface treatment groups.(3)The sandblasting and acid etching technology can remove the weakly connected metal particles on the 3D printed specimen and improve the similarity between the solid model and the design model.On this basis,the ultraviolet functionalization treatment can significantly improve the hydrophilicity of the 3D printed Gyroid structure implant surface without affecting its structure.
8.Efficacy test of mp-MRI-based VI-RADS score for diagnosis of muscle-invasive bladder cancer,a Meta-analysis
Qingyang YU ; Kangkang CHEN ; Tonglei ZHAO ; Weipu MAO ; Zejun WANG ; Xinyang PENG ; Zihui ZHAO ; Xingui PENG ; Ming CHEN ; Jianping WU
Chinese Journal of Urology 2025;46(6):430-438
Objective:To evaluate the diagnostic performance of the Vesical Imaging-Reporting and Data System(VI-RADS)based on multiparametric magnetic resonance imaging(mp-MRI)for muscle-invasive bladder cancer(MIBC).Methods:A systematic search was conducted in PubMed,Web of Science,and Embase databases for studies published between September 2018 and December 2023 that investigated the use of VI-RADS for diagnosing MIBC. Inclusion criteria were studies utilizing mp-MRI-based VI-RADS scoring to determine MIBC. Exclusion criteria were studies with fewer than 10 patients,overlapping study populations,or those failing to assess the diagnostic performance of VI-RADS for MIBC. After quality assessment,RevMan 5.4 and Stata 15.1 were used to calculate pooled sensitivity and specificity,generate forest plots and summary receiver operating characteristic(SROC)curves,and determine the area under the curve(AUC). Publication bias was assessed using Deeks funnel plot. Heterogeneity was evaluated using the I2 statistic,with meta-regression and subgroup analyses to explore its sources. Results:Twenty-nine studies involving 3 577 patients were included. At a VI-RADS cutoff of 3,the pooled sensitivity and specificity for MIBC diagnosis were 93%(95%CI 0.90-0.95)and 82%(95%CI 0.76-0.88),respectively. At a cutoff of 4,these values were 83%(95%CI 0.78-0.87)and 93%(95%CI 0.90-0.95). The hierarchical SROC(HSROC)AUCs were 0.95 and 0.94 for cutoffs of 3 and 4,respectively. Subgroup and meta-regression analyses revealed that at a cutoff of 3,patient sample size,study design,MRI field strength,number of radiologists,surgical approach,and DWI/DCE imaging planes contributed to sensitivity heterogeneity( P < 0.05). All factors except study design and DWI plane were sources of specificity heterogeneity( P < 0.05). At a cutoff of 4,all factors significantly influenced heterogeneity in both sensitivity and specificity( P < 0.05). Meta-regression confirmed that both cutoffs(3 and 4)were significant sources of heterogeneity( P < 0.05). Conclusions:VI-RADS demonstrates excellent diagnostic performance for MIBC at both cutoffs(3 and 4),with VI-RADS ≥ 3 showing superior sensitivity and VI-RADS ≥ 4 offering higher specificity. The cutoff of 3 provides better overall diagnostic efficacy.
9.Application and efficacy of microscopic vocal cord shortening with retrodisplacement of anterior commissure in voice feminization surgery
Zihui SUN ; Wei MENG ; Guoyan SUN ; Wenjuan WANG ; Min YAN ; Hui XIAO ; Shuangba HE
Chinese Journal of Otorhinolaryngology Head and Neck Surgery 2025;60(5):520-526
Objective:To explore the the application and outcomes of microscopic vocal cord shortening with retrodisplacement of anterior commissure in voice feminization surgery.Methods:We conducted a retrospective analysis of 296 patients(including 3 cases of pseudohermaphroditism and 293 transgender women)who underwent this procedure at the Voice Center of Nanjing Tongren Hospital of Otolaryngology-Head and Neck Surgery between November 2014 and August 2023. The patients, aged 18-50 years (mean age of 28.3±14.5) underwent feminizing laryngoplasty via transoral microsurgery, involving resection of the superficial lamina propria of the anterior vocal cords and subglottic tissues of the anterior commissure, followed by vocal ligament plication to achieve vocal cords shortening and anterior commissure retrodisplacement. Patients adhered to a1-month voice rest postoperatively and subsequently underwent speech rehabilitation training. Subjective/objective voice analyses, aerodynamic evaluations, and stroboscopic examinations were performed at 3, 6, and 12 months postoperatively to assess the effectiveness of voice feminization.Results:All surgeries were performed successfully and 94.3% (279/296) of the patients reported satisfaction at the end of the one-year follow-up. For effective cases, fundamental frequency (F 0) increased by 57.42±16.72 Hz compared to baseline. Postoperative acoustic/aerodynamic parameters and stroboscopic findings of vocal cord mucosal wave motion remained within normal ranges. These results indicated that this voice feminization surgery combined with postoperative pronunciation training achieved natural and feminine vocal characteristics. Conclusion:The combination of vocal cord shortening and anterior commissure retrodisplacement, along with postoperative pronunciation training, represents an effective surgical strategy for achieving a natural feminine voice.
10.Correlation of SERPINC1 and SERPINE1 gene polymorphisms with venous thromboembolism in patients with malignant tumors
Zihui ZHU ; Man HE ; Xueping HOU ; Yuying WANG ; Jianan LIN ; Lizhong WANG ; Weihua JIANG
Cancer Research and Clinic 2025;37(1):14-18
Objective:To investigate the correlation of SERPINC1 and SERPINE1 gene polymorphisms with venous thromboembolism (VTE) in patients with malignant tumors.Methods:A retrospective case-control study was conducted. A total of 227 patients with malignant tumors in the Cancer Hospital Affiliated to Xinjiang Medical University from November 2023 to February 2024 were selected, of which 47 cases developed VTE (VTE group) and 180 cases did not develop VTE (non-VTE group). The patients' venous blood was collected, and D-dimer level was analyzed by using fully automatic coagulation analyzer; fluorescence staining was performed by using digoxin staining solution, and SERPINC1 rs2227589 locus and SERPINE1 rs1799762 locus were used as candidate genes, and fluorescence sequencing was performed by using multichannel fluorescence quantitative analyzer, and the frequencies of C, T, 4G and 5G genes were calculated.Results:There were no statistically significant differences in the age, gender, smoking, alcohol consumption, anticoagulant use, diabetes mellitus, hypertension, coronary artery disease, surgical treatment, intravenous cannulae, radiotherapy, chemotherapy, and targeted therapy between the 2 groups (all P > 0.05). The level of D-dimer in the VTE group was higher than that in the non-VTE group [(8.7±6.9) kg/m 2vs. (2.8±1.0) kg/m 2], and the difference was statistically significant ( t = 5.15, P < 0.001). The differences in C and T genotypes and gene frequencies at the SERPINC1 rs2227589 locus between the VTE group and the non-VTE group were not statistically significant (all P > 0.05). The differences in 4G and 5G genotypes and gene frequencies at the SERPINE1 rs1799762 locus between the VTE group and the non-VTE group were statistically significant (all P < 0.05), and 4G allele frequency in the VTE group was higher than that in the non-VTE group (52.13% vs. 39.72%), and the difference was statistically significant ( χ2 = 4.70, P = 0.030). Conclusions:The elevated expression of 4G allele at the SERPINE1 rs1799762 locus in patients with malignant tumors is associated with development of VTE.

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