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find Keyword "Macrophage inflammatory protein" 4 results
  • The expression and clinical features of macrophage inflammatory protein-1beta in patients with non-small cell lung cancer

    Objectives To explore the expression of macrophage inflammatory protein-1beta (MIP-1β) in patients with none-small cell lung cancer (NSCLC) of different pathological types and its association with cancer clinical stages and metastasis of lymph nodes.Methods MIP-1β mRNA from fresh lung tissue of 38 NSCLC patients was amplified by RT-PCR and half-quantified.Immunohistochemical technique was performed to find out the expression of MIP-1β in paraffin-embedded lung tissue from 66 patients with NSCLC.The area and degree of stain were evaluated to determine the positive rate,which was compared between with or without metastasis of lymph nodes,different pathological types and TNM clinical stages.Results MIP-1β protein was found in cytoplasm of malignant cells of squama cell cancer and adenocarcinoma without significant difference between them,while not found in bronchus-alveolus cell cancer.The MIP-1β mRNA expression in squama cell cancer and adenocarcinoma were significant higher than which in bronchus-alveolus cell cancer without significant difference between each other.The positive rates of MIP-1β in lung cancer of Ⅰ,Ⅱ and Ⅲ stages were 74.2%,29.4% and 85.7% respectively,which of Ⅰ and Ⅲ stages cancer were significant higher than Ⅱ stage without significant difference between each other.The positive rates of MIP-1β in lung cancer with or without metastasis of lymph nodes were 45.8% and 76.3% respectively with significant difference between them.Conclusion MIP-1β is expressed in lung cancer cells and relates to the pathological type,TNM stage and the metastasis of lymph nodes.

    Release date:2016-08-30 11:35 Export PDF Favorites Scan
  • The role of E-selection and macrophage inflammatory protein-2 in the airway inflammation in a rat model of chronic obstructive pulmonary disease

    Objective To study the role of E-selection and macrophage inflammatory protein-2(MIP-2) in the airway inflammation in a rat model of chronic obstructive pulmonary disease(COPD).Methods Twenty-four male SD rats were randomly divided into a normal control group and a COPD group.The rat model of COPD was established by exposure to cigarette smoking.Lung function,pathologic features of lung tissues and inflammatory cell differentials in bronchoalveolar lavage fluid(BALF) were investigated.Immunohistochemistry was employed to examine the expression of E-selection in lung tissue.The levels of MIP-2 in BALF,serum and lung tissues were measured with ELISA.Results The changes in histopathology and pathophysiology in the rat COPD model were similar to those in COPD patients.The expression of E-selection on bronchopulmonary vein endothelial cells of the COPD group significantly increased as compared with the normal control group(Plt;0.05) and was positively correlated with the neutrophil counts in BALF in the COPD group(r=0.809,Plt;0.01).The levels of MIP-2 in BALF and lung tissues in the rats with COPD were signicantly higher than those in normal rats,both of which were positively correlated with the neutrophil counts in BALF in the COPD group(r=0.893,Plt;0.01;r=0.716,Plt;0.05).Conclusion Both E-selection and MIP-2 may be involved in the process of airway inflammation in COPD.

    Release date:2016-09-14 11:53 Export PDF Favorites Scan
  • Mechanical Stretch Activates Alveolar Macrophages to Produce Cytokines and Has Synergistic Effect with Lipopolysaccharide in Inducing MIP-2 Release

    Objective To observe the effects of mechanical stretch on cytokines release from alveolar macrophages( AMs) and the expression of macrophage inflammatory protein-2( MIP-2) induced by lipopolysaccharide( LPS) . Methods AMs were divided into the following groups: ①AMs were subjected to 20% elongation by Flexercell 4000T cell stress system for 24 hours and the supernatant was collected to detect the levels of TNF-α, IL-1β, IL-2, IL-4, IL-6, IL-10, IL-12, IFN-γ, macrophage inflammatory protein-1α( MIP-1α) , MIP-2, monocyte chemoattractant protein-1( MCP-1) , granulocyte /macrophage colony stimulating factors( GM-CSF) , interferon inducible protein-10( IP-10) , regulated on activation in normal T-cell expressed and secreted( Rantes) and keratinocyte chemoattractant( KC) , by using LiquiChip system. ② AMs were subjected to 5% , 10% , 15% and 20% elongation for 24 hours and the supernatant was collected to detect the levels of MIP-2. ③AMs were subjected to 20% elongation and MIP-2 in supernatant was detected 1, 3,6, 12, and 24 hours later. ④ AMs were subjected to 20% elongation and/ or LPS at a concentration of 10 ng/mL, and MIP-2 in supernatant was detected 24 hours later. Unstretched AMs were used as control in all kind of test. Results ①The levels of IL-1β, IL-6,MIP-2, MCP-1, IFN-γand IP-10 secreted by stretched AMs were 8. 7, 4. 3, 38. 6, 4. 8, 14. 2 and 5. 0 times those of the control group( all P lt; 0. 001) . ② The levels of MIP-2 secreted by AMs subjected to 10% , 15% and 20% elongation were ( 480. 5 ±93. 1) pg /mL,( 806. 3 ±225. 9) pg/mL and ( 1335. 7 ±18. 5) pg/mL respectively, all significantly higher than those oft he control group [ ( 34. 6 ±11. 4) pg/mL, all P lt;0. 001] . ③ Three hours after the stimulation of stretch the level of MIP-2 began to increase gradually. And 6, 12, and 24 hours after the stimulation the levels of MIP-2 secreted by the AMs were ( 819. 4 ±147. 5) pg/mL, ( 1287. 6 ±380 ±3 ) pg/mL and ( 1455. 9 ±436. 7) pg/mLrespectively, all significantly higher than those of the control group[ ( 33. 4 ±10. 2) pg/mL, all P lt; 0. 001] . ④When the AMs were stimulated individually by LPS( 10 ng /mL) or mechanical stretch ( 20% ) , the levels of MIP-2 increased to ( 1026. 3 ±339. 5 ) pg/mL and ( 1335. 7 ±318. 5 ) pg/mL respectively( both P lt; 0. 001) . When the AMs were costimulated by LPS and mechanical stretch, the level of MIP-2 increased to ( 2275. 3 ±492. 1) pg/mL, implicating a synergistic effect between mechanical stretch and LPS ( F = 121. 983, P lt; 0. 001) . Conclusions Mechanical stretch activates AMs to produce multiple inflammatory cytokines and induce AMs to secret MIP-2 in a strength- and time-dependent manner.Mechanical stretch also has synergistic effect with LPS in inducing MIP-2 release, which might play an important role in the development of ventilator-induced lung injury.

    Release date:2016-09-14 11:23 Export PDF Favorites Scan
  • Changes of Cytokines in Bronchoalveolar Lavage Fluid in Rats Exposed to Paraquat

    ObjectiveTo investigate the changes of inflammatory cytokines in bronchoalveolar lavage fluid (BALF) in rats exposed to paraquat (PQ). MethodsAdult healthy SD rats were randomly divided into a control group (n=8) and three experimental groups (PQ in low dosage of 15 mg/kg,medium dosage of 30 mg/kg,and high dosage of 60 mg/kg,n=24 in each group). The rats in three experimental groups were intragastrically administered with PQ,and the rats in the control group were treated with saline by gavage. Two rats in the control group and six rats in three experimental groups were sacrificed on 1st,7th,14th,and 21st day after exposure respectively. BALF was collected for measurement of interleukin-1(IL-1),IL-6,macrophage inflammatory protein-2(MIP-2),monocyte chemoattractant protein-1(MCP-1),and biopterin by ELISA. ResultsThe levels of cytokines in all experimental groups were higher than those in the control group at any time point. In the exposure day 1 to day 14, IL-1 and biopterin levels in BALF increased significantly with the increase in PQ dose. On 14th and 21st day,IL-6 level in BALF increased significantly with the increase in PQ dosage. The levels of IL-1,IL-6,and biopterin in the experimental groups reached the peak on 14th day. On 14th day,the MIP-2 level in BALF of high-dosage group was significantly higher than that of low-dosage and medium-dosage groups (all P<0.05). The level of MCP-1 in the low-dosage group was lower than that in the medium-dosage and high-dosage groups at any time point (P<0.05). ConclusionIL-1,IL-6,MIP-2,MCP-1,and biopterin may play important roles in the development and progression of PQ-induce lung inflammation.

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