1.The role of the gut-lung axis in paraquat-induced lung injury in mice
Zhiming HU ; Yali LAN ; Yiru QIN ; Ping WANG ; Na ZHAO
China Occupational Medicine 2025;52(2):135-142
Objective To explore the mechanism of the gut-lung axis in paraquat-induced lung injury in mice, with a focus on analyzing the changes in intestinal gene expression and their potential roles. Methods Specific pathogen-free C57BL/6 wild-type mice were randomly divided into control, low-dose, and high-dose groups, with 10 mice in each group. Mice in the three groups received a single intragastric administration of paraquat solution at doses of 0, 25, or 50 mg/kg body weight. The mice were euthanized on day 21. Lung histopathological changes were assessed, and the differentially expressed genes (DEGs) in the intestinal tissues of mice in these two groups were analyzed through transcriptomics. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses were conducted to explore potential mechanisms of the gut-lung axis in paraquat-induced lung injury and fibrosis. Results Paraquat exposure induced dose-dependent pulmonary injury and fibrosis in the mice. The Ashcroft score of lung tissue was higher in the mice of low-dose group than that in the control group (P<0.05). Both the lung organ coefficient and Ashcroft score of lung tissues in the mice of high-dose group were higher than those in the control group and the low-dose group (all P<0.05). The result of transcriptomic analysis showed 146 DEGs, including 91 upregulated and 55 downregulated genes, in intestinal tissues of mice in the low-dose group, and 57 DEGs, including 47 upregulated and 10 downregulated genes in the high-dose group, compared with the control group. Notably, 19 DEGs were commonly altered in both low- and high-dose groups. The result of GO enrichment analysis showed that the DEGs were primarily involved in biological processes including "immune response", "oxidative stress" and "cell differentiation". The result of KEGG enrichment analyses showed that DEGs were primarily involved in key processes including "oxidative stress response path way", "immune response path way" and "digestion and absorption path way". Conclusion Paraquat exposure alters intestinal gene expression, particularly in genes in biological processes related to immune responses and oxidative stress. These changes may mediate inflammatory signaling via the gut-lung axis and contribute to the development of paraquat-induced pulmonary fibrosis.
2.Effect of Mori Folium-Ginseng Radix et Rhizoma on Glucose and Lipid Metabolism and Mechanism in Mouse Model of Type 2 Diabetes Mellitus
Congyi LIU ; Ning WANG ; Jingjing XU ; Tingting WANG ; Na ZHENG ; Zimeng HUANG ; Lingling QIN ; Lili WU ; Tonghua LIU
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(17):20-28
ObjectiveTo study the effect of the herb pair Mori Folium-Ginseng Radix et Rhizoma (HMG) on glucose and lipid metabolism in the mouse model of type 2 diabetes mellitus and decipher the possible treatment mechanism. MethodsThe db/db mice were chosen as the mouse model of type 2 diabetes mellitus and then treated with HMG at low and high doses (1.56, 3.12 g∙kg-1, respectively) or metformin (0.26 g∙kg-1) by gavage for 6 weeks. The normal group and the model group were treated with double distilled water at the same time according to body weight. The 8-h fasting blood glucose and body weight were measured once a week. The oral glucose tolerance test (OGTT) was conducted at the 6th week of dosing. The mice were sacrificed after the end of dosing. Serum levels of lipids [total cholesterol (TC), triglycerides (TG), high-density lipoprotein cholesterol (HDL), and low-density lipoprotein cholesterol (LDL)], liver function indicators [aspartate aminotransferase (AST) and alanine aminotransferase (ALT)], non-esterified fatty acids (NEFA), glycosylated serum protein (GSP), serum glucose (GLU), fasting insulin (FINS), and renal function indicators [creatinine (Crea) and blood urea nitrogen (BUN)] were measured by enzyme-linked immunosorbent assay. The protein levels of peroxidase proliferator-activating receptor gamma (PPARγ), acetyl coenzyme A carboxylase (ACC), and sterol regulatory element-binding protein-1 (SREBP-1) were determined by Western blot. The pathological changes in the liver and pancreas were examined. ResultsCompared with the normal group, the model group presented increased body weight, elevated levels of blood glucose, TG, TC, AST, ALT, GLU, NEFA, GSP, and HDL-C, up-regulated protein levels of ACC and SREBP-1, and down-regulated protein level of PPARγ (P<0.01). Meanwhile, the model group presented a large amount of lipid droplets and steatosis in the liver, as well as karyopyknosis and lymphocyte infiltration in the pancreas. Compared with the model group, the high- and low-dose HMG groups showed decreased body weight, declined levels of blood glucose, TG, TC, AST, ALT, GLU, NEFA, and GSP, and elevate level of HDL-C (P<0.05, P<0.01). Moreover, the two groups showcased reduced lipid droplets and steatosis in the liver, as well as enlarged islets with clear boundaries and alleviated lymphocyte infiltration and karyopyknosis. Western blot results showed that the high-dose herb pair group demonstrated down-regulated protein levels of ACC and SREBP-1 and up-regulated protein level of PPARγ (P<0.01). ConclusionThe HMG can effectively improve the glucose and lipid metabolism in db/db mice by regulating the expression of PPARγ, SREBP-1, and ACC.
3.Effect of Mori Folium-Ginseng Radix et Rhizoma on Glucose and Lipid Metabolism and Mechanism in Mouse Model of Type 2 Diabetes Mellitus
Congyi LIU ; Ning WANG ; Jingjing XU ; Tingting WANG ; Na ZHENG ; Zimeng HUANG ; Lingling QIN ; Lili WU ; Tonghua LIU
Chinese Journal of Experimental Traditional Medical Formulae 2025;31(17):20-28
ObjectiveTo study the effect of the herb pair Mori Folium-Ginseng Radix et Rhizoma (HMG) on glucose and lipid metabolism in the mouse model of type 2 diabetes mellitus and decipher the possible treatment mechanism. MethodsThe db/db mice were chosen as the mouse model of type 2 diabetes mellitus and then treated with HMG at low and high doses (1.56, 3.12 g∙kg-1, respectively) or metformin (0.26 g∙kg-1) by gavage for 6 weeks. The normal group and the model group were treated with double distilled water at the same time according to body weight. The 8-h fasting blood glucose and body weight were measured once a week. The oral glucose tolerance test (OGTT) was conducted at the 6th week of dosing. The mice were sacrificed after the end of dosing. Serum levels of lipids [total cholesterol (TC), triglycerides (TG), high-density lipoprotein cholesterol (HDL), and low-density lipoprotein cholesterol (LDL)], liver function indicators [aspartate aminotransferase (AST) and alanine aminotransferase (ALT)], non-esterified fatty acids (NEFA), glycosylated serum protein (GSP), serum glucose (GLU), fasting insulin (FINS), and renal function indicators [creatinine (Crea) and blood urea nitrogen (BUN)] were measured by enzyme-linked immunosorbent assay. The protein levels of peroxidase proliferator-activating receptor gamma (PPARγ), acetyl coenzyme A carboxylase (ACC), and sterol regulatory element-binding protein-1 (SREBP-1) were determined by Western blot. The pathological changes in the liver and pancreas were examined. ResultsCompared with the normal group, the model group presented increased body weight, elevated levels of blood glucose, TG, TC, AST, ALT, GLU, NEFA, GSP, and HDL-C, up-regulated protein levels of ACC and SREBP-1, and down-regulated protein level of PPARγ (P<0.01). Meanwhile, the model group presented a large amount of lipid droplets and steatosis in the liver, as well as karyopyknosis and lymphocyte infiltration in the pancreas. Compared with the model group, the high- and low-dose HMG groups showed decreased body weight, declined levels of blood glucose, TG, TC, AST, ALT, GLU, NEFA, and GSP, and elevate level of HDL-C (P<0.05, P<0.01). Moreover, the two groups showcased reduced lipid droplets and steatosis in the liver, as well as enlarged islets with clear boundaries and alleviated lymphocyte infiltration and karyopyknosis. Western blot results showed that the high-dose herb pair group demonstrated down-regulated protein levels of ACC and SREBP-1 and up-regulated protein level of PPARγ (P<0.01). ConclusionThe HMG can effectively improve the glucose and lipid metabolism in db/db mice by regulating the expression of PPARγ, SREBP-1, and ACC.
4.Development of a nomogram-based risk prediction model for chronic obstructive pulmonary disease incidence in community-dwelling population aged 40 years and above in Shanghai
Yixuan ZHANG ; Yiling WU ; Jinxin ZANG ; Xuyan SU ; Xin YIN ; Jing LI ; Wei LUO ; Minjun YU ; Wei WANG ; Qi ZHAO ; Qin WANG ; Genming ZHAO ; Yonggen JIANG ; Na WANG
Shanghai Journal of Preventive Medicine 2025;37(8):669-675
ObjectiveTo develop a nomogram-based risk prediction model for chronic obstructive pulmonary disease (COPD) incidence among the community-dwelling population aged 40 years old and above, so as to provide targeted references for the screening and prevention of COPD. MethodsBased on a natural population cohort in suburban Shanghai, a total of 3 381 randomly selected participants aged ≥40 years underwent pulmonary function tests between July and October 2021. Cox stepwise regression analysis was used to develop overall and gender-specific risk prediction models, along with the construction of corresponding risk nomograms. Model predictive performance was evaluated using the C-indice, area under the curve (AUC) values, and Brier score. Stability was assessed through 10-fold cross-validation and sensitivity analysis. ResultsA total of 3 019 participants were included, with a median follow-up duration of 4.6 years. The COPD incidence density was 17.22 per 1 000 person-years, significantly higher in males (32.04/1 000 person-years) than that in females (7.38/1 000 person-years) (P<0.001). The overall risk prediction model included the variables such as gender, age, education level, BMI, smoking, passive smoking, and respiratory comorbidities. The male-specific model incorporated the variables such as age, BMI, respiratory comorbidities, and smoking, while the female-specific model included age, marital status, respiratory comorbidities, and pulmonary tuberculosis history. The C-indices for the overall, male-specific, and female-specific models were 0.829, 0.749, and 0.807, respectively. The 5-year AUC values were 0.785, 0.658, and 0.811, with Brier scores of 0.103, 0.176, and 0.059, respectively. Both 10-fold cross-validated C-indices and sensitivity analysis (excluding participants with a follow-up duration of <6 months) yielded C-indices were above 0.740. ConclusionThis study developed concise and practical overall and gender-specific COPD risk prediction models and corresponding nomograms. The models demonstrated robust performance in predicting COPD incidence, providing a valuable reference for identifying high-risk populations and formulating targeted screening and personalized management strategies.
5.Epidemiological characteristics and spatio-temporal clustering of pulmonary tuberculosis in Huangpu District from 2009 to 2023
LING Hong ; WANG Na ; SONG Qin ; XU Hao
Journal of Preventive Medicine 2025;37(9):937-940
Objective:
To analyze the epidemiological characteristics and spatial-temporal clustering characteristics of pulmonary tuberculosis in Huangpu District, Shanghai Municipality from 2009 to 2023, so as to provide the evidence for formulating targeted pulmonary tuberculosis prevention and control strategies.
Methods:
Data of registered pulmonary tuberculosis cases in Huangpu District from 2009 to 2023, including gender, age, occupation, and pathogenetic test results, were collected from the Tuberculosis Management Information System of the China Disease Prevention and Control Information System. The registered incidence was calculated, and the trend was analyzed using the annual percent change (APC) and average annual percent change (AAPC). Spatial distribution pattern was analyzed using kernel density estimation and the average nearest neighbor methods. The temporal-spatial clustering characteristics of pulmonary tuberculosis were identified using the spatio-temporal scan analysis.
Results:
A total of 2 726 pulmonary tuberculosis cases were registered in Huangpu District from 2009 to 2023. The registered incidence decreased from 31.20/100 000 in 2009 to 15.06/100 000 in 2023 (AAPC=-6.156%, P<0.05). A sharp declining trend was particularly observed from 2017 to 2023 (APC=-11.355%, P<0.05). Among them, 1 239 were pathogen-positive, and the pathogen positivity rate increased from 40.80% in 2009 to 71.05% in 2023 (P<0.05). There were 1 906 male cases and 820 female cases, with a male-to-female ratio of 2.32∶1. There were 798 cases aged 45-<60 years and 981 retirees, accounting for 29.27% and 35.99%, respectively. Temporal-spatial clustering analysis revealed spatial clustering areas during both 2009-2016 and 2017-2023 (both P<0.05). The clustering area for 2009-2016 was located in the central-eastern part of Huangpu District, with the clustering time in 2012. The clustering area for 2017-2023 was in the southwestern part, with the clustering time in 2017.
Conclusions
The registered incidence of pulmonary tuberculosis in Huangpu District showed a downward trend from 2009 to 2023. The spatial clustering areas were identified in the central-eastern part in Huangpu District in 2012 and the southwestern part in 2017.
6.Identification of novel biomarkers for varicocele using iTRAQ LC-MS/MS technology.
Xianfeng LU ; Na LI ; Lufang LI ; Yongai WU ; Xuefeng LYU ; Yingli CAO ; Jianrong LIU ; Qin QIN
Chinese Medical Journal 2024;137(3):371-372
7.Effects of Anchusa italica Retz.on cough variant asthma and the level of TLR4/NF-κB signaling pathway
Liang CHEN ; Xiao-Qin XU ; Wen-Hui GUO ; HAJIAKBER·Aisa ; Di-Na MAI
The Chinese Journal of Clinical Pharmacology 2024;40(5):698-702
Objective To investigate the effect of Anchusa italica Retz.extract on cough variant asthma(CVA)and its mechanism of action.Methods Forty-eight SD rats of each eight were randomly divided into blank group(equal amount of saline),model group(equal amount of saline),control group(250 mg·kg-1 prednisone acetate)and experimental-A1,-A5,-A7 groups(61.1 mg·kg-1 Anchusa italica Retz.extract A1,48.8 mg·kg-1 Anchusa italica Retz.extract A5,201.8 mg·kg-1 Anchusa italica Retz.extract A7),continuous gavage for 28 d;except for the blank group,the other groups were made with ovalbumin-complete Freund's adjuvant.The number of cough times of each rat was observed.The changes in the expression of Toll-like receptor 4(TLR4),myeloid differentiation factor(MyD88)and nuclear factor κB(NF-κB)proteins were observed in the lung tissue.Results The cough times in the blank group,model group,control group and experimental-A1,-A5,-A7 groups were 1.10±0.22,8.33±1.24,3.08±0.65,3.31±0.99,3.08±1.02 and 3.06±0.68;the relative expression levels of TLR4 protein were 0.61±0.01,0.84±0.04,0.66±0.02,0.64±0.04,0.64±0.03 and 0.69±0.02;the relative expression levels of MyD88 protein were 0.54±0.08,0.86±0.06,0.71±0.06,0.65±0.05,0.64±0.08 and 0.70±0.06;the relative expression levels of p-NF-κB protein were 0.48±0.11,0.94±0.06,0.80±0.08,0.68±0.04,0.68±0.06 and 0.78±0.09.Compared with the experimental-A1,-A5,-A7 groups,control group,normal group,the differences were statistically significant in the model group(all P<0.05).Conclusion The extract of Anchusa Italica Retz.can inhibit the symptoms of CVA rats,and the mechanism may be related to the inhibition of TLR4/MyD88/NF-κB signaling pathway.
8.Resarch of resveratrol improving interstitial lung disease in rats through TGF-β1/Smad3 signaling transduction pathway
Xiao-Jing QI ; Na ZHANG ; Yue-Qin ZHANG
The Chinese Journal of Clinical Pharmacology 2024;40(12):1789-1793
Objective To investigate the mechanism of resveratrol(RSV)in interstitial lung disease(ILD).Methods The ILD model rats were established by administering a single intratracheal instillation of bleomycin.The ILD model rats were randomly divided into model group and experimental-L,-M,-H groups,with 12 rats each group,then chose another 12 normal rats as blank group.The experimental-L,-M,-H groups received 25,50 and 100 mg·kg-1 RSV by gavage;blank and model groups were given an equal volume of 0.9%NaCl by gavage.Five groups were treated for 14 days with once a day.The levels of pro-inflammatory factors,superoxide dismutase(SOD)in lung tissue were detected by enzyme linked immunosorbent assay.The expression levels of EMT-related proteins and transforming growth factor-β1(TGF-β1),SMAD family member 3(Smad3)were detected by Western blot.Results The levels of interleukin-1 β in the experimental-M,-H groups,model group and blank group were(7.32±0.33),(5.07±0.39),(11.28±0.72)and(3.78±0.12)pg·mL-1;the levels of SOD were(4.73±0.06),(6.55±0.15),(1.21±0.12)and(8.27±0.56)pg·mL-1;the relative expression levels of TGF-β1 protein were 0.49±0.06,0.34±0.04,0.78±0.08 and 0.11±0.02;the relative expression levels of Smad3 protein were 0.44±0.07,0.19±0.03,0.93±0.08 and 0.07±0.01,respectively.The differences of above indexes were statistically significant between the model group and the experimental-M,-H groups(all P<0.05).Conclusion RSV can protect against ILD rats by inhibiting EMT and downregulating the TGF-β1/Smad3 signaling pathway.
9.Serum metabolomics study in patients with occupational chronic lead poisoning
Bingchen LIU ; Jin XU ; Yao SU ; Wei WANG ; Hong QIN ; Na SUN ; Chunping LI
China Occupational Medicine 2024;51(5):496-504
Objective To investigate the changes of serum metabolites in patients with occupational chronic lead poisoning using non-targeted metabolomics, and to screen differential metabolic pathways. Methods A total of 14 patients with occupational chronic lead poisoning were selected as the poisoning group, and 14 healthy people without occupational hazard exposure history were selected as the control group using the judgment sampling method. Serum of the individuals from the two groups was collected. Non-targeted metabolomics technology based on ultra high performance liquid chromatography-tandem mass spectrometry was used to detect serum metabolite levels in the two groups. Differential metabolites (DMs) were screened by the principal component analysis, partial least squares discriminant analysis and orthogonal partial least squares discriminant analysis, and related metabolic pathways were explored. Results The blood lead level in the poisoning group was higher than that in the control group (median: 359.59 vs 5.04 μg/L, P<0.01). There were significant differences in serum metabolites between the poisoning group and control group. After the combination of results from the positive and negative ion patterns, a total of 89 DMs were screened in serum of patients in the poisoning group, including 50 upregulated and 39 downregulated metabolites compared with the control group. The serum DMs of poisoning group were mainly enriched in arginine biosynthesis, ABC transporter, purine metabolism, choline metabolism in malignant tumor, glycerophospholipid metabolism and ether lipid metabolism compared with the control group (all P<0.05). Conclusion Abnormal changes of serum metabolic profile occurred in patients with occupational chronic lead poisoning. The metabolic pathways such as arginine biosynthesis, ABC transporter, purine metabolism, choline metabolism, glycerophospholipid metabolism and ether lipid metabolism may be involved in the occurrence and development of lead poisoning.
10.A new phenylethanol glycoside from Leonurus japonicus
Na ZOU ; Juan LIU ; Chun-wang MENG ; Juan-ru LIU ; Qin-mei ZHOU ; Cheng PENG ; Liang XIONG
Acta Pharmaceutica Sinica 2024;59(8):2300-2304
The column chromatography and semi-preparative liquid phase chromatography with several chromatographic packing materials, including macroporous adsorbent resin, silica gel, ODS, and Sephadex LH-20, were used for the separation and purification of


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