1.Prediction of the drug-drug interaction between sodium tanshinone ⅡA sulfonate and clopidogrel based on the PBPK model
Die ZHANG ; Lichao ZHANG ; Mengru SUN ; Fengdan QIAN
China Pharmacy 2026;37(13):1746-1750
OBJECTIVE To develop physiologically based pharmacokinetic (PBPK) model for sodium tanshinone Ⅱ A sulfonate (STS), clopidogrel (Clo), and its metabolites, to predict the potential drug-drug interaction (DDI) between STS and Clo during co-administration, and to identify the key factors influencing the predicte d DDI, and provide evidence for rational clinical medication. METHODS Physicochemical and pharmacokinetic parameters of Clo, its metabolites, and STS were retrieved from PubMed, DrugBank, and SwissADME for PBPK model development. The steady-state area under the plasma concentration-time curve (AUC) and maximum concentration ( c max ) of clopidogrel thiol H4 (Clo-AM) were used as indicators to evaluate the DDI between STS and Clo. Single-factor sensitivity analysis was performed to identify key parameters influencing DDI between STS and Clo during co-administration. RESULTS Compared with Clo alone, after 7 days of Clo combined with STS 40 mg, the AUC ratio and c max ratio of Clo-AM were 0.75 and 0.63, respectively. When the dose of STS was increased to 80 mg, the AUC ratio and c max ratio of Clo-AM were 0.62 and 0.56, respectively. Sensitivity analysis indicated that the absolute values of normalized sensitivity coefficients for the lipophilicity of Clo-AM, the inhibition constants of STS for CYP2C19 and CYP3A4, and the hepatic clearance of Clo-AM were 15.19, 11.34, 10.98, 3.08, respectively. These parameters were the highly sensitive parameters in the DDI between STS and Clo during co-administration. CONCLUSIONS The established PBPK model can be used to predict the DDI between STS and Clo during co-administration. Co-administration of STS and Clo may lead to decreased exposure of Clo-AM. The lipophilicity-related parameters of Clo-AM and the inhibition parameters related to CYP3A4 and CYP2C19 are key parameters influencing the prediction of Clo-AM exposure, among which the inhibitory effects of STS on CYP3A4 and CYP2C19 may be an important mechanism mediating the DDI between STS and Clo.
2.Prediction of the drug-drug interaction between sodium tanshinone ⅡA sulfonate and clopidogrel based on the PBPK model
Die ZHANG ; Lichao ZHANG ; Mengru SUN ; Fengdan QIAN
China Pharmacy 2026;37(13):1746-1750
OBJECTIVE To develop physiologically based pharmacokinetic (PBPK) model for sodium tanshinone Ⅱ A sulfonate (STS), clopidogrel (Clo), and its metabolites, to predict the potential drug-drug interaction (DDI) between STS and Clo during co-administration, and to identify the key factors influencing the predicte d DDI, and provide evidence for rational clinical medication. METHODS Physicochemical and pharmacokinetic parameters of Clo, its metabolites, and STS were retrieved from PubMed, DrugBank, and SwissADME for PBPK model development. The steady-state area under the plasma concentration-time curve (AUC) and maximum concentration ( c max ) of clopidogrel thiol H4 (Clo-AM) were used as indicators to evaluate the DDI between STS and Clo. Single-factor sensitivity analysis was performed to identify key parameters influencing DDI between STS and Clo during co-administration. RESULTS Compared with Clo alone, after 7 days of Clo combined with STS 40 mg, the AUC ratio and c max ratio of Clo-AM were 0.75 and 0.63, respectively. When the dose of STS was increased to 80 mg, the AUC ratio and c max ratio of Clo-AM were 0.62 and 0.56, respectively. Sensitivity analysis indicated that the absolute values of normalized sensitivity coefficients for the lipophilicity of Clo-AM, the inhibition constants of STS for CYP2C19 and CYP3A4, and the hepatic clearance of Clo-AM were 15.19, 11.34, 10.98, 3.08, respectively. These parameters were the highly sensitive parameters in the DDI between STS and Clo during co-administration. CONCLUSIONS The established PBPK model can be used to predict the DDI between STS and Clo during co-administration. Co-administration of STS and Clo may lead to decreased exposure of Clo-AM. The lipophilicity-related parameters of Clo-AM and the inhibition parameters related to CYP3A4 and CYP2C19 are key parameters influencing the prediction of Clo-AM exposure, among which the inhibitory effects of STS on CYP3A4 and CYP2C19 may be an important mechanism mediating the DDI between STS and Clo.
3.Clinical and epidemiological characteristics of influenza A (H3N2) cases in Tangshan City in 2023 - 2025
Xiaojing SONG ; Jing SUN ; Lichao MAO ; Xue' ; er BAI ; Xin ZHOU ; Da LI ; Lei QIN
Journal of Public Health and Preventive Medicine 2026;37(5):82-86
Objective To analyze the clinical and epidemiological characteristics of influenza A(H3N2) in Tangshan City, Hebei Province, from 2023 to 2025, and to provide a scientific basis for precise prevention and control of local influenza. Methods The influenza-like cases and influenza outbreak cases in the influenza surveillance sentinel hospitals in Tangshan City from January 2023 to December 2025 were included in this study. The clinical characteristics and epidemic characteristics of H3N2 influenza patients were analyzed by descriptive epidemiological methods and chi-square test. Results A total of 11 567 influenza case samples were tested in the study, with a positive rate of 9.34% (1 080/11 567). Influenza A (H3N2) remained the predominant circulating subtype throughout the study period. January 2023 to February 2023 marked the tailing end of the previous season’s H3N2. Then, a minor peak dominated by H1N1 occurred from March to June, and H3N2 circulated again from October to December, peaking in December. From September 2024 to December 2024, H1N1 and H3N2 circulated concurrently, with H3N2 as the dominant strain, peaking in January of the following year. From March 2025 to September 2025, influenza activity remained at low level, and activity began to rise in October, with H1N1 peaking in November before declining, and H3N2 becoming the dominant strain in December. H3N2 mainly occurred in the 5-14 years old group. Cases in the 0–4-year-old group were primarily characterized by gastrointestinal symptoms, with high fever being common. Cases in the 5–59-year-old group were primarily characterized by systemic and respiratory symptoms, with better clinical outcomes. Cases aged 60 and older exhibited the highest rates of hospitalization, severe illness, and incidence of complications. Conclusion From 2023 to 2025, the influenza virus in Tangshan City, Hebei Province is dominated by influenza A (H3N2). The epidemic is characterized by a peak incidence during autumn and winter, co-circulation with H1N1, and fluctuations during the peak period. It is necessary to pay attention to the clinical management and prevention and control of influenza A (H3N2) in infants and the elderly.
4.TOMM40L promotes proliferation and migration of triple negative breast cancer cells and correlates with poor prognosis
Ke ZHANG ; Jiangning LU ; Lixin SUN ; Long YU ; Lichao SUN ; Yuliang RAN
Basic & Clinical Medicine 2025;45(5):575-582
Objective To explore the clinical significance and to investigate the expression of TOMM40L in the tis-sue of triple-negative breast cancer(TNBC).Methods The expression of TOMM40L in TNBC tissues and normal tissues was analyzed with TCGA and UALCAN databases.Univariate and multivariate Cox regression analysis and Nomogram model were used to evaluate the prognostic value of TOMM40L in TNBC patients.Furthermore,the ex-pression of TOMM40L in breast cancer cell lines was evaluated using Western blot analysis and quantitative real-time PCR.Specific siRNA knockdown was performed to evaluate the migration,and cell proliferation of TOMM40L.The potential signaling pathways of TOMM40L were identified by GO and KEGG and GSEA.Results TOMM40L was highly expressed in the TNBC compared to non-TNBC tumor tissues(P<0.001).TOMM40L levels were en-hanced in TNBC cell lines as compared to other non-TNBC cell lines.CCK-8 and Transwell assay demonstrated that TOMM40L knockdown reduced the proliferation and migration of TNBCcell lines.Functional enrichment analysis showed that TOMM40L was involved in glucose metabolism-related pathways.Conclusions The expression of TOMM40L is increased in TNBC and is correlated with poor prognosis.TOMM40L may promote TNBC migration and proliferation.
5.Safety of high-carbohydrate fluid diet 2 h versus overnight fasting before non-emergency endoscopic retrograde cholangiopancreatography: A single-blind, multicenter, randomized controlled trial
Wenbo MENG ; W. Joseph LEUNG ; Zhenyu WANG ; Qiyong LI ; Leida ZHANG ; Kai ZHANG ; Xuefeng WANG ; Meng WANG ; Qi WANG ; Yingmei SHAO ; Jijun ZHANG ; Ping YUE ; Lei ZHANG ; Kexiang ZHU ; Xiaoliang ZHU ; Hui ZHANG ; Senlin HOU ; Kailin CAI ; Hao SUN ; Ping XUE ; Wei LIU ; Haiping WANG ; Li ZHANG ; Songming DING ; Zhiqing YANG ; Ming ZHANG ; Hao WENG ; Qingyuan WU ; Bendong CHEN ; Tiemin JIANG ; Yingkai WANG ; Lichao ZHANG ; Ke WU ; Xue YANG ; Zilong WEN ; Chun LIU ; Long MIAO ; Zhengfeng WANG ; Jiajia LI ; Xiaowen YAN ; Fangzhao WANG ; Lingen ZHANG ; Mingzhen BAI ; Ningning MI ; Xianzhuo ZHANG ; Wence ZHOU ; Jinqiu YUAN ; Azumi SUZUKI ; Kiyohito TANAKA ; Jiankang LIU ; Ula NUR ; Elisabete WEIDERPASS ; Xun LI
Chinese Medical Journal 2024;137(12):1437-1446
Background::Although overnight fasting is recommended prior to endoscopic retrograde cholangiopancreatography (ERCP), the benefits and safety of high-carbohydrate fluid diet (CFD) intake 2 h before ERCP remain unclear. This study aimed to analyze whether high-CFD intake 2 h before ERCP can be safe and accelerate patients’ recovery.Methods::This prospective, multicenter, randomized controlled trial involved 15 tertiary ERCP centers. A total of 1330 patients were randomized into CFD group ( n = 665) and fasting group ( n = 665). The CFD group received 400 mL of maltodextrin orally 2 h before ERCP, while the control group abstained from food/water overnight (>6 h) before ERCP. All ERCP procedures were performed using deep sedation with intravenous propofol. The investigators were blinded but not the patients. The primary outcomes included postoperative fatigue and abdominal pain score, and the secondary outcomes included complications and changes in metabolic indicators. The outcomes were analyzed according to a modified intention-to-treat principle. Results::The post-ERCP fatigue scores were significantly lower at 4 h (4.1 ± 2.6 vs. 4.8 ± 2.8, t = 4.23, P <0.001) and 20 h (2.4 ± 2.1 vs. 3.4 ± 2.4, t= 7.94, P <0.001) in the CFD group, with least-squares mean differences of 0.48 (95% confidence interval [CI]: 0.26–0.71, P <0.001) and 0.76 (95% CI: 0.57–0.95, P <0.001), respectively. The 4-h pain scores (2.1 ± 1.7 vs. 2.2 ± 1.7, t = 2.60, P = 0.009, with a least-squares mean difference of 0.21 [95% CI: 0.05–0.37]) and positive urine ketone levels (7.7% [39/509] vs. 15.4% [82/533], χ2 = 15.13, P <0.001) were lower in the CFD group. The CFD group had significantly less cholangitis (2.1% [13/634] vs. 4.0% [26/658], χ2 = 3.99, P = 0.046) but not pancreatitis (5.5% [35/634] vs. 6.5% [43/658], χ2 = 0.59, P = 0.444). Subgroup analysis revealed that CFD reduced the incidence of complications in patients with native papilla (odds ratio [OR]: 0.61, 95% CI: 0.39–0.95, P = 0.028) in the multivariable models. Conclusion::Ingesting 400 mL of CFD 2 h before ERCP is safe, with a reduction in post-ERCP fatigue, abdominal pain, and cholangitis during recovery.Trail Registration::ClinicalTrials.gov, No. NCT03075280.
6.Effects of normal mitochondrial transplantation on proliferation, apoptosis and stemness of triple-negative breast cancer cells
Liangliang MA ; Ke ZHANG ; Jiangning LU ; Lixin SUN ; Long YU ; Yuliang RAN ; Lichao SUN
Chinese Journal of Oncology 2024;46(9):878-888
Objectives:To observe the mitochondrial morphology of normal and triple-negative breast cancer cells, extract mitochondria from normal cells, and investigate the effects of mitochondrial transplantation on proliferation, apoptosis, and stemness of triple-negative breast cancer cells.Methods:The morphology of mitochondria was observed by transmission electron microscope. Mitochondria were extracted by mitochondrial extraction kit, mitochondrial protein was identified by western blot, and mitochondrial activity was detected by mitochondrial membrane potential detection kit. MitoTracker Green or MitoTracker Deep Red fluorescent probes were used to label the mitochondria of living cells, and the degree of mitochondria entering LTT cells was observed by confocal laser microscopy at 12, 24, and 96 hours. The effects of mitochondrial transplantation on proliferation, apoptosis, and stemness of breast cancer cells were examined by CCK8, colony formation assay, flow cytometry, and sphere formation assay after 24 hours of mitochondrial transplantation.Results:The mitochondria of normal cells were rod-shaped or elongated, while the mitochondria of triple-negative breast cancer cells were swollen and vacuolated. Western blot results showed that cytochrome c oxidase subunit I (MT-CO1) protein encoded by mitochondria was present in the isolated mitochondria. The content of heat shock protein 60 (HSP60) was higher in mitochondria than that in cytoplasm. The result of the multi-mode microplate reader showed that the content of mitochondrial J-aggregates/monomer was 1.67±0.06, which was significantly higher than 0.35±0.04 of the control group ( P<0.001). Exogenous mitochondria were observed in LTT cells at 12, 24, and 96 hours after mitochondrial transplantation. The results of the CCK8 experiment showed that OD450 of LTT cells was 0.27±0.13 after 48 hours transplantation, which was lower than 0.62±0.36 of the control group ( P=0.023). The OD450 of MDA-MB-468 cells was 0.30±0.03, which was lower than 0.65±0.10 of the control group ( P=0.004). After 120 hours of mitochondrial transplantation, OD450 in both groups was still significantly lower than that in the control group (P<0.01). The number of clones formed by mitochondrial transplantation of LTT cells was 21.33±7.31, which was lower than 35.22±13.59 of the control group ( P=0.016). Flow cytometry showed that the early apoptosis rate of LTT cells was (30.07±2.15)% after 24 hours of mitochondrial transplantation, which was higher than 2.07±1.58 of the control group ( P<0.001). The proportion of early apoptosis in MDA-MB-468 cells was 24.47%±5.22%, which was higher than (7.83±2.06)% in the control group ( P=0.007). In addition, the number of mitochondria transplanted LTT cells into the cell sphere was 46.25±5.40, which was significantly lower than 62.58±6.43 of the control group ( P<0.001). Conclusion:Normal mitochondria can enter triple-negative breast cancer cells by co-culture, inhibit the proliferation and stemness of triple-negative breast cancer cells, and promote the apoptosis of triple-negative breast cancer cells.
7.Effects of normal mitochondrial transplantation on proliferation, apoptosis and stemness of triple-negative breast cancer cells
Liangliang MA ; Ke ZHANG ; Jiangning LU ; Lixin SUN ; Long YU ; Yuliang RAN ; Lichao SUN
Chinese Journal of Oncology 2024;46(9):878-888
Objectives:To observe the mitochondrial morphology of normal and triple-negative breast cancer cells, extract mitochondria from normal cells, and investigate the effects of mitochondrial transplantation on proliferation, apoptosis, and stemness of triple-negative breast cancer cells.Methods:The morphology of mitochondria was observed by transmission electron microscope. Mitochondria were extracted by mitochondrial extraction kit, mitochondrial protein was identified by western blot, and mitochondrial activity was detected by mitochondrial membrane potential detection kit. MitoTracker Green or MitoTracker Deep Red fluorescent probes were used to label the mitochondria of living cells, and the degree of mitochondria entering LTT cells was observed by confocal laser microscopy at 12, 24, and 96 hours. The effects of mitochondrial transplantation on proliferation, apoptosis, and stemness of breast cancer cells were examined by CCK8, colony formation assay, flow cytometry, and sphere formation assay after 24 hours of mitochondrial transplantation.Results:The mitochondria of normal cells were rod-shaped or elongated, while the mitochondria of triple-negative breast cancer cells were swollen and vacuolated. Western blot results showed that cytochrome c oxidase subunit I (MT-CO1) protein encoded by mitochondria was present in the isolated mitochondria. The content of heat shock protein 60 (HSP60) was higher in mitochondria than that in cytoplasm. The result of the multi-mode microplate reader showed that the content of mitochondrial J-aggregates/monomer was 1.67±0.06, which was significantly higher than 0.35±0.04 of the control group ( P<0.001). Exogenous mitochondria were observed in LTT cells at 12, 24, and 96 hours after mitochondrial transplantation. The results of the CCK8 experiment showed that OD450 of LTT cells was 0.27±0.13 after 48 hours transplantation, which was lower than 0.62±0.36 of the control group ( P=0.023). The OD450 of MDA-MB-468 cells was 0.30±0.03, which was lower than 0.65±0.10 of the control group ( P=0.004). After 120 hours of mitochondrial transplantation, OD450 in both groups was still significantly lower than that in the control group (P<0.01). The number of clones formed by mitochondrial transplantation of LTT cells was 21.33±7.31, which was lower than 35.22±13.59 of the control group ( P=0.016). Flow cytometry showed that the early apoptosis rate of LTT cells was (30.07±2.15)% after 24 hours of mitochondrial transplantation, which was higher than 2.07±1.58 of the control group ( P<0.001). The proportion of early apoptosis in MDA-MB-468 cells was 24.47%±5.22%, which was higher than (7.83±2.06)% in the control group ( P=0.007). In addition, the number of mitochondria transplanted LTT cells into the cell sphere was 46.25±5.40, which was significantly lower than 62.58±6.43 of the control group ( P<0.001). Conclusion:Normal mitochondria can enter triple-negative breast cancer cells by co-culture, inhibit the proliferation and stemness of triple-negative breast cancer cells, and promote the apoptosis of triple-negative breast cancer cells.
8.Expert consensus on plasma exchange nursing for severe autoimmune encephalitis
Lichao GONG ; Hong CHANG ; Fang LIU ; Siying TIAN ; Rui SUN
Chinese Journal of Modern Nursing 2024;30(14):1821-1828
Objective:To form an expert consensus on plasma exchange nursing for severe autoimmune encephalitis ( " Consensus" for short) and standardize the practice of plasma exchange nursing for severe autoimmune encephalitis. Methods:After reviewing and summarizing the literature related to plasma exchange of severe autoimmune encephalitis, the relevant nursing evidence was extracted and the draft of Consensus was formed. From September to October 2023, a total of 20 experts were selected to conduct two rounds of expert letter consultation, and then the expert results were analyzed, sort outed and modified to form the final draft of the Consensus. Results:The expert positive coefficient was 100.00% (20/20), the expert judgment basis coefficient was 0.89, the expert familiarity coefficient was 0.85, the expert authority coefficient was 0.87, and the Kendall harmony coefficient was 0.15-0.22 ( P<0.05). The final Consensus included plasma exchange quality control management, preparation and evaluation before plasma exchange, setting and monitoring during plasma exchange, and evaluation and maintenance after plasma exchange. Conclusions:This Consensus is practical and can provide guidance for clinical nursing practice and quality control of plasma exchange in severe autoimmune encephalitis.
9.Resolving the lineage relationship between malignant cells and vascular cells in glioblastomas.
Fangyu WANG ; Xuan LIU ; Shaowen LI ; Chen ZHAO ; Yumei SUN ; Kuan TIAN ; Junbao WANG ; Wei LI ; Lichao XU ; Jing JING ; Juan WANG ; Sylvia M EVANS ; Zhiqiang LI ; Ying LIU ; Yan ZHOU
Protein & Cell 2023;14(2):105-122
Glioblastoma multiforme (GBM), a highly malignant and heterogeneous brain tumor, contains various types of tumor and non-tumor cells. Whether GBM cells can trans-differentiate into non-neural cell types, including mural cells or endothelial cells (ECs), to support tumor growth and invasion remains controversial. Here we generated two genetic GBM models de novo in immunocompetent mouse brains, mimicking essential pathological and molecular features of human GBMs. Lineage-tracing and transplantation studies demonstrated that, although blood vessels in GBM brains underwent drastic remodeling, evidence of trans-differentiation of GBM cells into vascular cells was barely detected. Intriguingly, GBM cells could promiscuously express markers for mural cells during gliomagenesis. Furthermore, single-cell RNA sequencing showed that patterns of copy number variations (CNVs) of mural cells and ECs were distinct from those of GBM cells, indicating discrete origins of GBM cells and vascular components. Importantly, single-cell CNV analysis of human GBM specimens also suggested that GBM cells and vascular cells are likely separate lineages. Rather than expansion owing to trans-differentiation, vascular cell expanded by proliferation during tumorigenesis. Therefore, cross-lineage trans-differentiation of GBM cells is very unlikely to occur during gliomagenesis. Our findings advance understanding of cell lineage dynamics during gliomagenesis, and have implications for targeted treatment of GBMs.
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Humans
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Glioblastoma/pathology*
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Endothelial Cells/pathology*
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DNA Copy Number Variations
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Brain/metabolism*
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Brain Neoplasms/pathology*
10.Preliminary study on the mechanism of dexmedetomidine regulating lncRNA HOTAIR to improve lung injury in septic mice
Jianping YANG ; Yan LI ; Fengning WEI ; Junmei CAO ; Shenglei YIN ; Yibiao WANG ; Lichao SUN ; Xiaoyan ZHANG
Chinese Journal of Emergency Medicine 2023;32(6):768-774
Objective:To investigate the mechanism of dexmetomidine (DEX) in improving lung injury in septic mice.Methods:Male C57BL/6 mice were randomly assigned to the blank group (NC), sham operation group (sham), cecal ligation and puncture group (CLP), and Dex treatment group (CLP+DEX), 36 mice per group. Mice in the CLP group were intraperitoneally injected with 1 mL sterile saline 15 min before CLP, and mice in the CLP + DEX group were intraperitoneally injected with 50 μg/kg DEX 15 min before CLP. The survival rate was recorded within 24 h after CLP. The mice were sacrificed at 0, 3, 6, 12, and 24 h after CLP, and lung tissues were collected. The expression levels of cytokines (IL-6, IL-1β, TNF-α) and lncRNA-HOTAIR in the lung of mice were detected by qPCR. RAW264.7 cell were cultured in vitro, LPS (100 ng/mL) and DEX (1 μ mol/L) were used to establish a cell model for studying the mechanism of Dex, and the expression of cytokines (IL-6, IL-1β, TNF-α) and lncRNA-HOTAIR in RAW264.7 cell model were detected by qPCR. In addition, the effect of lncRNA-HOTAIR on sepsis was explored in vivo and in vitro by knockdown or overexpression of HOTAIR.Results:The survival rate of the CLP+DEX group was higher than that of the CLP group within 24 h after surgery, and the levels of IL-6, IL-1β, and TNF-α in the lungs were significantly lower than those in the CLP group at 6, 12, and 24 h after surgery ( P<0.05). In addition, the level of lncRNA HOTAIR showed that the expression level of lncRNA HOTAIR in the lungs of mice were decreased after Dex treatment, and were decreased 1.1 times ( P<0.05), 4.0 times ( P<0.01) and 3.8 times ( P<0.01) at 6, 12, and 24 h, respectively. Compared with the NC group, knockdown of HOTAIR significantly decreased the levels of IL-1β, IL-6, and TNF-α in septic mice ( P<0.05), and overexpression of HOTAIR significantly increased the levels of IL-1β, IL-6, and TNF-α in septic mice ( P<0.01). Conclusions:DEX can reduce the production of inflammatory factors in the lungs of septic mice and improve the survival rate of septic mice. The mechanism may be related to the inhibition of HOTAIR expression.


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