1.Effect and mechanism of Bufei Decoction on improving Klebsiella pneumoniae pneumonia in rats by regulating IL-17 signaling pathway.
Li-Na HUANG ; Zheng-Ying QIU ; Xiang-Yi PAN ; Chen LIU ; Si-Fan LI ; Shao-Guang GE ; Xiong-Wei SHI ; Hao CAO ; Rui-Hua XIN ; Fang-di HU
China Journal of Chinese Materia Medica 2025;50(11):3097-3107
Based on the interleukin-17(IL-17) signaling pathway, this study explores the effect and mechanism of Bufei Decoction on Klebsiella pneumoniae pneumonia in rats. SD rats were randomly divided into the control group, model group, Bufei Decoction low-dose group(6.68 g·kg~(-1)·d~(-1)), Bufei Decoction high-dose group(13.36 g·kg~(-1)·d~(-1)), and dexamethasone group(1.04 mg·kg~(-1)·d~(-1)), with 10 rats in each group. A pneumonia model was established by tracheal drip injection of K. pneumoniae. After successful model establishment, the improvement in lung tissue damage was observed following drug administration. Core targets and signaling pathways were screened using transcriptomics techniques. Real-time fluorescence quantitative polymerase chain reaction was used to detect the mRNA expression of core targets interleukin-6(IL-6), interleukin-1β(IL-1β), tumor necrosis factor-α(TNF-α), and chemokine CXC ligand 6(CXCL6). Western blot was used to assess key proteins in the IL-17 signaling pathway, including interleukin-17A(IL-17A), nuclear transcription factor-κB activator 1(Act1), tumor necrosis factor receptor-associated factor 6(TRAF6), and downstream phosphorylated p38 mitogen-activated protein kinase(p-p38 MAPK), and phosphorylated nuclear factor-κB p65(p-NF-κB p65). Apoptosis of lung tissue cells was detected by terminal deoxynucleotidyl transferase-mediated dUTP-biotin nick end labeling(TUNEL). The results showed that, compared with the control group, the model group exhibited significant pathological damage in lung tissue. The mRNA expression of IL-6, IL-1β, TNF-α, and CXCL6, as well as the protein levels of IL-17A, Act1, TRAF6, p-p38 MAPK/p38 MAPK, and p-NF-κB p65/NF-κB p65, were significantly increased, and the number of apoptotic cells was notably higher, indicating successful model establishment. Compared with the model group, both low-and high-dose groups of Bufei Decoction showed reduced pathological damage in lung tissue. The mRNA expression levels of IL-6, IL-1β, TNF-α, and CXCL6, and the protein levels of IL-17A, Act1, TRAF6, p-p38 MAPK/p38 MAPK, and p-NF-κB p65/NF-κB p65, were significantly decreased, with a significant reduction in apoptotic cells in the high-dose group. In conclusion, Bufei Decoction can effectively improve lung tissue damage and reduce inflammation in rats with K. pneumoniae. The mechanism may involve the regulation of the IL-17 signaling pathway and the reduction of apoptosis.
Animals
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Interleukin-17/metabolism*
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Drugs, Chinese Herbal/administration & dosage*
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Rats, Sprague-Dawley
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Signal Transduction/drug effects*
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Rats
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Male
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Klebsiella pneumoniae/physiology*
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Klebsiella Infections/immunology*
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Humans
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Lung/drug effects*
2.Hydrogen sulfide ameliorates hypoxic pulmonary hypertension in rats by inhibiting aerobic glycolysis-pyroptosis.
Yuan CHENG ; Yun-Na TIAN ; Man HUANG ; Jun-Peng XU ; Wen-Jie CAO ; Xu-Guang JIA ; Li-Yi YOU ; Wan-Tie WANG
Acta Physiologica Sinica 2025;77(3):465-471
The present study aimed to explore whether hydrogen sulfide (H2S) improved hypoxic pulmonary hypertension (HPH) in rats by inhibiting aerobic glycolysis-pyroptosis. Male Sprague-Dawley (SD) rats were randomly divided into normal group, normal+NaHS group, hypoxia group, and hypoxia+NaHS group, with 6 rats in each group. The control group rats were placed in a normoxic (21% O2) environment and received daily intraperitoneal injections of an equal volume of normal saline. The normal+NaHS group rats were placed in a normoxic environment and intraperitoneally injected with 14 μmol/kg NaHS daily. The hypoxia group rats were placed in a hypoxia chamber, and the oxygen controller inside the chamber maintained the oxygen concentration at 9% to 10% by controlling the N2 flow rate. An equal volume of normal saline was injected intraperitoneally every day. The hypoxia+NaHS group rats were also placed in an hypoxia chamber and intraperitoneally injected with 14 μmol/kg NaHS daily. After the completion of the four-week modeling, the mean pulmonary artery pressure (mPAP) of each group was measured using right heart catheterization technique, and the right ventricular hypertrophy index (RVHI) was weighed and calculated. HE staining was used to observe pathological changes in lung tissue, Masson staining was used to observe fibrosis of lung tissue, and Western blot was used to detect protein expression levels of hexokinase 2 (HK2), pyruvate dehydrogenase (PDH), pyruvate kinase isozyme type M2 (PKM2), nucleotide-binding oligomerization domain-like receptor protein 3 (NLRP3), GSDMD-N-terminal domain (GSDMD-N), Caspase-1, interleukin-1β (IL-1β) and IL-18 in lung tissue. ELISA was used to detect contents of IL-1β and IL-18 in lung tissue. The results showed that, compared with the normal control group, there were no significant changes in all indexes in the normal+NaHS group, while the hypoxia group exhibited significantly increased mPAP and RVHI, thickened pulmonary vascular wall, narrowed lumen, increased collagen fibers, up-regulated expression levels of aerobic glycolysis-related proteins (HK2 and PKM2), up-regulated expression levels of pyroptosis-related proteins (NLRP3, GSDMD-N, Caspase-1, IL-1β, and IL-18), and increased contents of IL-1β and IL-18. These changes of the above indexes in the hypoxia group were significantly reversed by NaHS. These results suggest that H2S can improve rat HPH by inhibiting aerobic glycolysis-pyroptosis.
Animals
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Rats, Sprague-Dawley
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Male
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Hypertension, Pulmonary/metabolism*
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Glycolysis/drug effects*
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Hydrogen Sulfide/therapeutic use*
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Hypoxia/complications*
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Rats
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Pyroptosis/drug effects*
3.Aldolase A accelerates hepatocarcinogenesis by refactoring c-Jun transcription
Xin YANG ; Guang-Yuan MA ; Xiao-Qiang LI ; Na TANG ; Yang SUN ; Xiao-Wei HAO ; Ke-Han WU ; Yu-Bo WANG ; Wen TIAN ; Xin FAN ; Zezhi LI ; Caixia FENG ; Xu CHAO ; Yu-Fan WANG ; Yao LIU ; Di LI ; Wei CAO
Journal of Pharmaceutical Analysis 2025;15(7):1634-1651
Hepatocellular carcinoma(HCC)expresses abundant glycolytic enzymes and displays comprehensive glucose metabolism reprogramming.Aldolase A(ALDOA)plays a prominent role in glycolysis;however,little is known about its role in HCC development.In the present study,we aim to explore how ALDOA is involved in HCC proliferation.HCC proliferation was markedly suppressed both in vitro and in vivo following ALDOA knockout,which is consistent with ALDOA overexpression encouraging HCC prolifera-tion.Mechanistically,ALDOA knockout partially limits the glycolytic flux in HCC cells.Meanwhile,ALDOA translocated to nuclei and directly interacted with c-Jun to facilitate its Thr93 phosphorylation by P21-activated protein kinase;ALDOA knockout markedly diminished c-Jun Thr93 phosphorylation and then dampened c-Jun transcription function.A crucial site Y364 mutation in ALDOA disrupted its interaction with c-Jun,and Y364S ALDOA expression failed to rescue cell proliferation in ALDOA deletion cells.In HCC patients,the expression level of ALDOA was correlated with the phosphorylation level of c-Jun(Thr93)and poor prognosis.Remarkably,hepatic ALDOA was significantly upregulated in the promotion and progression stages of diethylnitrosamine-induced HCC models,and the knockdown of Aldoa strikingly decreased HCC development in vivo.Our study demonstrated that ALDOA is a vital driver for HCC development by activating c-Jun-mediated oncogene transcription,opening additional avenues for anti-cancer therapies.
4.Aldolase A accelerates hepatocarcinogenesis by refactoring c-Jun transcription.
Xin YANG ; Guang-Yuan MA ; Xiao-Qiang LI ; Na TANG ; Yang SUN ; Xiao-Wei HAO ; Ke-Han WU ; Yu-Bo WANG ; Wen TIAN ; Xin FAN ; Zezhi LI ; Caixia FENG ; Xu CHAO ; Yu-Fan WANG ; Yao LIU ; Di LI ; Wei CAO
Journal of Pharmaceutical Analysis 2025;15(7):101169-101169
Hepatocellular carcinoma (HCC) expresses abundant glycolytic enzymes and displays comprehensive glucose metabolism reprogramming. Aldolase A (ALDOA) plays a prominent role in glycolysis; however, little is known about its role in HCC development. In the present study, we aim to explore how ALDOA is involved in HCC proliferation. HCC proliferation was markedly suppressed both in vitro and in vivo following ALDOA knockout, which is consistent with ALDOA overexpression encouraging HCC proliferation. Mechanistically, ALDOA knockout partially limits the glycolytic flux in HCC cells. Meanwhile, ALDOA translocated to nuclei and directly interacted with c-Jun to facilitate its Thr93 phosphorylation by P21-activated protein kinase; ALDOA knockout markedly diminished c-Jun Thr93 phosphorylation and then dampened c-Jun transcription function. A crucial site Y364 mutation in ALDOA disrupted its interaction with c-Jun, and Y364S ALDOA expression failed to rescue cell proliferation in ALDOA deletion cells. In HCC patients, the expression level of ALDOA was correlated with the phosphorylation level of c-Jun (Thr93) and poor prognosis. Remarkably, hepatic ALDOA was significantly upregulated in the promotion and progression stages of diethylnitrosamine-induced HCC models, and the knockdown of A ldoa strikingly decreased HCC development in vivo. Our study demonstrated that ALDOA is a vital driver for HCC development by activating c-Jun-mediated oncogene transcription, opening additional avenues for anti-cancer therapies.
5.Correlation of peripheral neurotoxicity of utidelone-induced in the treatment of potients with advanced HER-2 negative breast cancer
Na-ni LI ; Wei-nan XIE ; Chao-guang HE ; Jing HUANG ; Gui-hua CAO ; Yi-cong LIN
The Chinese Journal of Clinical Pharmacology 2024;40(24):3543-3547
Objective To analyze the peripheral neurotoxicity of utidelone(UTD-1)in patients with human epidermal growth factor receptor 2(HER-2)negative advanced breast cancer and its related factors.Methods The patients with HER-2 negative advanced breast cancer treated by UTD-1 were collected.The patients were divided into control group(low neurotoxicity group,grade 0-1 peripheral neurotoxicity)and treatment group(high neurotoxicity group,grade 2-4 peripheral neurotoxicity)according to cohort method.The data involve age,body mass index(BMI),related indicators of metabolic syndrome(MS)before chemotherapy,hormone receptor expression status of tumor,number of treatment lines,and whether combined with capecitabine were collected.The highest level of neurotoxicity after UTD-1 was collected for each patient,and the possible related factors were analyzed.Results There were 83 cases in the treatment group and 84 cases in the control group.The BMI of treatment and control groups were(24.81±1.93)and(22.82±2.19)kg·m-2,the fasting plasma glucose(FPG)levels were(6.45±1.37)and(5.42±0.79)mmol·L-1,the C-reaction protein(CRP)levels were 11.10 and 1.60 mg·L-1,respectively,and the differences were statistically significant(allP<0.01).Multi-factor Logistics stepwise regression analysis showed that the high neurotoxicity group was independently correlated with high BMI,high FPG and high CRP(odds ratios were 11.51,7.78 and 6.88).Conclusion BMI,CRP and FPG may be independent risk factors for high peripheral neurotoxicity iduced by UTD-1.
6.Correlation of peripheral neurotoxicity of utidelone-induced in the treatment of potients with advanced HER-2 negative breast cancer
Na-ni LI ; Wei-nan XIE ; Chao-guang HE ; Jing HUANG ; Gui-hua CAO ; Yi-cong LIN
The Chinese Journal of Clinical Pharmacology 2024;40(24):3543-3547
Objective To analyze the peripheral neurotoxicity of utidelone(UTD-1)in patients with human epidermal growth factor receptor 2(HER-2)negative advanced breast cancer and its related factors.Methods The patients with HER-2 negative advanced breast cancer treated by UTD-1 were collected.The patients were divided into control group(low neurotoxicity group,grade 0-1 peripheral neurotoxicity)and treatment group(high neurotoxicity group,grade 2-4 peripheral neurotoxicity)according to cohort method.The data involve age,body mass index(BMI),related indicators of metabolic syndrome(MS)before chemotherapy,hormone receptor expression status of tumor,number of treatment lines,and whether combined with capecitabine were collected.The highest level of neurotoxicity after UTD-1 was collected for each patient,and the possible related factors were analyzed.Results There were 83 cases in the treatment group and 84 cases in the control group.The BMI of treatment and control groups were(24.81±1.93)and(22.82±2.19)kg·m-2,the fasting plasma glucose(FPG)levels were(6.45±1.37)and(5.42±0.79)mmol·L-1,the C-reaction protein(CRP)levels were 11.10 and 1.60 mg·L-1,respectively,and the differences were statistically significant(allP<0.01).Multi-factor Logistics stepwise regression analysis showed that the high neurotoxicity group was independently correlated with high BMI,high FPG and high CRP(odds ratios were 11.51,7.78 and 6.88).Conclusion BMI,CRP and FPG may be independent risk factors for high peripheral neurotoxicity iduced by UTD-1.
7.Tick-borne Pathogens in Shanxi Province, China.
Xiao Na YANG ; Hui Jun YANG ; Lin ZHANG ; Xue Xia HOU ; Guang Qing MIAO ; Hong Bing CAO ; Rui E HAO ; Qin HAO
Biomedical and Environmental Sciences 2021;34(5):410-415
8.The application of multi-teaching mode based on MOOC in the practice course of epidemiology
Ping LI ; Yan LIU ; Wei-na TANG ; Guang-wen CAO ; Xiao-jie TAN
Shanghai Journal of Preventive Medicine 2021;33(7):616-619
At present, there is little research on the new teaching mode for the practice course of epidemiology. Based on the situation, this paper mainly discussed how the MOOC (Massive Open Online Course)-based multi-teaching mode was applied to the practice course of Epidemiology. The structure of this multi- teaching mode consisted of case base construction, class preparation, class presentation and learning evaluation. Thus, MOOC, flipped Class Mode and other new teaching modes were integrated into traditional face-to-face teaching. In addition, this paper also demonstrated the implementation of the multi-teaching mode in the teaching of preventive medicine. It is worth exploring how to integrate MOOC into the teaching of the practice course of epidemiology in the future.
9.Safety, Effectiveness, and Manipulability of Peritoneal Dialysis Machines Made in China: A Randomized, Crossover, Multicenter Clinical Study.
Xue-Ying CAO ; Ya-Ni HE ; Jian-Hui ZHOU ; Shi-Ren SUN ; Li-Ning MIAO ; Wen CHEN ; Jing-Ai FANG ; Ming WANG ; Nian-Song WANG ; Hong-Li LIN ; Jian LIU ; Zhao-Hui NI ; Wen-Hu LIU ; Yu NA ; Jiu-Yang ZHAO ; Zhi-Yong GUO ; Hong-Guang ZHENG ; Wei SHI ; Geng-Ru JIANG ; Guang-Yan CAI ; Xiang-Mei CHEN
Chinese Medical Journal 2018;131(23):2785-2791
Background:
Automated peritoneal dialysis (APD) can cater to individual needs, provide treatment while asleep, take into account the adequacy of dialysis, and improve the quality of life. Currently, independent research and development of APD machines made in China are more conducive to patients. A randomized, multicenter, crossover study was conducted by comparing an APD machine made in China with an imported machine. The safety, effectiveness, and manipulability of the two machines were compared.
Methods:
Two hundred and sixty patients who underwent peritoneal dialysis (PD) on a regular basis in 18 centers between August 2015 and February 2016 were included. The inclusion criteria include age ≥18 years and PD ≥30 days. The exclusion criteria were as follows: hemodialysis; exit site or tunnel infection; and peritonitis ≤30 days. The patients were randomly divided into Group A, who were first treated with a FM machine made in China, then changed to an imported machine; and Group B, who were treated using the reverse sequence. APD treatment was performed with 10 L/10 h and 5 cycles of exchange. After 72 h, the daily peritoneal Kt/V, the accuracy of the injection rate, accuracy of the injection temperature, safety, and manipulability of the machine were assessed. Noninferiority test was conducted between the two groups.
Results:
The daily peritoneal Kt/V in the APD machine made in China and the imported APD machine were 0.17 (0.14, 0.25) and 0.16 (0.13, 0.23), respectively. There was no significant difference between the groups (Z = 0.15, P = 0.703). The lower limit of the daily Kt/V difference between the two groups was 0.0069, which was greater than the noninferiority value of -0.07 in this study. The accuracy of the injection rate and injection temperature was 89.7% and 91.5%, respectively, in the domestic APD machine, which were both slightly better than the accuracy rates of 84.0% and 86.8% in the imported APD machine (89.7% vs. 84.0%, P = 0.2466; 91.5% vs. 86.8%, P = 0.0954). Therefore, the APD machine made in China was not inferior to the imported APD machine. The fuselage of the imported APD machine was space-saving, while the APD machine made in China was superior with respect to body mobility, man-machine dialog operation, alarm control, and patient information recognition.
Conclusions:
The FM machine made in China was not inferior to the imported APD machine. In addition, the FM machine made in China had better operability.
Trial Registration
Clinicaltrials.gov, NCT02525497; https://clinicaltrials.gov/ct2/results?cond=&term=NCT02525497&cntry=& state=&city=&dist=.
Adult
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China
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Cross-Over Studies
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Female
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Humans
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Male
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Middle Aged
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Multicenter Studies as Topic
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Peritoneal Dialysis
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adverse effects
;
instrumentation
;
methods
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Quality of Life
;
Temperature
10.IVS8+1 DelG, a Novel Splice Site Mutation Causing DFNA5 Deafness in a Chinese Family.
Mei-Na LI-YANG ; Xiao-Fei SHEN ; Qin-Jun WEI ; Jun YAO ; Ya-Jie LU ; Xin CAO ; Guang-Qian XING
Chinese Medical Journal 2015;128(18):2510-2515
BACKGROUNDNonsyndromic hearing loss (NSHL) is highly heterogeneous, in which more than 90 causative genes have currently been identified. DFNA5 is one of the deafness genes that known to cause autosomal dominant NSHL. Until date, only five DFNA5 mutations have been described in eight families worldwide. In this study, we reported the identification of a novel pathogenic mutation causing DFNA5 deafness in a five-generation Chinese family.
METHODSAfter detailed clinical evaluations of this family, the genomic DNA of three affected individuals was selected for targeted exome sequencing of 101 known deafness genes, as well as mitochondrial DNA and microRNA regions. Co-segregation analysis between the hearing loss and the candidate variant was confirmed in available family members by direct polymerase chain reaction (PCR)-Sanger sequencing. Real-time PCR (RT-PCR) was performed to investigate the potential effect of the pathogenic mutation on messenger RNA splicing.
RESULTSClinical evaluations revealed a similar deafness phenotype in this family to that of previously reported DFNA5 families with autosomal dominant, late-onset hearing loss. Molecular analysis identified a novel splice site mutation in DFNA5 intron 8 (IVS8+1 delG). The mutation segregated with the hearing loss of the family and was absent in 120 unrelated control DNA samples of Chinese origin. RT-PCR showed skipping of exon 8 in the mutant transcript.
CONCLUSIONSWe identified a novel DFNA5 mutation IVS8+1 delG in a Chinese family which led to skipping of exon 8. This is the sixth DFNA5 mutation relates to hearing loss and the second one in DFNA5 intron 8. Our findings provide further support to the hypothesis that the DFNA5-associated hearing loss represents a mechanism of gain-of-function.
Adult ; Deafness ; genetics ; Exons ; genetics ; Female ; Hearing Loss ; genetics ; Hearing Loss, Sensorineural ; genetics ; Humans ; Male ; Middle Aged ; Mutation ; genetics ; Young Adult

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