1.Traditional Chinese Medicine Treats Esophageal Cancer via PI3K/Akt Signaling Pathway: A Review
Wei GUO ; Chen PENG ; Yikun WANG ; Zixuan YU ; Jintao LIU ; Jing DING ; Yijing LI ; Hongxin SUN
Chinese Journal of Experimental Traditional Medical Formulae 2026;32(5):302-311
Esophageal cancer (EC) is a highly prevalent malignant tumor in China. The phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt) signaling pathway, as one of the key oncogenic pathways, can promote the cell cycle progression, proliferation, migration, and invasion, induce chemoresistance, and inhibit apoptosis and autophagy of EC cells. Traditional Chinese medicine (TCM), with the advantages of targeting multiple points with multiple components to delay cancer progression, can target the PI3K/Akt signaling pathway for EC treatment. This article preliminarily discusses the molecular mechanism and role of the PI3K/Akt signaling pathway in EC and elaborates on the specific targets and efficacy of TCM in treating EC through intervention in the PI3K/Akt signaling pathway in the past five years. TCM materials and extracts inhibiting the PI3K/Akt signaling pathway in EC include Borneolum, spore powder of Ganoderma lucidum without spore coat, extract of Celastrus orbiculatus, root extract of Taraxacum, and Bruceae Fructus oil emulsion. TCM active ingredients exerting the effect include flavonoids, terpenoids, saponins, phenols, polysaccharides, alkaloids, and other compounds. TCM compound prescriptions with such effect include Qige San, Huqi San, Xuanfu Daizhetang, Tongyoutang and its decomposed prescriptions, Liujunzi Tang, and Xishenzhi Formula. In addition, TCM injections such as Compound Kushen Injection and Kang'ai injection also inhibit the PI3K/Akt signaling pathway in EC. This paper summarizes the role of the PI3K/Akt signaling pathway in EC and the TCM interventions, aiming to provide reference for the research and clinical application of new drugs for EC.
2.A prospective cohort study on glycolipid metabolic abnormalities and incident colorectal cancer risk
Qiaoyi XU ; Ruilin CHEN ; Yijing XIE ; Shuo WANG ; Renjia ZHAO ; Siqi TANG ; Linyao LU ; Huangbo YUAN ; Tiejun ZHANG ; Yanfeng JIANG ; Kelin XU ; Zhenqiu LIU ; Xingdong CHEN ; Chen SUO
Shanghai Journal of Preventive Medicine 2026;38(6):409-417
ObjectiveTo investigate the associations of multiple glycolipid metabolic indicators and their cumulative abnormality burden with incident colorectal cancer risk in a general population-based prospective cohort, and to examine the mediating role of glycolipid metabolic abnormalities in the relationships between smoking, alcohol consumption, physical activity, and colorectal cancer incidence. MethodsA total of 17 897 eligible participants recruited from the Taizhou Cohort between 2011 and 2014 were included. Cox proportional hazards regression models were used to assess the associations of conventional and derived glycolipid indicators, as well as a glycolipid abnormality index constructed from total cholesterol, triglycerides, high-density lipoprotein cholesterol, low-density lipoprotein cholesterol, fasting plasma glucose, and insulin, with incident colorectal cancer risk. Restricted cubic spline models were applied to evaluate dose-response relationships for major indicators. Receiver operating characteristic curves were generated to compare predictive performance across indicators. Mediation analyses were conducted to assess the mediating effects of the glycolipid abnormality index on the associations of smoking, alcohol consumption, and physical activity with colorectal cancer incidence. ResultsDuring a median follow-up of 11.2 years, 102 incident colorectal cancer cases were identified, with an incidence density of 51.2 per 100 000 person-years. After adjustment for potential confounders, Cox proportional hazards regression analyses showed that decreased high-density lipoprotein cholesterol was associated with a 1.74-fold higher risk of colorectal cancer (HR=1.74, 95%CI: 1.03‒2.95), elevated low-density lipoprotein cholesterol was associated with a 1.78-fold higher risk (HR=1.78, 95%CI: 1.05‒3.02), and abnormal fasting plasma glucose was associated with a 1.86-fold higher risk (HR=1.86, 95%CI: 1.15‒3.02). Triglycerides and fasting plasma glucose showed an approximately linear increasing association with colorectal cancer risk in multivariable restricted cubic spline models. The glycolipid abnormality index showed a clear gradient association with colorectal cancer risk; participants with three or more abnormal indicators had a 3.08-fold higher risk than those without abnormalities (HR=3.08, 95%CI: 1.60‒5.92). The area under the curve was 0.795, higher than that of individual glycolipid indicators and other combined indices, and gender-stratified analyses showed generally consistent patterns. Glycolipid metabolic abnormalities partially mediated the associations of smoking, alcohol consumption, and physical activity with colorectal cancer incidence, with mediation proportions of 8.33%, 9.45%, and 9.04%, respectively. ConclusionGlycolipid metabolic abnormalities are associated with an increased risk of incident colorectal cancer. The glycolipid abnormality index shows an increasing relationship with colorectal cancer risk and demonstrates better discrimination, and it partially mediates the associations of smoking, alcohol consumption, and physical activity with colorectal cancer incidence in the overall population.
3.Multimodal Imaging Evaluation of Changes in Metabolic Microenvironment in the Brain of Neonatal Rats After Cerebral Hypoxia and Ischemia of Prematurity
Xiaozu ZHANG ; Haimo ZHANG ; Yijing WANG ; Tao JU ; Youcheng QIN ; Chang LIU ; Miao YU ; Chunlei ZHANG ; Xiaoli WANG
Chinese Journal of Medical Imaging 2025;33(5):501-506
Purpose Based on multimodal imaging combined with a variety of histological techniques,to visually evaluate the changes of rats brain metabolic microenvironment after cerebral hypoxia and ischemia of prematurity,and to discuss the effects of abnormal lactate metabolism in the brain on oligodendrocyte precursor cells,so as to provide a basis for the early diagnosis and treatment of premature white matter injury(PWMI).Materials and Methods A total of 36 SPF-grade healthy 3-day-old Sprague-Dawley neonatal rats were randomly assigned to the sham surgery(Sham)group and the model(PWMI)group using a random number table method,with 18 rats in each group.A neonatal rat PWMI model was established by hypoxia-ischemia method.Twenty-four hours after modeling,laser speckle imaging was used to monitor cerebral blood flow and blood oxygen changes.Multimodal imaging was used to observe the changes in brain tissue microstructure and metabolism after PWMI.HE staining was used to observe the morphological changes of nerve cells in the white matter of the brain.Enzyme-linked immunosorbent assay was used to detect the changes of lactate content and lactate dehydrogenase activity in the white matter region of the brain after PWMI in neonatal rats.PDGFR-α immunofluorescence staining was used to observe the dynamic changes of the number of oligodendrocyte precursor cells in the subependymal zone after PWMI in neonatal rats.Results Twenty-four hours after modeling,the multimodal imaging results showed that the T2WI and diffusion-weighted imaging on the injured side of the PWMI group showed high intensity,and the relative cerebral blood flow,relative oxygen saturation,relative apparent diffusion coefficient and amide proton transfer(APT)Lorentzian difference value were lower than those in the Sham group(t=29.466,23.522,59.006,54.778,10.263,all P<0.001),and the lactate content was higher than that in the Sham group(t=-7.521,P<0.001).The results of HE staining and enzyme-linked immunosorbent assay showed that the arrangement of nerve cells in the white matter area of the injured side of the brain in the PWMI group was loose and disordered.The lactate content and lactate dehydrogenase activity were higher than those in the Sham group(t=-6.079,-10.548,both P<0.001).The results of immunofluorescence staining showed that the number of PDGFR-α+cells in the subependymal zone of the damaged side of the PWMI group was higher than that of the Sham group at 24 hours after modeling,and lower than that in the Sham group at 11 days after modeling(t=-8.386,6.676,both P<0.001).The correlation analysis between the lactate content and APT Lorentzian difference value in the brain and the number of oligodendrocyte precursor cells in the brain 11 days after modeling showed that the number of oligodendrocyte precursor cells in the subependymal zone was positively correlated with the APT Lorentzian difference value(r=0.821,P=0.001 1),and negatively correlated with the lactate content in the brain(r=-0.880,P=0.000 2).Conclusion Multimodal imaging can monitor the early brain metabolism changes of PWMI in neonatal rats,especially the changes of lactate,and provide a visual basis for their early diagnosis.The level of lactate in the brain increases after cerebral hypoxia and ischemia in prematurity,and oligodendrocyte precursor cells increase transiently and then decrease,resulting in PWMI.
4.Feasibility study on diagnosis of pulmonary embolism using deep learning reconstruction algorithm in ultra-low radiation dose CT pulmonary angiography
Jinjuan LU ; Leilei SHEN ; Zhenghong BI ; Chun ZHOU ; Yijing GUO ; Weijian XU ; Xiaodan YE ; Mengsu ZENG ; Mingliang WANG
Chinese Journal of Radiology 2025;59(8):886-893
Objective:To investigate the feasibility of ultra-low dose (ULD) CT pulmonary angiography (CTPA) combined with deep learning reconstruction (DLR) in the diagnosis of pulmonary embolism (PE).Methods:This cross-sectional study prospectively enrolled 100 patients with suspected PE who underwent CTPA examination in Zhongshan Hospital Fudan University, and Shanghai Geriatric Medical Center from April to July 2024, and were randomly divided into the routine dose (RD) group and ULD group according to block randomization. Effective dose (ED) were calculated. The noise index of RD group and ULD group was set to 10 and 20, respectively. Other scanning parameters and contrast agent injection protocol were the same. The CT images of RD group were reconstructed using hybrid iterative reconstruction (HIR), while ULD images were reconstructed with HIR and DLR (ULD-HIR subgroup and ULD-DLR subgroup). The image quality of the three groups of images was subjectively evaluated (overall image noise, pulmonary artery display) and objectively evaluated [signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR) of the images] respectively. Finally, the diagnostic results of PE by the expert committee composed of three chief physicians were taken as the gold standard, and one physician with lower qualifications independently evaluated the diagnostic rate of PE in the three groups of images. Objective image quality parameters across the three groups were compared using ANOVA, with LSD post hoc test was used for multiple comparisons. Subjective scores among the three groups were analyzed using the Kruskal-Wallis H test, with Bonferroni corrected pairwise post hoc test was applied for multiple pairwise comparisons. Results:The ED in the RD group and ULD group were (2.7±0.5) mSv and (0.7±0.2) mSv, respectively, and the differences were statistically significant ( t=26.42, P<0.001). The overall differences in CT values of pulmonary arteries at all levels in the images of the RD group, the ULD-HIR subgroup, and the ULD-DLR subgroup were not statistically significant ( P>0.05).The RD group, ULD-HIR subgroup and ULD-DLR subgroup overall differences in SNR and CNR at all levels pulmonary arteries were statistically significant ( P<0.001), in which except for the differences in CNR and SNR values of the left pulmonary arterial trunk in the RD group and the ULD-HIR subgroup, and SNR values of basal segment pulmonary artery of the lower lobe of the left lung, which were not statistically significant ( P>0.05), the differences of the rest of the indexes in the pairwise comparisons between the groups were statistically significant ( P<0.05). The overall differences in the subjective scores of image pulmonary vascular display and image noise in the RD group, ULD-HIR subgroup and ULD-DLR subgroup were statistically significant ( P<0.001), except that the differences in the subjective scores of image pulmonary vascular display in the ULD-DLR subgroup were not statistically significant when compared with that of the RD group ( P>0.05) and that of the rest of the metrics in the between-groups two-by-two comparisons were all statistically significant ( P<0.05). The difference in diagnostic rates of PE in the pulmonary artery trunk, lobe and segmental levels in the images of the RD group, ULD-HIR subgroup and ULD-DLR subgroup was not statistically significant ( P>0.05). Conclusions:DLR can significantly reduce the radiation dose of CTPA examination. Even at ultra-low radiation dose, its image quality is still better than HIR reconstruction at conventional doses and preserve diagnostic accuracy of PE at the lobe level and segment level.
5.Practice and reflection on performance management in a tertiary children's hospital:taking a tertiary children's hospital in wuxi city as an example
Yijing PENG ; Zhen TANG ; Changlin WANG ; Chengming XU ; Yu LI
Modern Hospital 2025;25(3):413-416
Objective In order to strengthen the connotation construction of hospitals,promote high-quality develop-ment,improve the quality of medical services,improve operational efficiency,and explore and practice the performance manage-ment mode in combination with the characteristics of the hospital's own development.Methods Take a tertiary children's spe-cialty hospital in Wuxi as an example,optimize the internal performance appraisal management system of the hospital,and con-duct dynamic monitoring and management of the whole appraisal process.Results The sample hospital constructed a multifacet-ed performance management system,and the performance appraisal results of the national tertiary public hospital in 2022 were significantly improved,and the various appraisal indexes,such as the percentage of fourth-level surgery,the intensity of antimi-crobial drug use,the value of CMI,the satisfaction degree of the medical staff,and the satisfaction degree of the outpatients,were kept optimized.Conclusion The continuous optimization of the performance management model has improved the hospital's level of refined management,the efficiency of collaboration between departments,the efficiency of resource allocation,and the efficiency of economic operation,stimulated the work motivation of medical staff,and improved the quality of medical services.
6.Practice and reflection on performance management in a tertiary children's hospital:taking a tertiary children's hospital in wuxi city as an example
Yijing PENG ; Zhen TANG ; Changlin WANG ; Chengming XU ; Yu LI
Modern Hospital 2025;25(3):413-416
Objective In order to strengthen the connotation construction of hospitals,promote high-quality develop-ment,improve the quality of medical services,improve operational efficiency,and explore and practice the performance manage-ment mode in combination with the characteristics of the hospital's own development.Methods Take a tertiary children's spe-cialty hospital in Wuxi as an example,optimize the internal performance appraisal management system of the hospital,and con-duct dynamic monitoring and management of the whole appraisal process.Results The sample hospital constructed a multifacet-ed performance management system,and the performance appraisal results of the national tertiary public hospital in 2022 were significantly improved,and the various appraisal indexes,such as the percentage of fourth-level surgery,the intensity of antimi-crobial drug use,the value of CMI,the satisfaction degree of the medical staff,and the satisfaction degree of the outpatients,were kept optimized.Conclusion The continuous optimization of the performance management model has improved the hospital's level of refined management,the efficiency of collaboration between departments,the efficiency of resource allocation,and the efficiency of economic operation,stimulated the work motivation of medical staff,and improved the quality of medical services.
7.A case of adult-type Sifrim-Hitz-Weiss syndrome
Yuchen WU ; Fangyuan QIAN ; Shiyao ZHANG ; Hui XU ; Xiaojin WEI ; Yuhan XU ; Caiyan WANG ; Ziyue DONG ; Jiale JI ; Yijing GUO
Chinese Journal of Nervous and Mental Diseases 2025;51(1):45-47
A case of Sifrim-Hitz-Weiss syndrome(Sifrim-Hitz-Weiss syndrome,SIHIWES)is presented.The patient was a 35-year-old male with cryptorchidism,growth retardation,skeletal malformations,muscular atrophy,a wide forehead,special facial features like square face,small low-set and cup-shaped ears since birth.Whole-exon sequencing identified a heterozygous mutation(NM_001273:c.3047A>G(chr12-6701125)(p.K1016R))in CHD4 gene.The clinical significance of this mutation is currently unknown,and has not been previously reported.In light of the patient's symptoms,the case was diagnosed as Sifrim-Hitz-Weiss syndrome.This case represents the first instance of Sifrim-Hitz-Weiss syndrome in an adult patient in China.
8.Baicalin alleviates lipopolysaccharide-induced myocardial cell injury by down-regulating miR-221 and its mechanism
Yijing JIN ; Kandong LI ; Zhihui ZHAN ; Yong WANG
Chinese Journal of Immunology 2025;41(7):1688-1694
Objective:To explore the effects of microRNA-221(miR-221)on inflammation and fibrosis induced by lipopoly-saccharide(LPS)in rat cardiomyocytes and the regulatory role of phosphatidylinositol 3-kinase(PI3K)/seronine/threonine protein kinase(AKT)signaling pathway.Methods:Cultured rat myocardial H9C2 cells in vitro,they were divided into control group(no inter-vention),LPS group(10 μg/ml LPS),experimental group(10 μg/ml LPS+10,20,40,80 μmol/L baicalin),mimics NC group(10 μg/ml LPS+mimics NC transfection),miR-221 mimics group(10 μg/ml LPS+transfection miR-221 mimics),inhibitor NC group(10 μg/ml LPS+transfection inhibitor NC),miR-221 inhibitor group(10 μg/ml LPS+transfection miR-221 inhibitor),10+miR-221 mimics group(10 μg/ml LPS+10 μmol/L baicalin+transfection miR-221 mimics)and 10+miR-221 inhibitor group(10 μg/ml LPS+10 μmol/L baicalin+transfection miR-221 inhibitor)were treated for 24 h.Real-time quantitative fluorescence PCR(RT-qPCR),ELISA,CCK-8,5-acetyne-2'-deoxyuracil nucleoside(EdU)and Transwell chamber methods were used to determine the expression level of miR-221,the expression levels of inflammatory factors,cell viability,cell proliferation and migration ability,Western blot was used to determine the expression levels of EMT-related proteins[E-cadherin,N-cadherin,Vimentin,fibronectin(FN)]and PI3K/AKT pathway related proteins.Results:Cell viability increased in LPS+10 group(P<0.05),so LPS+10 group was selected for follow-up experiment.The results of miR-221 level showed that miR-221 mimics group was higher than mimics NC group(P<0.05),miR-221 inhibitor group was lower than inhibitor NC group(P<0.05).Transfection of miR-221mimics group and miR-221 inhibitor group was successful.Compared with control group,cell proliferation rate and E-cadherin protein level in LPS group were decreased(P<0.05).The expression level of miR-221,cell migration number,IL-6 and TNF-α levels,and the protein levels of p-PI3K,p-AKT,N-cadherin,FN and Vimentin were increased(P<0.05).Compared with LPS group,LPS+10 group significantly reversed the changes of the above indexes(P<0.05).Compared with LPS+10 group,10+miR-221 mimics group reduced the above effect of baicalin in LPS-induced cells(P<0.05).However,miR-221 inhibitor of 10+miR-221 inhibitor group enhanced the above effect of baicalin in LPS-induced cells(P<0.05).Conclusion:Baicalin can inhibit the effects of LPS-induced myocyte H9C2 migration,inflammation and fibrosis and promote their proliferation by down-regulating the expression of miR-221,and its mechanism may be related to the inhibi-tion of PI3K/AKT signaling pathway.
9.Effects of changes in disease and injury spectrum on the health-adjusted life expectancy of permanent residents aged 55 and above in Shenzhen City from 2016 to 2030
Junyan XI ; Yijing WANG ; Yingbin FU ; Xiaoheng LI ; Jianjun BAI ; Yining XIANG ; Xiao LIN ; Jing GU ; Yuantao HAO ; Gang LIU
Chinese Journal of Preventive Medicine 2025;59(10):1640-1647
Objective:To analyze the effects of the disease and injury spectrum on health-adjusted life expectancy (HALE) among permanent residents aged 55 and above in Shenzhen from 2016 to 2030.Methods:Based on the mortality surveillance data and the permanent resident population data in Shenzhen from 2016 to 2022, the Sullivan method was used to calculate the HALE during 2016—2022. The Bayesian age-period-cohort model and the grey system model were used to predict the HALE during 2023—2030. The HALE changes in the two periods were decomposed into the contributions of 20 categories of diseases and injuries, respectively.Results:From 2016 to 2022, the HALE increased from 31.41 years (95% CI: 30.50-32.32) to 33.57 years (95% CI: 32.47-34.67). During this period, the mortality effect of neurological disorders slowed the increase of HALE, with a reduction of 0.27 years. By 2030, it is anticipated that the HALE will reach 36.40 years (95% CI: 34.78-38.01). This is expected to be influenced by the mortality effects of nutritional deficiencies (-0.40 years) and mental disorders (-0.29 years), as well as the disability effects of musculoskeletal disorders (-0.66 years), skin and subcutaneous diseases (-0.21 years) and nutritional deficiencies (-0.13 years). Conclusion:The HALE of permanent residents aged 55 years and above in Shenzhen demonstrated an increasing trend over time. Greater attention should be paid to the adverse effects of neurological disorders, nutritional deficiencies, mental disorders, musculoskeletal disorders, and skin and subcutaneous diseases on the continuous increase of HALE in this population.
10.Optimization Strategy and Practice of Traditional Chinese Medicine Compound and Its Component Compatibility
Zhihao WANG ; Wenjing ZHOU ; Chenghao FEI ; Yunlu LIU ; Yijing ZHANG ; Yue ZHAO ; Lan WANG ; Liang FENG ; Zhiyong LI
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(1):299-310
Prescription optimization is a crucial aspect in the study of traditional Chinese medicine (TCM) compounds. In recent years, the introduction of mathematical methods, data mining techniques, and artificial neural networks has provided new tools for elucidating the compatibility rules of TCM compounds. The study of TCM compounds involves numerous variables, including the proportions of different herbs, the specific extraction parts of each ingredient, and the interactions among multiple components. These factors together create a complex nonlinear dose-effect relationship. In this context, it is essential to identify methods that suit the characteristics of TCM compounds and can leverage their advantages for effective application in new drug development. This paper provided a comprehensive review of the cutting-edge optimization experimental design methods applied in recent studies of TCM compound compatibilities. The key technical issues, such as the optimization of source material selection, dosage optimization of compatible herbs, and multi-objective optimization indicators, were discussed. Furthermore, the evaluation methods for component effects were summarized during the optimization process, so as to provide scientific and practical foundations for innovative research in TCM and the development of new drugs based on TCM compounds.

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