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1.
目的探讨乌司他丁对脂多糖(LPS)诱导的大鼠脓毒症急性肝损伤的治疗作用及相关机制,并与p38丝裂原活化蛋白激酶(MAPK)通路特异性阻断剂SB203580的疗效进行比较。方法通过尾静脉注射5 mg/kg的LPS制造LPS诱导的大鼠脓毒症急性肝损伤模型。将清洁级雄性Sprague-Dawley大鼠32只分为4组:空白组(尾静脉注射1 m L等渗Na Cl溶液),LPS组(尾静脉注射1 m L的LPS),LPS+乌司他丁(UTI)组(建模后立即腹腔注射1 m L乌司他丁),LPS+p38MAPK通道阻断剂(SB)组(建模后立即腹腔注射1 m L SB203580),每组8只。建模后24 h处死大鼠,取下腔静脉血测定大鼠血清中谷氨酸-丙酮酸转氨酶(ALT)、胆红素(BIL)和碱性磷酸酶(AKP)的浓度,利用酶联免疫吸附测定(ELISA)法检测大鼠肝组织肿瘤坏死因子α(TNF-α)水平,Western-blotting法测定大鼠肝组织磷酸化p38蛋白水平表达,以及通过肝组织病理切片和电镜下观察肝细胞微结构的变化。结果建模后24 h,LPS组有2只大鼠死亡。四组大鼠血清AKP水平无显著性差异(F=1.153,P=0.351);与空白组比较,LPS组大鼠血清ALT[(10.7±1.8)U/L vs.(46.3±5.0)U/L]、BIL[(0.63±0.12)μmol/L vs.(1.55±0.16)μmol/L]、肝组织TNF-α[(4 621±793)ng/L vs.(7 222±773)ng/L]、磷酸化p38蛋白水平[(12 073±172)ng/L vs.(15 515±630)ng/L]均显著升高(P均0.05);病理切片提示LPS组肝细胞水样变性、炎症细胞浸润、肝细胞再生;电镜结果也提示肝细胞核固缩,线粒体嵴肿胀、断裂或者消失,内质网结构不清。而LPS+UTI组和LPS+SB组肝组织TNF-α、磷酸化p38蛋白表达均与空白组无显著差异(P均0.05);病理切片提示两组肝细胞水样变性、炎症细胞浸润、肝细胞再生较LPS组轻,但较空白组仍严重;电镜结果显示肝细胞核、线粒体及内质网结构变化较LPS组减轻。与空白组相比,LPS+SB组血清ALT无显著差异(P0.05),而LPS+UTI组血清ALT明显升高[(10.7±1.8)U/L vs.(29.5±2.5)U/L,P0.05],提示SB203580对血清ALT作用更明显;而与空白组比较,LPS+UTI组血清BIL水平无显著差异(P0.05),而LPS+SB组血清BIL明显升高[(0.63±0.12)μmol/L vs.(1.52±0.20)μmol/L,P0.05],提示乌司他丁对血清BIL作用更明显。结论乌司他丁可减轻LPS引起的大鼠脓毒症急性肝损伤,是通过p38MAPK通路来发挥炎症抑制作用的。与p38MAPK通路特异性阻断剂比较,两者在减轻TNF-α、磷酸化p38蛋白等作用上相似,但是对血清学指标的影响有一定差别。  相似文献   

2.
目的观察在转化生长因子β1(TGF-β1)、-β1受体Ⅰ抑制剂(LY364947)和p38MAPK抑制剂(SB203580)作用下,绒毛膜癌JEG-3细胞中c-myc mRNA的表达变化。方法用5 ng/ml的TGF-β1以及1μM、3μM TGF受体Ⅰ抑制剂(LY364947)和1μM、3μM p38MAPK抑制剂(SB203580)作用JEG-3细胞,用qRT-PCR技术检测各组细胞中c-myc mRNA的表达差异。结果与正常对照组比较,5 ng/ml TGF-β1组细胞中c-myc mRNA的表达水平升高(P0.05);p38 MAPK抑制剂(SB203580)和TGF-β受体Ⅰ抑制剂(LY364947)均抑制了c-myc mRNA的表达,且抑制作用与应用浓度呈正相关(P0.05)。结论 c-myc作为TGFβ1/Smads通路的下游靶基因,其调控有赖于TGFβ1与受体Ⅰ的结合,同时,在绒毛膜癌JEG-3细胞中,TGF-β1介导的Smad途径与p38 MAPK信号转导存在交互作用。  相似文献   

3.
目的 基于p38丝裂原活化蛋白激酶/核转录因子-κB(p38 MAPK/NF-κB)信号通路,探究Maresin-1对急性胰腺炎(AP)小鼠的影响。方法 随机将50只小鼠分为假手术组(sham组)、急性胰腺炎组(AP组)、Maresin-1低剂量组(Mar-1 L组)、Maresin-1高剂量组(Mar-1 H组)和p38 MAPK信号通路抑制剂组(SB203580组),每组各10只。除sham组外,其余各组小鼠均采用腹腔注射雨蛙素联合脂多糖(LPS)建立AP模型;sham组注射等量0.9%氯化钠溶液。Mar-1 L组、Mar-1 H组和SB203580组分别在注射Maresin-1和SB203580雨蛙素3 h后,第1次腹腔注射Maresin-1(25、50 ng/kg)和SB203580溶液(5 mg/kg),12 h后进行第2次腹腔注射;sham组和AP组注射等量0.9%氯化钠溶液。采用苏木精-伊红(HE)染色观察小鼠胰腺组织病理损伤;酶联免疫吸附实验(ELISA)法检测血清淀粉酶、脂肪酶、炎性因子水平;试剂盒测定胰腺组织髓过氧化物酶(MPO)活性;免疫组化法检测胰腺组织中CD6...  相似文献   

4.
目的:探讨p38MAPK抑制剂(SB203580)对外培养的RAW246.7细胞分泌炎症因子[肿瘤坏死因子-α(TNF-α)、白介素-6(IL-6)]的影响。方法:以体外正常培养RAW246.7细胞为A组,以0.1 mg/m L钛颗粒(Ti Ps)刺激RAW246.7细胞为B组,以10μmol/L SB203580干预的B组细胞为C组。Western blot检测p-p38MAPK蛋白表达,ELISA检测细胞分泌TNF-α,IL-6水平。结果:与A组比较,B组p-p38MAPK蛋白含量培养液上清中TNF-α、IL-6含量都明显升高(P<0.05);与B组比较,C组p-p38MAPK蛋白明显抑制(P<0.05),培养液上清中TNF-α、IL-6含量都明显下降(P<0.05);与A组比较,C组p-p38MAPK蛋白明显抑制(P<0.05),培养液上清中TNF-α、IL-6含量亦有所减少,但两组之间的差异没有统计学意义(P>0.05)。结论:Ti Ps能通过刺激RAW246.7细胞,激活p38MAPK通路,上调TNF-α、IL-6等炎症因子的表达。p38MAPK信号通路可作为抑制炎性骨溶解的新靶点,对临床上防治人工关节置换术后无菌性松动具有重要意义。  相似文献   

5.
p38MAPK信号通路与应力介导成肌细胞的凋亡(英文)   总被引:1,自引:0,他引:1  
背景:在体内条件下,细胞力学的功能研究因其所处生理环境的复杂性、实验条件的不易控制而很难得到满意结果。目的:在成功构建成肌细胞体外培养-力学刺激模型的基础上,研究p38MAPK信号通路在成肌细胞凋亡中的作用及其机制。方法:将体外培养的C2C12细胞分为对照组和SB203580组,SB203580组中加入20mmol/L的p38MAPK抑制剂SB203580。应用细胞应力加载装置FlecellStrainUnit-5000T给细胞提供15%的力值,分别施加0,6,12,24h的周期性张应力。每分钟10个循环,每循环包括3s牵张,3s松弛。Hoechst33258染色观察细胞的形态学变化;流式细胞仪检测细胞凋亡情况;RT-PCR法检测促凋亡基因baxmRNA的表达;Westernblot检测信号通路中p38MAPK和p-p38MAPK蛋白的表达。结果与结论:随着加力时间的延长,细胞逐渐出现核固缩及凋亡小体,凋亡率增加(P<0.05),baxmRNA表达增多(P<0.05);细胞p38MAPK和p-p38MAPK蛋白均在加力6h达到最低,此后逐渐升高。p38MAPK抑制剂SB203580可抑制加力引起的细胞凋亡,减少baxmRNA及p38MAPK和p-p38MAPK蛋白的表达(P<0.05)。说明p38MAPK信号通路在应力介导的成肌细胞凋亡中起到重要的作用。  相似文献   

6.
背景:当牙齿受异常咬合力时会导致牙体吸收、牙周组织的大量破坏.目的:研究牙周膜成纤维细胞在受到周期性张应力刺激后是否发生凋亡及p38MAPK信号通路是否参与该凋亡过程.方法:取4~7代成纤维细胞,同步化后随机分为对照组、加力组和SB203580组.加力组和SB203580组细胞加载力值为12%表面应变率,加力频率为6个循环/min,即5 s拉伸,5 s松弛.SB203580组细胞在加力前1 h加入终浓度为20 mmol/L的p38MAPK抑制剂SB203580.分别在加力6,12,24 h,取各组细胞,流式细胞仪检测细胞凋亡,RT-PCR检测细胞凋亡基因bax mRNA的表达.结果与结论:与对照组比较,加力后成纤维细胞凋亡率及bax mRNA表达增加(P < 0.05),且随着加力时间的延长而增强,12 h达高峰,之后逐渐下降.与加力组比较,SB203580组对应时间点细胞凋亡减少(P < 0.05),bax mRNA表达降低.说明细胞受到力学刺激会发生凋亡,而丝裂原活化蛋白激酶p38MAPK信号通路参与了该凋亡过程.  相似文献   

7.
目的 探讨达格列净通过p38丝裂原活化蛋白激酶(p38 MAPK)信号通路对D-葡萄糖诱导的人肾小球足细胞凋亡、自噬、炎症反应及氧化损伤的影响。方法 体外培养人肾小球足细胞(HGPCs),分为对照组(5 mmol/L D-葡萄糖)、D-葡萄糖组(30 mmol/L D-葡萄糖)、达格列净组(30 mmol/L D-葡萄糖+50 μmol/L达格列净)、抑制剂组(30 mmol/L D-葡萄糖+10 μmol/L p38 MAPK通路抑制剂SB 203580)、达格列净+抑制剂组(30 mmol/L D-葡萄糖+50 μmol/L达格列净+10 μmol/L SB 203580)和达格列净+激活剂组(30 mmol/L D-葡萄糖+50 μmol/L达格列净+10 μmol/L p38 MAPK通路激活剂C16-PAF)。对照组与D-葡萄糖组用D-葡萄糖干预24 h;其他组D-葡萄糖干预24 h后相应药物继续干预 24 h。采用细胞计数试剂盒-8(CCK-8)检测细胞活力;采用Hoechst 33258染色法检测细胞凋亡率;采用ELISA检测白细胞介素(IL)-1β、IL-6、肿瘤坏死因子α(TNF-α)、丙二醇(MDA)和超氧化物歧化酶(SOD)的表达水平;采用实时荧光定量PCR(RT-qPCR)检测酵母ATG6同源物(Beclin-1)、微管相关蛋白1轻链3 Ⅱ(LC3 Ⅱ)mRNA表达水平;采用Western印迹法检测Beclin-1、LC3 Ⅱ、p53、p38 MAPK及p-p38 MAPK蛋白表达。结果 与对照组相比,D-葡萄糖组细胞活力降低(P<0.05),达格列净组细胞活力升高(P<0.05),细胞凋亡率,IL-1β、IL-6、TNF-α、MDA、Beclin-1、LC3 ⅡmRNA和蛋白、p53和p-p38 MAPK蛋白水平升高(P<0.05),SOD水平降低(P<0.05)。与D-葡萄糖组相比,达格列净组和抑制剂组细胞凋亡率、IL-1β、IL-6、TNF-α、MDA、Beclin-1、LC3 ⅡmRNA和蛋白、p53和p-p38 MAPK蛋白水平降低(P<0.05),SOD水平升高(P<0.05)。与达格列净组相比,达格列净+抑制剂组细胞凋亡率、IL-1β、IL-6、TNF-α、MDA、Beclin-1、LC3 Ⅱ mRNA和蛋白、p53和p-p38 MAPK蛋白水平进一步降低(P<0.05),SOD水平进一步升高(P<0.05);达格列净+激活剂组与达格列净+抑制剂组变化趋势相反,与达格列净组差异有统计学意义(P<0.05)。结论 达格列净可抑制高糖诱导的人HGPCs的凋亡、自噬、炎症反应及氧化损伤,其作用机制可能与抑制p38 MAPK通路信号转导相关。  相似文献   

8.
目的 观察在转化生长因子β1(TGF-β1)、-β1受体Ⅰ抑制剂(LY364947)和p38MAPK抑制剂(SB203580)作用下,绒毛膜癌JEG- 3细胞中c-myc mRNA的表达变化.方法 用5 ng/ml的TGF-β1以及1 μM 、3 μM TGF受体Ⅰ抑制剂(LY364947)和1 μM 、3 μM p38MAPK抑制剂(SB203580)作用JEG- 3细胞,用qRT-PCR技术检测各组细胞中c-myc mRNA的表达差异.结果 与正常对照组比较,5 ng/ml TGF-β1组细胞中c-myc mRNA的表达水平升高(P〈0.05);p38 MAPK抑制剂(SB203580)和TGF-β受体Ⅰ抑制剂(LY364947)均抑制了c-myc mRNA的表达,且抑制作用与应用浓度呈正相关(P〈0.05).结论 c-myc作为TGFβ1/Smads通路的下游靶基因,其调控有赖于TGFβ1与受体Ⅰ的结合,同时,在绒毛膜癌JEG-3细胞中,TGF-β1介导的Smad途径与 p38 MAPK信号转导存在交互作用.  相似文献   

9.
背景:在体内条件下,细胞力学的功能研究因其所处生理环境的复杂性、实验条件的不易控制而很难得到满意结果。目的:在成功构建成肌细胞体外培养-力学刺激模型的基础上,研究p38MAPK信号通路在成肌细胞凋亡中的作用及其机制。方法:将体外培养的C2C12细胞分为对照组和SB203580组,SB203580组中加入20mmol/L的p38MAPK抑制剂SB203580。应用细胞应力加载装置FlecellStrainUnit-5000T给细胞提供15%的力值,分别施加0,6,12,24h的周期性张应力。每分钟10个循环,每循环包括3s牵张,3s松弛。Hoechst33258染色观察细胞的形态学变化;流式细胞仪检测细胞凋亡情况;RT-PCR法检测促凋亡基因baxmRNA的表达;Westernblot检测信号通路中p38MAPK和p-p38MAPK蛋白的表达。结果与结论:随着加力时间的延长,细胞逐渐出现核固缩及凋亡小体,凋亡率增加(P〈0.05),baxmRNA表达增多(P〈0.05);细胞p38MAPK和p-p38MAPK蛋白均在加力6h达到最低,此后逐渐升高。p38MAPK抑制剂SB203580可抑制加力引起的细胞凋亡,减少baxmRNA及p38MAPK和p-p38MAPK蛋白的表达(P〈0.05)。说明p38MAPK信号通路在应力介导的成肌细胞凋亡中起到重要的作用。  相似文献   

10.
目的:探讨升降散保护脓毒症心肌损伤的分子机制。方法:将雄性成年SD大鼠随机分为正常组、模型组、升降散组和p38抑制组。采用盲肠结扎穿孔术(CLP)制备脓毒症大鼠模型,造模后4、8、12、24h进行观察。升降散组和p38抑制组大鼠分别于造模前2h给予升降散灌胃和SB203580皮下注射。留取腹主动脉血标本和心脏组织作相关检测。观察和检测各时间点大鼠死亡率、血清心肌肌钙蛋白I(cTnI)、B型利钠肽(BNP)、白介素-6(IL-6)水平以及心肌p-p38~(MAPK)蛋白、p-p38~(MAPK) mRNA、IL-6mRNA的表达。结果:模型组大鼠24h死亡率25%,升降散组、p38抑制组大鼠死亡率均为15%,组间差异无统计学意义。模型组大鼠血清cTnI、BNP升高;升降散组cTnI造模后8、12、24h较模型组改善(P0.001),BNP造模后4、12、24h较模型组改善(P0.05)。升降散组和p38抑制组cTnI、BNP造模后各时间点差异无统计学意义。模型组大鼠血清IL-6升高,升降散组各时间点IL-6改善(P0.001)。模型组大鼠心肌各时间点p-p38~(MAPK)蛋白水平升高,升降散组各时间点p-p38~(MAPK)蛋白水平均改善(P0.05)。模型组大鼠心肌p-p38~(MAPK) mRNA表达升高,升降散组p-p38~(MAPK) mRNA在8、12、24h改善(P0.05)。模型组大鼠心肌IL-6mRNA升高,升降散组和p38抑制组造模后4、8、12h均改善(P0.05),升降散组IL-6mRNA造模后12h下降优于p38抑制组(P0.05)。结论:升降散可有效降低脓毒症早期大鼠血清cTnI和BNP。升降散改善脓毒症心肌损伤可能与其下调脓毒症早期大鼠心肌p-p38~(MAPK)蛋白水平,降低p-p38~(MAPK) mRNA、IL-6mRNA表达,从而抑制过度炎症反应有关。  相似文献   

11.
背景:牙周膜细胞对于维持牙周组织的形态和功能起着关键作用,不良应力可能引起其合成过量炎症因子从而最终引起牙周组织破坏。目的:分析p38丝裂原激活蛋白在压力诱导人牙周膜成纤维细胞合成炎症因子白细胞介素6过程中所起的作用。设计:观察对比实验。单位:解放军第四军医大学口腔生理实验室。材料:牙周膜成纤维细胞:取自因正畸需要拔除的20颗健康恒前磨牙的12~16岁青少年牙根中1/3牙周膜组织。试剂和仪器:白细胞介素6ELISA试剂盒(第四军医大学免疫学教研室);酶联免疫检测仪(华东电子管厂);p38p38丝裂原激活蛋白阻断剂特异阻断剂SB203580(Biochemical公司生产,第一军医大学病理生理教研室姜勇教授惠赠)。方法:采用常规组织块法将牙周膜组织细胞进行原代培养至第4、5代,将细胞随机分为4组:加压对照组:不对细胞加压及预处理;加压组:以200kPa持续加压细胞,不加预处理;预处理对照组:细胞加压前1h上清中加入10g/L二甲基亚砜,加压方式、时间同加压组;预处理组:细胞加压前1h预处理,即在上清中加入p38丝裂原激活蛋白阻断剂的特异阻断剂SB203580,浓度为1μmol/L,加压方式、时间同加压组。各组分别在持续加压后16,24h采集标本,通过酶标记免疫吸附测定法测定不同时间点各组细胞中白细胞介素6表达量。主要观察指标:压力对人牙周膜成纤维细胞产生的白细胞介素6的量的影响结果及p38丝裂原激活蛋白阻断剂对压力诱导人牙周膜成纤维细胞产生的白细胞介素6量的影响结果。结果:加压组细胞经持续加压16,24h后的白细胞介素6表达量分别为(143.1±0.42),(49.46±1.01)ng/L,明显高于加压对照组[(18.36±0.43),(18.78±0.50)ng/L,P<0.05];预处理组经持续加压16,24h后的白细胞介素6表达量分别为(56.39±0.72),(21.52±1.39)ng/L明显低于预处理对照组[(137.96±0.54),(48.74±0.79)ng/L,P<0.05]。结论:p38丝裂原激活蛋白是机械压力诱导人牙周膜成纤维细胞产生白细胞介素6的重要环节。  相似文献   

12.
Objective To observe the protective mechanism of angiotensin-converting enzyme (ACE) 2 on lipopolysaccharide (LPS) -induced hepatocyte inflammation by inhibiting P38 mitogen activated protein kinase (MAPK)/ activator protein (AP)-l pathway. Methods Rat liver BRL cells after immortalized culture were randomly divided into five kinds of groups: control group, LPS (10 ug/ mL) group, LPS + recombinant(r) ACE2 (5, 10, 20 ng/mL rACE2 for 30 min before cells stimulated with LPS) groups, LPS+ACE2 inhibitor MLN-4760 (10'7, 10"6, 10'5 mmol/L MLN-4760 for 30 min before cells stimulated with LPS) groups, LPS + rACE2 (20 ng/mL rACE2 for 30 min before cells stimulated with LPS) + P38MAPK inhibitor SB203580 (10-5 mmol/L SB203580 for 30 min before cells stimulated with LPS) groups. The changes in protein levels of ACE2, P38MAPK, p-P38MAPK and AP-1 were detected by western blot after LPS exposure for 6, 12 and 24 hours, and the mRNA expressions of P38MAPK, AP-1 and tumor necrosis factor-a were quantified by real-time RT-PCR. Results Compared with control group, the protein levels of ACE2, P38MAPK and AP-1 were up-regulated in LPS-induced hepatic cells in a time-dependent manner, peaking at 12 h after LPS stimulation (all PO.05). Compared with LPS group, the mRNA expressions of AP-1, P38MAPK, p-P38MAPK and tumor necrosis factor-a decreased significantly in rACE2 group (all PO.05). The dose of 20 ng/mL rACE2 had the best inhibitory effects on the mRNA expression of AP-1 (0.120.002 vs. 0.040.005, PO.01), P38MAPK (0.170.02 vs. 0.020.002, P<0.01) and p-P38MAPK(0.290.01 vs. 0.020.01, /><0.01)compared with LPS group. The mRNA expressions of AP-1, P38MAPK and p-P38MAPK increased in MLN-4760 group in a concentration dependent manner (all P<0.05). Furthermore, the inhibitory effects of rACE2 on AP-1 and tumor necrosis factor-a levels were cancelled by SB203580. Conclusion The rACE2 can alleviate the LPS-induced hepatocyte injury by down regulating the P38MAPK/AP-1 signaling pathway. © 2018 Chinese Medical Association. All Rights Reserved.  相似文献   

13.
目的探讨p38丝裂原活化蛋白激酶(p38MAPK)对白细胞介索-1β(IL-1β)、IL-6的调节作用,进一步明确可能涉及的下游信号分子。方法以脂多糖(LPS)诱导的HeLa细胞为炎症模型,分别利用p38 MAPK、胞浆型磷脂酶A2(cPLA2)及环氧化酶-2(COX-2)特异性抑制剂SB203580、AACOCF3和NS-398以及cPLA2反义寡核苷酸(SK7111),通过检测HeLa细胞中LPS诱导的磷酸化p38MAPK、cPLA2及COX-2活性或表达的改变,观察其与上清液中IL-1β、IL-6含量变化的关系。结果SB203580可以明显抑制p38 MAPK、cPLA2的活性以及IL-1β、IL-6的产生;AACOCF3也可下调cPLA2活性以及IL-1β和IL-6的生成,且呈剂量依赖关系;而在HeLa细胞中几乎检测不到cPLA2下游信号分子COX-2的表达,也未观察到NS-398对IL-1β、IL-6表达的作用。结论在HeLa细胞中,p38MAPK/cPLA2途径介导LPS诿导细诱导细胞因子IL-1β和IL-6,而作为cPLA2下游酶之一的COX-2并没有参与此调节过程。  相似文献   

14.
Studies indicate that polymicrobial sepsis in humans and animals is characterized by a biphasic response, which is dominated early by proinflammation, but over time develops into a state of generalized anti-inflammation (depressed Th1 cell response and decreased macrophage (M0) capacity to release proinflammatory cytokines). However, with respect to the macrophage, it remains unknown what mechanism(s) controls this change. In this regard it is well documented that the p38 mitogen activated protein kinase pathway (MAPK) plays a central role in the regulation of Mphi functions. However, the contribution of p38 MAPK activation to the loss of these Mphi functions in polymicrobial septic animals remains unknown. To determine this we induced polymicrobial sepsis in C3H/HeN male mice using cecal ligation and puncture (CLP). Twenty-four hours post-CLP, during the late, immune-suppressed stage of sepsis, splenic and peritoneal Mphi were harvested, stimulated with lipopolysaccharide (LPS), and the activation of p38 MAPK assessed. In Mphi from CLP mice, p38 MAPK activity was markedly increased. To determine the extent that these changes in p38 MAPK had an impact on Mphi immune function, cells were pretreated with 10 microM of the p38 MAPK inhibitor, SB203580, or with DMSO vehicle, and subsequently stimulated with LPS. IL-10, IL-6, IL-12, and nitric oxide release was determined. Our results indicate that with LPS stimulation alone, there was a marked increase in the release of the anti-inflammatory mediator, IL-10 after CLP. Alternatively, proinflammatory IL-12 and IL-6 release was suppressed. Treatment with SB203580 suppressed the increase in IL-10 release seen after CLP, while partially restoring IL-12 secretion. IL-6 release was partially restored only in splenic macrophages treated with SB203580. To the extent that these in vitro findings could be translated to an in vivo setting, we assessed the in vivo effects of p38 MAPK inhibition on survival. Mice were given 100 mg of SB203580/kg body weight or saline vehicle (intraperitoneal) either immediately post-CLP or 12 h post-CLP. Delayed administration of SB203580 significantly improved survival, while also preventing the increased NO and IL-10 release and improving IL-12 release by macrophages. These results suggest that p38 MAPK pathway plays a critical role in the induction of an immune-suppressive macrophage phenotype, and that inhibition of p38 MAPK markedly improves survival following polymicrobial sepsis.  相似文献   

15.
16.
背景:当牙齿受异常咬合力时会导致牙体吸收、牙周组织的大量破坏。目的:研究牙周膜成纤维细胞在受到周期性张应力刺激后是否发生凋亡及p38MAPK信号通路是否参与该凋亡过程。方法:取4~7代成纤维细胞,同步化后随机分为对照组、加力组和SB203580组。加力组和SB203580组细胞加载力值为12%表面应变率,加力频率为6个循环/min,即5s拉伸,5s松弛。SB203580组细胞在加力前1h加入终浓度为20mmol/L的p38MAPK抑制剂SB203580。分别在加力6,12,24h,取各组细胞,流式细胞仪检测细胞凋亡,RT-PCR检测细胞凋亡基因baxmRNA的表达。结果与结论:与对照组比较,加力后成纤维细胞凋亡率及baxmRNA表达增加(P〈0.05),且随着加力时间的延长而增强,12h达高峰,之后逐渐下降。与加力组比较,SB203580组对应时间点细胞凋亡减少(P〈0.05),baxmRNA表达降低。说明细胞受到力学刺激会发生凋亡,而丝裂原活化蛋白激酶p38MAPK信号通路参与了该凋亡过程。  相似文献   

17.
目的 观察p38丝裂素活化蛋白激酶(p38MAPK)信号途径在高氧肺损伤中的表达,探讨N-乙酰半胱氨酸(NAC)在高氧肺损伤中的保护作用及机制.方法 将30只幼年Wistar大鼠按随机数字表法分为空气对照组(A组)、高氧暴露组(B组)、高氧+NAC干预组(C组)、高氧+p38MAPK特异性抑制剂(SB203580)干预组(D组)、高氧+NAC+SB203580联合干预组(E组),每组6只.实验7 d后,光镜下观察肺组织病理改变,并行肺损伤评分;测定肺湿/干重(W/D)比值、支气管肺泡灌洗液(BALF)中总蛋白(TP)含量、肺通透系数;采用免疫组化法检测磷酸化p38MAPK(p-p38MAPK)在肺组织中的分布;用蛋白质免疫印迹法检测p-p38MAPK蛋白含量.结果 与A组比较,高氧各组均有不同程度的肺损伤,但药物干预各组(C、D、E组)肺损伤均较B组有所减轻.免疫组化显示,高氧各组p-p38MAPK阳性表达较A组明显增强,尤高表达在炎性浸润细胞;药物干预后(C、D、E组)p-p38MAPK阳性细胞较B组明显减少.蛋白质免疫印迹法显示,B组p-p38MAPK蛋白含量明显高于A组(0.20±0.03比0.11±0.01,P<0.05);干预后C、D、E组p-p38MAPK蛋白含量低于B组(0.16±0.02、0.15±0.01、0.14±0.02比0.20±0.03,均P<0.05),但仍高于A组(均P<0.05),而C、D、E组间则无明显差异.各组肺W/D比值、BALF中TP含量、肺通透系数改变与p-p38MAPK蛋白含量变化趋势一致.结论 高氧应激可激活损伤肺组织p38MAPK活性;NAC抗氧化肺保护作用机制可能是通过下调高氧诱导p38MAPK的激活而对肺损伤起保护作用.  相似文献   

18.
【目的】探讨阻断p38丝裂原活化蛋白激酶(p38MAPK)信号通路对大鼠急性肾缺血再灌注损伤(IRI)的影响。【方法】sD大鼠24只,随机分为3组,每组8只。对照组(S组):仅结扎右侧肾蒂,左肾蒂游离;缺血再灌注组(IR组):结扎右侧肾蒂,夹闭左侧肾蒂60min后,开放灌注24h;p38MAPK抑制剂组(SB组):静脉注射p38MAPK特异抑制剂SB203580(10mg/kg),余同IR组。检测三组血清尿素氮(BUN)、肌酐(Cr)、肿瘤坏死因子(TNF)-α、白介素(IL)-I水平和p38MAPK蛋白表达、组织病理评分并比较。【结果】与S组比较,IR组血BUN、Cr、TNF—α、IL-1水平、p38MAPK蛋白表达量及组织病理评分均显著增加(P〈0.05);上述指标SB组较IR组显著下降(P〈0.05)。【结论】SB203580能阻断p38MAPK信号通路,减少p38MAPK表达,抑制炎症细胞因子的释放,减轻肾缺血再灌注损伤。  相似文献   

19.
Bacterial lipopolysaccharide (LPS) is known to induce endotoxic shock with inducible nitric oxide (NO) synthase (iNOS) expression and NO production. However, the major place for NO production in shock remains unclear. Although there is some literature about p38 mitogen-activated protein kinase (MAPK) in regulating LPS-induced iNOS expression, the results are contradictory. To interpret the precise cell mechanism and the role of p38 MAPK in the expression of iNOS during endotoxic shock, we carried out the following investigations. A severe endotoxic shock model was reproduced in mice 6 h after LPS injection. The plasma NO level was increased in a dose- and time-dependent manner after LPS stimulation and was suppressed by administration of SB203580 [4-(4-fluorophenyl)-2-4-methylsulfonylphenyl-5-(4-pyridyl) imidazole], a highly specific inhibitor of p38 MAPK. The iNOS expression was increased in many organs, including heart, liver, spleen, lung, gut, and kidney in endotoxic shock. Among them, the highest expression of iNOS mRNA and protein was in the lung, moderate expression was in the spleen and kidney, and the lowest expression was in the heart, gut, and liver. The level of expression in lung was 5.5 times that of iNOS mRNA and was 3.1 times that of iNOS protein than in heart, and 1.6 and 1.8 times that of iNOS mRNA and 1.7 and 1.4 times that of iNOS protein than in spleen and kidney, respectively. The p38 MAPK activity increased after LPS injection, and SB203580 markedly reduced LPS-induced expressions of iNOS protein and mRNA in the lung. The results indicates that lung, spleen, and kidney are the major places for iNOS expression in endotoxic shock and are important therapeutic target organs for attenuating NO production in shock treatment.  相似文献   

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