OBJECTIVE: To assess the effect of Tanreqing injection on airway inflammation in rats. METHODS: A rat model of airway inflammation was generated with lipopolysaccharide (LPS). Tanreqing injection was given by intratra...OBJECTIVE: To assess the effect of Tanreqing injection on airway inflammation in rats. METHODS: A rat model of airway inflammation was generated with lipopolysaccharide (LPS). Tanreqing injection was given by intratracheal instillation, and bronchoalveolar lavage fluid (BALF) from the right lung was collected. BALF total cell and neutrophil counts were then determined. In addition, BALF levels of inflammatory cytokines interleukin-1β, cytokine-induced neutrophil chemoattractant-1, and tumor necrosis factor-α were measured using enzyme linked immunosorbent assay.The middle lobe of the right lung was stained with hematoxylin-eosin and histological changes examined. RESULTS: LPS increased airway inflammation, decreased BALF inflammatory cell count, inflammatory cytokine levels, and suppressed leukocyte influx of the lung. The LPS-induced airway inflammation peaked at 24 h, decreased beginning at 48 h, and had decreased markedly by 96 h. CONCLUSION: Tanreqing injection contains anti-inflammatory properties, and inhibits airway inflammation in a dose-dependent manner.展开更多
Objective: To investigate the relationship between the proliferation of sensitized human airway smooth muscle cells (HASMCs) and the expression of extracellular signal regulated kinase (ERK) and the effect of She...Objective: To investigate the relationship between the proliferation of sensitized human airway smooth muscle cells (HASMCs) and the expression of extracellular signal regulated kinase (ERK) and the effect of Shenmai Injection (参麦注射液, SMI) on HASMCs. Methods: The HASMCs cultured in vitro were divided into three groups: (1) control group; (2) sensitized group: containing 10% asthmatic serum; (3) SMI group: further divided into three different concentration subgroups interferred with 10 μL/mL, 50 μL/mL, and 100 μL/mL SMI, respectively. The proliferation of HASMCs was detected using MTT method, the expression of proliferating cell nucleus antigen (PCNA) in HASMCs was detected using immunocytochemical staining, and the expression of phosphoration-ERK1/2 (p-ERK1/2) protein was detected using Western-blot. Results: After passive sensitization, the optical density value (A49o value) of HASMCs was significantly increased from 0.366± 0.086 to 0.839 ± 0.168 (P〈0.05). In addition, the expression of PCNA was significantly increased from 28.7% ± 5.9% in the control group to 69.8% ±7.5% in the sensitized group (P〈0.05). At the same time, the expression of p-ERK1/2 in passively sensitized HASMCs was significantly increased compared with the control group (all P〈0.05). Affer application of 10 μL/mL, 50 μL/mL, and 100 μL/mL SMI to the cultured media of passively sensitized group, the A570 value was significantly decreased from 0.839 ±0.168 to 0.612 ±0.100, 0.412 ± 0.092, and 0.339 ± 0.077, respectively (P〈0.05). Moreover, the expression of PCNA was significantly decreased from 69.8% ±7.5% to 57.8% ± 6.2%, 40.7%±5.4%, and 26.1% ± 5.2%, respectively. At the same time, the expression of p-ERK1/2 in each SMI group was significantly decreased compared with the sensitized group (all ,P〈0.05). Conclusion: ERK signal transduction pathway may be involved in the airway remodeling in asthma. The expression of ERK can be inhibited by S展开更多
Objective: To investigate the influence of Danshen Injection on airway inflammation and CD4^+CD25^+ regulatory T cells(CD4^+CD25^+ Tr) of asthmatic rats, and elucidate the possible mechanism of Danshen Inject...Objective: To investigate the influence of Danshen Injection on airway inflammation and CD4^+CD25^+ regulatory T cells(CD4^+CD25^+ Tr) of asthmatic rats, and elucidate the possible mechanism of Danshen Injection in treatment of asthma. Methods: 30 Wister rats were randomly divided into control group, asthma group and Danshen Injection treated group. Bronchoalveolar lavage fluids (BALF) were collected, and cytology studies were conducted. Lung tissues were obtained and pathologic analyses were done with hematoxylin and eosin stain (HE). Flow cytometry was used to detect the CD4^+CD25^+ Tr ratio in peripheral blood mononuclear cells (PBMCs). Results: Total cell, the percentage of lymphocytes, neutrophils and eosinophils (Eos) in BALF of Danshen Injection-treated group were lower than that in asthma group (P〈0.05, P〈0.01). Compared with asthma group, less infiltration of inflammatory cells in lung tissues was observed in Danshen Injection-treated group. CD4^+CD25^+ Tr of asthma group was lower than that of control and Danshen Injection treated group (P〈0.05). Conclusion: Danshen Injection can suppress airway inflammation of asthmatic rats, probably by increasing the number of CD4^+CD25^+ Tr.展开更多
基金Supported by the Program for Innovative Research at the West China School of Medicine, Sichuan University, and Sichuan Technology Department (No. 2012SZ0288)
文摘OBJECTIVE: To assess the effect of Tanreqing injection on airway inflammation in rats. METHODS: A rat model of airway inflammation was generated with lipopolysaccharide (LPS). Tanreqing injection was given by intratracheal instillation, and bronchoalveolar lavage fluid (BALF) from the right lung was collected. BALF total cell and neutrophil counts were then determined. In addition, BALF levels of inflammatory cytokines interleukin-1β, cytokine-induced neutrophil chemoattractant-1, and tumor necrosis factor-α were measured using enzyme linked immunosorbent assay.The middle lobe of the right lung was stained with hematoxylin-eosin and histological changes examined. RESULTS: LPS increased airway inflammation, decreased BALF inflammatory cell count, inflammatory cytokine levels, and suppressed leukocyte influx of the lung. The LPS-induced airway inflammation peaked at 24 h, decreased beginning at 48 h, and had decreased markedly by 96 h. CONCLUSION: Tanreqing injection contains anti-inflammatory properties, and inhibits airway inflammation in a dose-dependent manner.
基金Supported by the Key Project in Science and Technology of Henan Province(No.072300450100)Project of High and New Technology Development of Health Department in Henan Province(No.20060140)
文摘Objective: To investigate the relationship between the proliferation of sensitized human airway smooth muscle cells (HASMCs) and the expression of extracellular signal regulated kinase (ERK) and the effect of Shenmai Injection (参麦注射液, SMI) on HASMCs. Methods: The HASMCs cultured in vitro were divided into three groups: (1) control group; (2) sensitized group: containing 10% asthmatic serum; (3) SMI group: further divided into three different concentration subgroups interferred with 10 μL/mL, 50 μL/mL, and 100 μL/mL SMI, respectively. The proliferation of HASMCs was detected using MTT method, the expression of proliferating cell nucleus antigen (PCNA) in HASMCs was detected using immunocytochemical staining, and the expression of phosphoration-ERK1/2 (p-ERK1/2) protein was detected using Western-blot. Results: After passive sensitization, the optical density value (A49o value) of HASMCs was significantly increased from 0.366± 0.086 to 0.839 ± 0.168 (P〈0.05). In addition, the expression of PCNA was significantly increased from 28.7% ± 5.9% in the control group to 69.8% ±7.5% in the sensitized group (P〈0.05). At the same time, the expression of p-ERK1/2 in passively sensitized HASMCs was significantly increased compared with the control group (all P〈0.05). Affer application of 10 μL/mL, 50 μL/mL, and 100 μL/mL SMI to the cultured media of passively sensitized group, the A570 value was significantly decreased from 0.839 ±0.168 to 0.612 ±0.100, 0.412 ± 0.092, and 0.339 ± 0.077, respectively (P〈0.05). Moreover, the expression of PCNA was significantly decreased from 69.8% ±7.5% to 57.8% ± 6.2%, 40.7%±5.4%, and 26.1% ± 5.2%, respectively. At the same time, the expression of p-ERK1/2 in each SMI group was significantly decreased compared with the sensitized group (all ,P〈0.05). Conclusion: ERK signal transduction pathway may be involved in the airway remodeling in asthma. The expression of ERK can be inhibited by S
基金This This work was supported by a grant from the Science and Technology Foundation of Hubei Province (2003AA301C10)
文摘Objective: To investigate the influence of Danshen Injection on airway inflammation and CD4^+CD25^+ regulatory T cells(CD4^+CD25^+ Tr) of asthmatic rats, and elucidate the possible mechanism of Danshen Injection in treatment of asthma. Methods: 30 Wister rats were randomly divided into control group, asthma group and Danshen Injection treated group. Bronchoalveolar lavage fluids (BALF) were collected, and cytology studies were conducted. Lung tissues were obtained and pathologic analyses were done with hematoxylin and eosin stain (HE). Flow cytometry was used to detect the CD4^+CD25^+ Tr ratio in peripheral blood mononuclear cells (PBMCs). Results: Total cell, the percentage of lymphocytes, neutrophils and eosinophils (Eos) in BALF of Danshen Injection-treated group were lower than that in asthma group (P〈0.05, P〈0.01). Compared with asthma group, less infiltration of inflammatory cells in lung tissues was observed in Danshen Injection-treated group. CD4^+CD25^+ Tr of asthma group was lower than that of control and Danshen Injection treated group (P〈0.05). Conclusion: Danshen Injection can suppress airway inflammation of asthmatic rats, probably by increasing the number of CD4^+CD25^+ Tr.