Objective To investigate the active components and mechanism of Sanao Decoction(三拗汤,SAD)in treating chronic cough based on network pharmacology and molecular docking.Methods Active components and their targets were...Objective To investigate the active components and mechanism of Sanao Decoction(三拗汤,SAD)in treating chronic cough based on network pharmacology and molecular docking.Methods Active components and their targets were obtained from the Traditional Chinese Medicine Systems and Pharmacology Database and Analysis Platform(TCMSP),Bioinformatics Analysis Tool for Molecular mech ANism of Traditional Chinese Medicine(BATMAN-TCM)database,and the literature.The component-target regulatory network and protein-protein interaction(PPI)network were constructed by Cytoscape 3.7.2,and a bioinformatics analysis was performed to identify the significant pathways and their relevant targets.Molecular docking of the core active components and relevant targets was performed.Results A total of 98 active components of SAD and the corresponding 113 drug targets were identified.The component-target regulatory network and PPI network were successfully established.Results of the bioinformatics analysis indicated that 2281 Gene Ontology(GO)terms were enriched in chronic cough,including 2062 terms were in biological processes,77 in cellular components,and 142 in molecular functions,and top 20 significant pathways in Kyoto Encyclopedia of Genes and Genomes(KEGG)analysis.Molecular docking study demonstrated that quercetin,luteolin,kaempferol,and naringenin were in good agreement with the corresponding targets.Conclusion The active compounds of SAD,such as quercetin,luteolin,kaempferol,and naringenin,may act on AKT1,MAPK1,RELA,EGFR,and Bcl-2 and regulate the PI3 K-Akt signaling pathway,AGE-RAGE signaling pathway,and fluid shear stress and atherosclerosis pathway to exert the effects of anti-inflammatory,anti-airway remodeling,anti-oxidant stress effects,and repair airway damage,thus treating chronic cough.展开更多
目的:观察小青龙汤加减治疗小儿支原体肺炎的临床疗效。方法:将92例小儿支原体肺炎患者按照随机数字表法分为对照组和研究组,每组46例。对照组给予常规治疗,肺炎急性期使用布地奈德雾化液雾化治疗,肺炎症状缓解期使用孟鲁司特钠咀嚼片...目的:观察小青龙汤加减治疗小儿支原体肺炎的临床疗效。方法:将92例小儿支原体肺炎患者按照随机数字表法分为对照组和研究组,每组46例。对照组给予常规治疗,肺炎急性期使用布地奈德雾化液雾化治疗,肺炎症状缓解期使用孟鲁司特钠咀嚼片口服治疗。研究组在对照组治疗的基础上给予小青龙汤加减治疗。观察两组患者临床疗效、肺功能[用力肺活量(forced vital capacity,FVC)、最大呼气流速(peak expiratory flow,PEF)以及第1秒用力呼气容积(forced expiratory volume in the first second,FEV1)]、气道高反应性、复发情况,并检测血清白细胞介素(interleukin,IL)-4、IL-5与外周血嗜酸性粒细胞(eosinophil,EOS)水平。结果:研究组有效率91.30%,对照组有效率为76.09%,研究组有效率高于对照组,差异有统计学意义(P<0.05)。研究组治疗后FVC、PEF、FEV1水平高于对照组,差异有统计学意义(P<0.05)。研究组治疗后最小诱发累积量、促使气道阻力增加至基础值的135%所需要的组胺累积剂量高于对照组,差异有统计学意义(P<0.05)。研究组治疗后血清IL-4、IL-5与外周血EOS低于对照组,差异有统计学意义(P<0.05)。研究组复发率为19.05%(8/42),对照组复发率为42.86%(15/35),研究组复发率低于对照组,差异有统计学意义(P<0.05)。结论:小青龙汤加减治疗治疗小儿支原体肺炎,能改善患者肺功能,减轻患儿气道高反应性,调节血清IL-4、IL-5水平以及外周血EOS水平,降低复发率。展开更多
Cigarette smoke is associated with the development of several diseases, such as chronic ob- structive pulmonary disease (COPD). The purpose of this study was to investigate genotoxicity and heat shock protein 70 (H...Cigarette smoke is associated with the development of several diseases, such as chronic ob- structive pulmonary disease (COPD). The purpose of this study was to investigate genotoxicity and heat shock protein 70 (Hsp70) in human airway smooth muscle cells (HASMCs) exposed to cigarette smoke extract (CSE). HASMCs was exposed to CSE with different doses for 24 h. The level of 8-hydroxydeoxyguanosine (8-OHdG) was determined by using HPLC-ECD, the DNA damage was ana- lyzed by using comet assay, and apoptosis was examined by using Annexin-FITC/PI staining. The pro- duction of Hsp70 after CSE stimulation was tested. Results indicated that CSE significantly increased the level of 8-OHdG, DNA damage and cell apoptosis, and reduced the production of Hsp70. In par- ticular, levels of Hsp70 were inversely correlated with 8-OHdG, DNA damage and cell apoptosis. It was concluded that cigarette smoke induced genotoxicity and decreased the production of cell protective protein Hsp70, which may contribute to the development of some airway diseases.展开更多
基金funding support from the National Natural Science Foundation of China(No.82174093)。
文摘Objective To investigate the active components and mechanism of Sanao Decoction(三拗汤,SAD)in treating chronic cough based on network pharmacology and molecular docking.Methods Active components and their targets were obtained from the Traditional Chinese Medicine Systems and Pharmacology Database and Analysis Platform(TCMSP),Bioinformatics Analysis Tool for Molecular mech ANism of Traditional Chinese Medicine(BATMAN-TCM)database,and the literature.The component-target regulatory network and protein-protein interaction(PPI)network were constructed by Cytoscape 3.7.2,and a bioinformatics analysis was performed to identify the significant pathways and their relevant targets.Molecular docking of the core active components and relevant targets was performed.Results A total of 98 active components of SAD and the corresponding 113 drug targets were identified.The component-target regulatory network and PPI network were successfully established.Results of the bioinformatics analysis indicated that 2281 Gene Ontology(GO)terms were enriched in chronic cough,including 2062 terms were in biological processes,77 in cellular components,and 142 in molecular functions,and top 20 significant pathways in Kyoto Encyclopedia of Genes and Genomes(KEGG)analysis.Molecular docking study demonstrated that quercetin,luteolin,kaempferol,and naringenin were in good agreement with the corresponding targets.Conclusion The active compounds of SAD,such as quercetin,luteolin,kaempferol,and naringenin,may act on AKT1,MAPK1,RELA,EGFR,and Bcl-2 and regulate the PI3 K-Akt signaling pathway,AGE-RAGE signaling pathway,and fluid shear stress and atherosclerosis pathway to exert the effects of anti-inflammatory,anti-airway remodeling,anti-oxidant stress effects,and repair airway damage,thus treating chronic cough.
文摘目的:观察小青龙汤加减治疗小儿支原体肺炎的临床疗效。方法:将92例小儿支原体肺炎患者按照随机数字表法分为对照组和研究组,每组46例。对照组给予常规治疗,肺炎急性期使用布地奈德雾化液雾化治疗,肺炎症状缓解期使用孟鲁司特钠咀嚼片口服治疗。研究组在对照组治疗的基础上给予小青龙汤加减治疗。观察两组患者临床疗效、肺功能[用力肺活量(forced vital capacity,FVC)、最大呼气流速(peak expiratory flow,PEF)以及第1秒用力呼气容积(forced expiratory volume in the first second,FEV1)]、气道高反应性、复发情况,并检测血清白细胞介素(interleukin,IL)-4、IL-5与外周血嗜酸性粒细胞(eosinophil,EOS)水平。结果:研究组有效率91.30%,对照组有效率为76.09%,研究组有效率高于对照组,差异有统计学意义(P<0.05)。研究组治疗后FVC、PEF、FEV1水平高于对照组,差异有统计学意义(P<0.05)。研究组治疗后最小诱发累积量、促使气道阻力增加至基础值的135%所需要的组胺累积剂量高于对照组,差异有统计学意义(P<0.05)。研究组治疗后血清IL-4、IL-5与外周血EOS低于对照组,差异有统计学意义(P<0.05)。研究组复发率为19.05%(8/42),对照组复发率为42.86%(15/35),研究组复发率低于对照组,差异有统计学意义(P<0.05)。结论:小青龙汤加减治疗治疗小儿支原体肺炎,能改善患者肺功能,减轻患儿气道高反应性,调节血清IL-4、IL-5水平以及外周血EOS水平,降低复发率。
基金supported by grants from the National Natural Science Foundation of China(No.8107003681370145+3 种基金81370156 and 81070021)The National Key Technology R&D Program of the 12th National Five-year Development Plan:Clinical Study on Translational Medicine of Respiratory Disease(No.212BA105B01)The Specific Project of National Health Research Project of Ministry of Health of China(No.201002008)Program for Changjiang Scholars and Innovative Research Team in University(No.PCSIRT1131)
文摘Cigarette smoke is associated with the development of several diseases, such as chronic ob- structive pulmonary disease (COPD). The purpose of this study was to investigate genotoxicity and heat shock protein 70 (Hsp70) in human airway smooth muscle cells (HASMCs) exposed to cigarette smoke extract (CSE). HASMCs was exposed to CSE with different doses for 24 h. The level of 8-hydroxydeoxyguanosine (8-OHdG) was determined by using HPLC-ECD, the DNA damage was ana- lyzed by using comet assay, and apoptosis was examined by using Annexin-FITC/PI staining. The pro- duction of Hsp70 after CSE stimulation was tested. Results indicated that CSE significantly increased the level of 8-OHdG, DNA damage and cell apoptosis, and reduced the production of Hsp70. In par- ticular, levels of Hsp70 were inversely correlated with 8-OHdG, DNA damage and cell apoptosis. It was concluded that cigarette smoke induced genotoxicity and decreased the production of cell protective protein Hsp70, which may contribute to the development of some airway diseases.