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find Keyword "气道炎症" 26 results
  • Effects of FasL gene-modified dendritic cell on the airway inflammation in mice sensitized/challenged by house dust mite allergen

    Objective To investigate the effects of FasL gene-modified dendritic cell (DC) on the airway inflammation in mice sensitized/challenged by house dust mite (HDM) allergen.Methods FasL gene-modified DC (FasL-DC) and control DC (nontransfection DC) were administrated into HDM sensitized and challenged mice by intratracheal injection respectively,then HDM sensitized and challenged mice were sacreificed two days later.Total and differentiation cell counts and levels of interleukin-4(IL-4),IL-5 and interferon-γ(IFN-) in bronchoalveolar lavage fluid (BALF) were detected and lung histological features were observed.Results After administration of FasL-DC,lung allergic inflammation was ameliorated while total cell counts,the percentage of eosinophil ,the levels of IL-4 and IL-5 in BALF decreased and the level of IFN- in BALF increased.Conclusion Administrating FasL-DC into HDM sensitized/challenged mice can inhibit Th2 cells activation and ameliorate airway allergic inflammation.

    Release date:2016-08-30 11:35 Export PDF Favorites Scan
  • 慢性阻塞性肺疾病气道炎症的研究进展

    慢性阻塞性肺疾病( COPD) 是一种气流受限呈不完全可逆和进行性发展状态的气道阻塞性肺部疾病, 包括肺气肿、末梢气道疾病和慢性支气管炎。其发病机制尚未完全阐明, 目前普遍认为COPD 以气道、肺实质和肺血管的慢性炎症为特征, 在肺的不同部位有肺泡巨噬细胞、T 淋巴细胞和中性粒细胞增加。激活的炎症细胞释放多种介质, 包括白三烯B4( LTB4) 、IL-8、TNF-α和其他介质, 导致肺内氧化/ 抗氧化失衡、蛋白酶/ 抗蛋白酶失衡等, 从而破坏肺的结构和促进多种炎症细胞的炎症反应。目前, COPD 是世界上第四位的主要死亡原因, 而在我国已居疾病负担序列的第一位。因此, 深入研究COPD 的发病机制, 探讨治疗COPD 的有效方法具有重要的理论及实践意义, 本文对其最新研究进展进行了综述。

    Release date:2016-09-13 04:06 Export PDF Favorites Scan
  • The role of Interleukin-10 in Airway Inflammation in COPD Rats

    ObjectiveTo investigate the expressions of IL-10,tumor necrosis factor-α (TNF-α) and interferon-γ (IFN-γ) in serum and lung tissue of COPD rats in order to elucidate the potential mechanism of airway inflammation. MethodsForty-five healthy adult male SD rats were randomly divided into a COPD model group (n=30) and a normal control group (n=15). The COPD rat model was established by intratracheal instillation of lipopolysaccharide (LPS) and exposure to cigarette smoke for 28 days. The concentrations of IL-10,TNF-α and IFN-γ in serum and lung tissue were measured by ELISA. ResultsTNF-α level of serum and lung tissue in the COPD model group increased significantly compared with the control group(P<0.05),while the levels of IFN-γ and IL-10 decreased significantly[serum:(44.68±8.67) ng/L vs. (75.96±10.59) ng/L;lung tissue:(64.55±9.03) ng/L vs. (94.06±8.71) ng/L,P<0.01]. The level of IL-10 in serum and lung tissue was negatively correlated with TNF-α (serum:r=-0.67,lung tissue:r=-0.80,P<0.01). The level of IL-10 in serum and lung tissue was positively correlated with IFN-γ (serum:r=0.64,lung tissue:r=0.72,P<0.01). The level of IL-10 in serum and lung tissue was negatively correlated with the percentage of neutrophils(serum:r=-0.70,lung tissue:r=-0.67,P<0.01). ConclusionIn COPD rats,down regulation of IL-10 plays an important role in regulation of airway inflammation.

    Release date:2016-08-30 11:31 Export PDF Favorites Scan
  • Role of miR-155/COX-2/PGE2 signaling pathway in dioscin improving airway inflammation in asthmatic mice

    Objective To explore the effects of dioscin (Dio) on airway inflammation and microRNA-155 (miR-155)/cyclooxygenase 2 (COX-2)/prostaglandin E2 (PGE2) pathways in asthmatic mice. Methods Seventy mice were randomly divided into control group, model group, inhibitor negative control group (inhibitor-NC group), miR-155 inhibitor group, and Dio group, Dio+miR-155 mimic negative control group (Dio+mimic-NC group), Dio+miR-155 mimic group, with 10 mice in each group. Using house dust mite to induce the preparation of asthma mouse models; enzyme linked immunosorbent assay was used to detect the levels of PGE2, tumor necrosis factor α (TNF-α), cysteyl leukotrienes (CysLTs), cysteyl leukotriene receptor 1 (CysLTR1) and interleukin (IL)-4, IL-5, IL-13 in mouse bronchoalveolar lavage fluid (BALF); hematoxylin-eosin and periodic acid-Schiff staining were used to observe the infiltration of inflammatory cells around the airway and the secretion of mucus by goblet cells; quantitative real-time PCR was used to detect the expression levels of miR-155 and COX-2 mRNA in mouse lung tissue; Western blot was used detect the expression of COX-2 protein in mouse lung tissue. Results MiR-155 inhibitor and Dio could reduce the levels of PGE2, TNF-α, CysLTs, CysLTR1 and IL-4, IL-5, IL-13 in BALF of asthmatic mice, reduce lung tissue inflammatory cell infiltration and goblet cell mucus secretion, and reduce lung tissue miR-155, COX-2 mRNA and protein expression; and miR-155 mimic could significantly weaken the anti-asthma effect of Dio. Conclusion The anti-asthma effect of Dio may be related to the inhibition of miR-155/COX-2/PGE2 pathway to reduce airway inflammation in asthmatic mice.

    Release date:2023-04-28 02:38 Export PDF Favorites Scan
  • Effects of Bone Marrow-Derived Mesenchymal Stem Cells on Airway Inflammation and Airway Remodeling in Chronic Asthmatic Mice

    【Abstract】 Objective To investigate the effect of allogeneic bone marrow-derived mesenchymal stem cells ( BMSCs) transplantation on the airway inflammation and airway remodeling in chronic asthmatic mice. Methods Forty female BALB/c mice were equally randomized into four groups, ie. a normal control group, a BMSCs control group, an asthma model group, and a BMSCs transplantation group. BMSCs were generated from male donor mice, then the mice in the asthma model group and the BMSCs transplantation group were sensitized and challenged with OVA to establish chronic asthmatic mice model. Hematoxylin and eosin staining and Alcian blue-periodic acid-Schiff staining were used to analyze the effects on airway inflammation and airway remodeling after BMSC engraftment. The number of CD4 + CD25 + regulatory T cells in spleen was detected by flow cytometry. Results In lungs of the asthmamodel group, there were intensive inflammatory cells infiltration around airway and blood vessels, goblet cell proliferation, epithelial desquamation, patchy airway occlusion by hyperviscous mucus, and hypertrophy of airway smooth muscle.Airway inflammation and airway remodeling were significantly relieved in the BMSCs transplantation group.There was no obvious inflammatory cells infiltration in the airway and airway remodeling both in the normal control group and the BMSCs control group. The number of CD4 + CD25 + regulatory T cells in spleensignificantly decreased in the asthma model group compared with the two control groups ( P lt; 0. 05) , and significantly increased in the BMSCs transplantation group compared with the asthma model group ( P lt;0. 05) . There was no significant difference in the number of CD4 + CD25 + regulatory T cells in spleen betweenthe control groups and the BMSCs transplantation group. Conclusion BMSCs engraftment can up-regulate CD4 + CD25 + regulatory T cells and relieve airway inflammation and airway remodeling in asthmatic mice.

    Release date:2016-08-30 11:55 Export PDF Favorites Scan
  • A Pilot Study of A SimpleManagement Strategy for ChronicCough

    Objective Using a simple management strategy to investigate the etiologic spectrum of chronic cough in Chengdu city and its suburbs. Methods Chronic cough patients were randomly recruited fromthe outpatient clinic of Sichuan Provincial People ’s Hospital between July 2011 to May 2012. A conception of “Chronic Airway Inflammatory Cough Syndrome, CAICS”was established including several common causes of cough such as cough variant asthma ( CVA) , eosinophilic bronchitis ( EB) , atopic cough ( AC) , and atypical chronic bronchitis. Based on CAICS, a simplified suspected diagnosis procedure of chronic cough was conducted. Patients were empirically treated. Etiology and efficiency of chronic cough was analyzed. Results A total of 148 patients of chronic cough were recruited. The mean age was ( 43. 0 ±13. 0) years old. There were 72 male and 76 female patients with mean ages of ( 39. 7 ±10. 7) and ( 45. 0 ± 14. 2) years old respectively. The males were younger than the females ( P lt; 0. 05) . There was 96. 6% ( 143/148) of patients suspectedly diagnosed and 3.4% ( 5/148) patients were undiagnosed. The suspected causes of these chronic cough patients were as follows, ie. CAICS ( 57. 5% ) , upper airway cough syndrome ( UACS, 21. 5%) , gastroesophageal reflux cough ( GERC, 9. 1% ) , and others ( 8. 4% ) . A single possible cause was found in 95 patients ( 64.1% ) , two possible causes in 41 patients ( 27. 7% ) , and three possible causes in 3 patients( 2. 0% ) . 12.2% of chronic cough patients were combined with allergic rhinitis ( AR) . Among the diseases, CVA, CAICS and UACS were disposed to coexist with AR. The overall efficiency of empiric management strategy of chronic cough was 83. 7% .Conclusions The etiological spectrum of chronic cough in Chengdu acquired by this strategy was generally consistent with previous findings in China.The three most important causes of chronic cough in Chengdu were CAICS, UACS and GERC. This strategy was simple, effective, economic and feasible. It could be a primary management for chronic cough in some hospital.

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  • The Roles of CC-16, Transcription Factor T-bet, and GATA-3 in Airway Inflammation of Patients with Asthma

    Objective To investigate the modulating roles of Clara cell secretory 16 kD protein ( CC-16) , transcription factor T-bet, and GATA-3 in airway inflammation of patients with asthma. Methods 25 patients with acute exacerbation of asthma were enrolled as an asthma group and 33 healthy volunteers were enrolled as control. The plasma levels of CC16, IFN-γ, and IL-4 were measured by enzyme-linked immunosorbent assay ( ELISA) . The mRNA expressions of T-bet and GATA-3 in the peripheral bloodmononuclear cells ( PBMCs) were measured by reverse transcription-polymerase chain reaction ( RT-PCR) .Results The levels of CC16 and IFN-γin the asthma group were lower than those in the control group [ ( 21. 96 ±7. 31 ) ng/mL vs. ( 64. 88 ±25. 27) ng/mL, ( 118. 73 ±22. 59) pg/mL vs. ( 145. 53 ±29. 50) pg/mL, both P lt;0. 01] . The IL-4 level in the asthma group was significantly higher than that in the control group [ ( 425. 22 ±4. 37) pg/mL vs. ( 69. 72 ±10. 15 ) pg/mL, P lt; 0. 01] . The T-bet mRNA expression and T-bet /GATA-3 ratio of PBMCs in the asthma group were significantly lower than those in the control group( both P lt; 0. 01) . The expression GATA-3 mRNA was significantly higher than that in the control group( P lt;0. 01) . The level of CC16 was positively correlated with T-bet mRNA expression and the ratio of T-bet /GATA-3 ( r =0. 792, 0. 761, respectively, P lt; 0. 01) . There was no correlation between CC16 and the GATA-3 mRNA expression ( P gt;0. 05) . Conclusions These results suggest that CC16 and T-bet play important protection roles in the pathogenesis of asthma. GATA-3, IFN-γ, and IL-4 also participate in the airway inflammation of asthma.

    Release date:2016-08-30 11:54 Export PDF Favorites Scan
  • Expression of nuclear factor kappa B in rat model of chronic obstructive pulmonary disease and the efect of glucocorticoid

    Objective To explore the role of nuclear factor kappa B(NF-KB)in the pathogenesis of chronic obstructive pulmonary disease(COPD)and the therapeutic efects of glucocorticoid.Methods Twenty-four Wistar rats were randomly divided into three groups,ie.normal control,COPD model and prednisone preventive treatment group.Rat COPD model Was established by exposing the rats to cigarette smoke daily.Prednisone Was given through stomachal injection on altemate days.After COPD model Was set up,bronchoalveolar lavage(BAL)Was performed.Total cell counts and neutrophil counts in BALF were examined.Pathological changes of lung tissue Was observe0 by hematoxylin-eosin staining.The morphological indices of pulmonary emphysema(MLI,MAN and PAA)Was measured by a computerizedimage analyzer and compared in three groups.NF-KB expression in lung tissues were detected by immunohistochemistry assay.Rults Emphysema Was confirmed by three morphological indices in COPD model group compared to those of normal control group[MLI:(97.97±11.10)×10-6m vs (47.23±2.80)×10-6 m,MAN:(95.98±l4.89)×106 /m vs (164.21±9.30)×106 /m ,PAA:(64 ±5.7)%vs (44±2.7)%,Plt;0.01].Total cell counts and neutrophil counts in BALF of COPD model group were significantly higher than those of control group[(5.76±0.29)×108/L vs (1.64±0.12)×108/L,(1.26±0.25)×108/L vs (0.099±0.065)×108/L,Plt;0.01].After the preventive treatment with prednisone,MLI,MAN and PAA were significantly changed[(57.66±4.62)×10-6mvs (97.97±11.10)×10-6m,(111.40±16.92)×106个/m2 vs (95.98±14.89)×106个/m2,Plt;0.01;(58±6.1)% vs (64±5.7)%,Plt;0.05],which indicated that airway inflammation and emphysematous injury in preventive treatm ent group were milder than those of COPD mode1.Total ceil counts and neutrophil countsin BALF were found in preventive treatment group as compared to those of COPD model[[(3.18±0.29)×108/L vs (5.76±0.29)×108/L,(0.57±0.12)×108/L vs (1.26±0.25)×108/L,Plt;0.01].The percentage of positive cells of NF-KB nuclear staining in bronchiolar epithelial ceils was significantly increased in the COPD group than that in the control group[(29.02±1.25)% vs (12.17±1.13)%,Plt;0.01],but was significantly decreased in the preventive treatment group[(19.23±1.18)%vs (29.02±1.25)%,Plt;0.01].Conclusions NF-KB may be responsible for the persistence and amplification of inflammation in COPD through neutrophil recruitment and activation.Prednisone may suppress airwayinflammation in COPD by inhibiting NF-KB.

    Release date:2016-09-14 11:52 Export PDF Favorites Scan
  • The synergistic effect of cold stress plus particulate matter 2.5 co-exposure on the occurrence of respiratory inflammation and the post-transcriptional mechanism of cold inducible RNA-binding protein

    ObjectiveTo investigate the synergistic effect of cold stress plus particulate matter 2.5 (PM2.5) co-exposure on the occurrence of respiratory inflammation and the possible post-transcriptional regulation mechanism of cold inducible RNA-binding protein (CIRP).MethodsIn vivo and in vitro experiments were carried out, and the lung tissue specimens from human surgical resection were observed. The rat model and cultured airway epithelial cells 16HBE were respectively divided into four groups (n=8), namely blank control group, 5 °C/18 °C group, PM2.5 group and 5 °C/18 °C+PM2.5 group. The expression of mRNA and protein of representative inflammatory cytokines and CIRP of cultured airway epithelial cells and rat bronchial/pulmonary tissues were respectively detected by ELISA, qPCR, and Western blot. Furthermore, the temporal dynamics of CIRP distribution were observed by cellular immunofluorescence. Finally, immunohistochemical method was used to observe the localization and expression of CIRP in rat and human bronchial/pulmonary tissues at the same time.ResultsIn vivo experiments, the mRNA and protein expression levels of CIRP, interleukin-6, and tumor necrosis factor-α in 5 °C group and PM2.5 group were significantly higher than those in the control group (all P<0.05), while the expression level of mRNA and protein in 5 °C+PM2.5 group were increased most obviously (all P<0.01). The same rule also appeared in the experimental results of each group in the vitro experiment. In addition, CIRP was mainly located in the cell nucleus; compared with the control group, the intracellular shift of CIRP appeared in 18 °C group and PM2.5 group, while the migration phenomenon was most obvious in the 18 °C+PM2.5 group. In the immunohistochemistry of rat bronchus/pulmonary tissue, the expressions of CIRP in the 5 °C group and in the PM2.5 group were significantly higher than those in the control group, and the CIRP expression in 5 °C+PM2.5 group was increased most evidently. Moreover, CIRP was expressed in the bronchial epithelial mucosa of normal people and patients with chronic obstructive respiratory disease (COPD), and it is mainly located in the nucleus of airway mucosal epithelial cells. The CIRP expression of COPD patients was significantly higher than that in the normal population.ConclusionCold stress has a sensitizing effect on airway epithelial inflammatory response induced by PM2.5, and post-transcriptional regulation of CIRP translocation from nucleus to cytoplasm may be an important mechanism.

    Release date:2021-04-25 10:17 Export PDF Favorites Scan
  • Changes of 8-Isoprostane, IL-6 and IL-10 in Exhaled Breath Condensate in COPD patients and Its Relationship with Airway Inflammation

    ObjectiveTo monitor the airway inflammatory factors in exhaled breath condensate(EBC) of severe stable COPD patients during salmeterol/fluticasone (50/500μg, bid) treatment, and explore their clinical significance. MethodsTwenty-four sever stable COPD patients and 18 healthy controls were included in the study. EBC was collected from COPD patients before treatment (day 0) and 14 days, 28 days, 90 days after treatment. Meanwhile lung function test and SGRQ score were measured.Concentrations of IL-6 and IL-10 were measured by liquid chip and 8-isoprostane by enzyme-linked immunosorbent assay. ResultsLevels of 8-isoprostane, IL-6 and IL-10 in EBC were significantly higher in the sever stable COPD patients before treatment compared with the healthy controls. 8-isoprostane was decreased significantly at day 14 compared with day 0[(11.59±4.12) pg/mL vs. (14.17±4.66) pg/mL, P < 0.05], and kept in low level till day 90 (P > 0.05). IL-6 was significantly decreased at day 28 compared with day 0[(1.46±0.19) pg/mL vs. (1.59±0.19) pg/mL, P < 0.05], but did not change significantly till day 90. IL-10 was in low level but showed increase at day 90 compared with day 28[(1.72±0.19) pg/mL vs. (1.62±0.12) pg/mL, P < 0.05]. FEV1 and FEV1/FVC were improved and SGRQ score was decreased after 90 days treatment (P < 0.05). FEV1 was not correlated with 8-isoprostane, IL-6 or IL-10 level. ConclusionsDynamic observation of EBC 8-isoprostane level in severe COPD patients can help in evaluating drug efficacy. IL-10 may play a role in airway anti-inflammation.

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