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1.
目的:探讨S100A6经由巨噬细胞介导的促血管生成作用及机制。方法:(1)用重组蛋白 GST-hS100A6处理巨噬细胞后:①收集上清制备条件培养基(简称A6-Mφ-CM),并用之重悬人脐静脉内皮细胞(HUVEC),用体外血管形成试验检测各处理因素对血管形成的影响;②分别用实时荧光定量PCR和Western blot检测巨噬细胞的M2型标志物CD163及促血管形成因子CCL2、IL-6、VEGFA的mRNA和蛋白质水平,以及JAK2和STAT3的蛋白质及其磷酸化水平;③用Transwell迁移试验检测巨噬细胞迁移能力的变化。(2)使用JAK2抑制剂(XL019)预处理巨噬细胞后再加GST-hS100A6处理,检测S100A6促巨噬细胞迁移作用的变化。以重组蛋白GST为实验对照。 结果:(1)A6-Mφ-CM组的血管分支数和血管分支长度既明显高于GST-Mφ-CM组(P值均小于0.05),也明显高于GST-hS100A6直接处理的HUVEC组(P<0.001,P<0.01),提示S100A6处理后的巨噬细胞具有促进血管形成的作用;(2)GST-hS100A6处理后的巨噬细胞中,CD163、CCL2、IL-6、VEGFA的mRNA和蛋白质水平明显高于GST组(P值均小于0.05),提示S100A6诱导巨噬细胞向促血管表型(pro-angiogenic phenotype)转化;(3)GST-hS100A6处理后,巨噬细胞的迁移数是GST组的1.4倍(P<0.01),提示S100A6具有招募巨噬细胞的作用;(4)GST-hS100A6处理组巨噬细胞的JAK2和STAT3的蛋白质及其磷酸化水平都明显高于GST组(P值均小于0.05),而JAK2抑制剂XL019可部分抑制S100A6促进巨噬细胞迁移的作用(P<0.01),提示S100A6促进巨噬细胞迁移作用机制涉及JAK2/STAT3信号通路的激活。 结论:微环境中的S100A6可通过招募巨噬细胞并进一步诱导其向促血管表型转化,进而促进新生血管形成;其招募巨噬细胞的机制涉及JAK2/STAT3信号通路的激活。  相似文献   

2.
探讨JNK通路抑制剂SP600125对胃癌细胞SGC7901增殖、凋亡、迁移和周期的影响及其机制。以胃癌细胞SGC7901为研究对象,实验分为空白对照组及药物处理组,采用CCK-8法检测不同浓度及不同作用时间SP600125对SGC7901增殖活性的影响,筛选出最佳作用时间与浓度用于后续实验。通过流式细胞术检测SP600125对SGC7901凋亡和周期的影响。Transwell迁移实验检测其对SGC7901迁移能力的影响。Western blotting检测SP600125作用后各组细胞GM130、JNK、p-JNK、c-jun、cleaved caspase-3、bcl-2、MMP-7蛋白水平的变化。研究表明,与空白对照组相比,10μmol/L、20μmol/L、30μmol/L、40μmol/L、50μmol/L浓度均能使SGC7901增殖活性降低,且在40μmol/L水平作用24 h其增殖抑制率最高(p0.05)。在此水平可使细胞凋亡率明显增加(p0.001)。与空白对照组相比,药物处理组细胞处于G2/M期的比例显著增加(p0.01),处于G0/G1期比例减少(p0.01),S期无明显变化,细胞迁移能力也明显下降(p0.01)。Western blotting显示药物处理组与空白对照组相比,蛋白GM130(p0.01)、JNK(p0.01)、P-JNK(p0.01)、c-jun(p0.01)、BCL-2(p0.01)、MMP-7(p0.05)的表达明显下降,cleaved caspase-3表达升高(p0.01)。以上研究表明JNK通路抑制剂SP600125可抑制胃癌细胞SGC7901增殖活性,促进其凋亡,使其周期阻滞于G2/M期,抑制胃癌细胞迁移能力,这可能与其抑制GM130、c-jun、MMP-7等蛋白的表达有关。  相似文献   

3.
巨噬细胞极化是根据周围刺激环境做出表型调节的一个过程.一般极化为2个表型,分别为经典激活的M1巨噬细胞和替代激活的M2巨噬细胞.简而言之,M1巨噬细胞的特征是促炎和抗肿瘤;M2巨噬细胞是抗炎和促肿瘤.巨噬细胞极化被认为是人体生理和病理的关键调节器,其发挥作用的有效性依赖于关键因子的协调表达,而这些关键因子的表达在转录后...  相似文献   

4.
血小板反应蛋白4 (thrombospondin 4, THBS4) 属于THBS家族成员,是细胞外基质分泌的蛋白质,参与调控细胞增殖、黏附及血管生成等多种生理过程。近来研究表明,机体在炎症刺激下加速产生THBS4并诱导巨噬细胞粘附与积累。我们的前期研究证实,THBS4在肝癌(hepatocellular carcinoma,HCC)中发挥促癌作用,但THBS4对肝癌免疫微环境的影响尚不明确。本文旨在分析THBS4通过诱导肿瘤相关巨噬细胞M2型极化,促进肝癌细胞转移的作用。通过肝癌条件培养基(HCC conditioned medium,HCM)模拟肿瘤微环境,发现在HCM作用下巨噬细胞中THBS4表达呈时间依赖性升高(P<0.05);下调THBS4促使M1型巨噬细胞标志物IL-1β、CD86的表达升高(P<0.01),而M2型标志物 IL-10和CD206表达降低(P<0.01)。进一步通过Transwell共培养实验检测THBS4诱导的M2型巨噬细胞对肝癌转移的影响。将下调THBS4的M2型巨噬细胞(M2-TAMs)与HepG2肝癌细胞进行共培养。结果显示,下调THBS4的M2-TAMs明显抑制了HepG2细胞的侵袭和迁移能力(P均<0.01)。综上所述,肿瘤微环境促进巨噬细胞中THBS4表达,THBS4可能通过诱导巨噬细胞M2型极化促进肝癌细胞侵袭转移。本文为探究THBS4诱导肝癌免疫微环境的建立提供了一些新的实验依据。  相似文献   

5.
探究白术内酯Ⅱ(atractylenolideⅡ,AT-Ⅱ)对M2型巨噬细胞极化与A549细胞迁移能力的影响,并分析其潜在机制。利用PMA将THP-1细胞诱导成M0巨噬细胞,然后加入IL-4和IL-13继续诱导为M2型巨噬细胞。利用Transwell小室将M2型巨噬细胞与A549细胞共培养,分别给予0、2.5、5μmol/L的AT-Ⅱ进行作用。采用MTT实验测定共培养条件下AT-Ⅱ对A549细胞活力的影响;采用Real-time PCR检测M2型巨噬细胞Arg-1的mRNA表达水平;采用ELISA检测共培养体系中TNF-α、IL-1β的含量;采用WB检测A549细胞TLR4、p-p65、NF-κB(p65)、PDL1的蛋白表达水平;采用划痕实验检测A549细胞的迁移能力。结果显示,共培养条件下,与对照组相比,实验组(2.5、5μmol/L)A549细胞活力降低(2.5μmol/L组P>0.05、5μmol/L组P<0.01);M2型巨噬细胞特异性基因Arg-1的mRNA表达水平显著降低(P<0.01);M1型巨噬细胞相关炎性因子TNF-α、IL-1β含量增多但无显著差...  相似文献   

6.
目的:探讨腺苷脱氨酶对鼠源巨噬细胞RAW264.7增殖、迁移、细胞周期、细胞凋亡的影响。方法:用不同浓度(0、0.25、1.25、2.5、5U/m L)的腺苷脱氨酶处理RAW264.7细胞后,用实时细胞分析系统检测细胞增殖能力,用流式细胞术检测腺苷脱氨酶对细胞凋亡和周期的影响,划痕修复实验检测RAW264.7细胞迁移能力。结果:与对照组相比,高浓度腺苷脱氨酶(2.5 U/m L、5 U/m L)处理可以显著抑制RAW264.7细胞的增殖能力,且抑制效果随腺苷脱氨酶浓度升高而增强(P<0.05)。流式细胞术检测结果显示,相较于对照组,高浓度腺苷脱氨酶(2.5 U/m L)处理可以诱导RAW264.7细胞凋亡,并导致细胞周期G2/M期阻滞(P<0.05)。此外,细胞划痕实验表明,高浓度腺苷脱氨酶(2.5 U/m L)处理可以显著抑制RAW264.7巨噬细胞的迁移能力(P<0.05)。结论:高浓度腺苷脱氨酶对巨噬细胞增殖和迁移具有抑制作用,并可诱导细胞凋亡和细胞周期阻滞。  相似文献   

7.
目的:研究c-ink氨基末端激酶(JNK)、细胞外信号调节激酶(ERK)在亚砷酸钠(NaAsO2)诱导骨髓间充质干细胞(BMSC)增殖中的作用.方法:体外培养骨髓间充质干细胞,四甲基偶氮唑盐比色法(MTT法)检测细胞增殖,Western-blot检测磷酸化JNK、ERK表达水平.结果:低浓度1、2μ mol/L NaAsO2对BMSC有明显的促进增殖作用;高浓度16、32μ mol/LNaAsO2则对细胞生长产生抑制作用,具有一定剂量-效应关系;2、4、8μ mol/LNaAsO2处理BMSC 24h后,JNK磷酸化表达水平明显增加,ERK磷酸化表达水平明显降低;JNK抑制剂SP600125可明显降低高浓度16、32μmol/LNaAsO2的生长抑制作用;ERK抑制剂PD98059可抑制低浓度1、2μ mol/LNaAsO2对BMSC的促增殖作用.结论:低浓度NaAsO2激活ERK信号通路,提高细胞增殖率,可被抑制剂PD98059阻断;高浓度NaAsO2激活JNK信号通路,提高细胞凋亡率,可被抑制剂SP600125阻断.NaAsO2致癌机制可能与JNK、ERK信号通路作用相关.  相似文献   

8.
为探究酸枣叶醇提物(jujube leaves alcohol extract,JLE)对RAW264.7细胞M1和M2型极化的影响。本研究分别采用LPS和IL-4将RAW264.7细胞诱导极化为M1和M2型巨噬细胞,CCK8方法检测细胞存活率,Griess法检测药物对M1型细胞释放NO的影响,RT-PCR法检测药物对M1和M2型细胞标志基因表达的影响,划痕实验和RT-PCR法检测经药物处理的M2型巨噬细胞上清对4T1细胞迁移的影响。结果显示,酸枣叶醇提物可抑制NO的释放,下调M1型IL-12p40、IL-1β、COX-2和M2型Arg1、CD206的表达。并通过M2型巨噬细胞降低4T1细胞中MMP-2、MMP-9和NF-κBp65的mRNA水平,抑制4T1细胞的迁移。综上说明酸枣叶醇提物可抑制巨噬细胞M1和M2型极化,并通过NF-κB通路抑制4T1细胞迁移。  相似文献   

9.
研究以黄颡鱼(Pelteobagrus fulvidraco)头肾巨噬细胞为研究对象,通过细菌脂多糖(LPS)和环磷酸腺苷(cAMP)分别诱导M1型和M2型极化,200 pmol/L维生素D3孵育后对其形态学特征、生物学功能及极化相关基因的表达进行分析鉴定来确定维生素D3在巨噬细胞极化中的调节作用。结果表明,维生素D3能降低诱导后M1型和M2型巨噬细胞的死亡率,并增强巨噬细胞的吞噬活性。在M1型巨噬细胞中维生素D3能够抑制活性氧(ROS)和炎症介质一氧化氮(NO)的产生,降低超氧阴离子自由基的活力,白介素1β(IL-1β)和肿瘤坏死因子-α(TNF-α)的表达水平显著降低(P<0.05);在M2型细胞中能够增加精氨酸酶的活性,显著增加白介素10(IL-10)和转化生长因子(TGF-β)的表达水平(P<0.05),最终抑制巨噬细胞向M1表型极化,促进巨噬细胞向M2表型极化,发挥抗炎作用;黄颡鱼头肾巨噬细胞中Nos-2和Arg-2分别是M1和M2巨噬细胞的生物标记基因。研究结果为进一步研究鱼...  相似文献   

10.
目的:探讨三磷酸腺苷(ATP)对小鼠骨骼肌成纤维细胞的迁移作用及其可能机制。方法:细胞划痕实验检测1μM、10μM、100μMATP对NOR-10细胞愈合率的影响;细胞迁移小室实验检测空白对照组、100μM ATP组、30μM PPADS+100μM ATP组、100μM RB2+100μM ATP组细胞的迁移率。结果:细胞划痕实验及迁移实验表明高浓度ATP能够促进NOR-10细胞的迁移能力,100μM ATP促细胞迁移能力最强(P0.05),并且其促迁移作用能被30μM PPADS,100μM RB2所抑制(P0.05),但100μM RB2的抑制作用更强(P0.05)。结论:高浓度ATP(10μM)能够促进NOR-10细胞的迁移能力,并且其促迁移可能通过激活P2Y受体作用大于P2X受体。  相似文献   

11.
Tumour‐associated macrophage (TAM) is an important component in tumour microenvironment. Generally, TAM exhibits the function of M2‐like macrophage, which was closely related to angiogenesis and tumour progression. Dioscin, a natural steroidal saponin, has shown its powerful anti‐tumour activity recently. However, the mechanism of dioscin involved in immune regulation is still obscure. Here, we observed dioscin induced macrophage M2‐to‐M1 phenotype transition in vitro and inhibited IL‐10 secretion. Meanwhile, the phagocytosis of macrophages was enhanced. In subcutaneous lung tumour models, dioscin inhibited the augmentation of M2 macrophage populations. Furthermore, dioscin down‐regulated STAT3 and JNK signalling pathways in macrophages in vitro. In BMDMs, activating JNK and inhibiting STAT3 induce macrophages to M1 polarization while inhibiting JNK and activating STAT3 to M2 polarization. Additionally, condition mediums from dioscin‐pre‐treated macrophages inhibited the migration of 3LL cells and the tube‐formation capacity of HUVECs. What's more, dioscin‐mediated macrophage polarization inhibited the in vivo metastasis of 3LL cells. In conclusion, dioscin may act as a new anti‐tumour agent by inhibiting TAMs via JNK and STAT3 pathways in lung cancer.  相似文献   

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13.
To investigate the role of activation of c-Jun NH2-terminal kinase 1 (JNK1) in mediating cisplatin-induced apoptosis and the possibility of induction of JNK activity in triggering relation to DNA damage and drug resistance. We investigated the difference of cisplatin-induced activation of JNK pathway and H2O2 alteration between cisplatin-sensitive human ovarian carcinoma cell line A2780 and its resistant variant A2780/DDP. JNK, p-JNK protein, and extracellular H2O2 levels were determined in both A2780 and A2780/DDP cells which were transfected with dominant negative allele of JNK and recombinant JNK1 separately. Both A2780 and A2780/DDP were treated with CDDP, the JNK pathway was activated and a prolonged JNK activation was maintained for at least 12 h in A2780, and only a transient activation (3 h) was detected in A2780/DDP in response to cisplatin treatment. Inhibition of JNK activity by transfection with a dominant negative allele of JNK blocked CDDP-induced apoptosis significantly in A2780 cells. Selective stimulation of the JNK pathway by lipofectamine-mediated delivery of recombinant JNK1 led to activation of c-Jun and decrease of extracellular H2O2, as well as apoptosis sensitization to CDDP in A2780/DDP cells. We concluded that JNK pathway might play an important role in mediating cisplatin-induced apoptosis in A2780 cells, and the duration of JNK activation might be critical in determining whether cells survive or undergo apoptosis. The resistance to CDDP can be reversed through activating c-Jun and decreasing extracellular generation of H2O2 by pcDNA3(FLAG)-JNK1-wt transfection in A2780/DDP cells.  相似文献   

14.
The role of IL-1R-associated kinase (IRAK)1 and its interaction with protein kinase C (PKC)δ in monocytes to regulate IL-1β production has not been reported so far. The present study thus investigates such mechanisms in the THP1 cell line and human monocytes. PMA treatment to THP1 cells induced CD11b, TLR2, TLR4, CD36, IRAK1, IRAK3, and IRAK4 expression, IRAK1 kinase activity, PKCδ and JNK phosphorylation, AP-1 and NF-κB activation, and secretory IL-1β production. Moreover, PMA-induced IL-1β production was significantly reduced in the presence of TLR2, TLR4, and CD11b Abs. Rottlerin, a PKCδ-specific inhibitor, significantly reduced PMA-induced IL-1β production as well as CD11b, TLR2 expression, and IRAK1-JNK activation. In PKCδ wild-type overexpressing THP1 cells, IRAK1 kinase activity and IL-1β production were significantly augmented, whereas recombinant inactive PKCδ and PKCδ small interfering RNA significantly inhibited basal and PMA-induced IRAK1 activation and IL-1β production. Endogenous PKCδ-IRAK1 interaction was observed in quiescent cells, and this interaction was regulated by PMA. IRAK1/4 inhibitors, their small interfering RNAs, and JNK inhibitor also attenuated PMA-induced IL-1β production. NF-κB activation inhibitor and SN50 peptide inhibitor, however, failed to affect PMA-induced IL-1β production. A similar role of IRAK1 in IL-1β production and its regulation by PKCδ was evident in the primary human monocytes, thus signifying the importance of our finding. To our knowledge, the results obtained demonstrate for the first time that IRAK1 and PKCδ functionally interact to regulate IL-1β production in monocytic cells. A novel mechanism of IL-1β production that involves TLR2, CD11b, and the PKCδ/IRAK1/JNK/AP-1 axis is thus being proposed.  相似文献   

15.
The c-Jun N-terminal kinases (JNKs) are encoded by three genes that yield 10 isoforms through alternative mRNA splicing. The roles of each JNK isoform in the many putative biological responses where the JNK pathway is activated are still unclear. To examine the cellular responses mediated by different JNK isoforms, gain-of-function JNK1 polypeptides were generated by fusing the upstream mitogen-activated protein kinase kinase, MKK7, with p46JNK1alpha or p46JNK1beta. The MKK7-JNK fusion proteins, which exhibited constitutive activity in 293T cells, were stably expressed in Swiss 3T3 fibroblasts using retrovirus-mediated gene transfer. Swiss 3T3 cells expressing either of the MKK7-JNK polypeptides were equally sensitized to induction of cell death following serum withdrawal. To search for other cellular responses that may be selectively regulated by the JNK1 isoforms, the gene expression profiles of Swiss 3T3 cells expressing MKK7-JNK1alpha or MKK7-JNK1beta were compared with empty vector-transfected control cells. Affymetrix Genechips identified 46 genes for which expression was increased in MKK7-JNK-expressing cells relative to vector control cells. Twenty genes including those for c-Jun, MKP-7, interluekin-1 receptor family member ST2L/ST2, and c-Jun-binding protein were induced similarly by MKK7-JNK1alpha and MKK7-JNK1beta proteins, whereas 13 genes were selectively increased by MKK7-JNK1alpha and 13 genes were selectively increased by MKK7-JNK1beta. The set of genes selectively induced by MKK7-JNK1beta included a number of known interferon-stimulated genes (ISG12, ISG15, IGTP, and GTPI). Consistent with these gene expression changes, Swiss 3T3 cells expressing MKK7-JNK1beta exhibited increased resistance to vesicular stomatitis virus-induced cell death. These findings reveal evidence for JNK isoform-selective gene regulation and support a role for distinct JNK isoforms in specific cellular responses.  相似文献   

16.
Exposure of mammalian cells to ultraviolet (UV) light or glucose deprivation activates c-Jun NH2-terminal protein kinase (JNK). However, the exact mechanism by which UV induces JNK activation is not yet understood completely. Previously, we have observed that glucose deprivation activates the ASK1-SEK1-JNK signal transduction pathway. In the present study, we reveal that UVC irradiation-induced JNK activation has a different signal transduction pathway from glucose deprivation. UVC irradiation increases the interaction between JIP3 and MEKK1, SEK1, while glucose deprivation increases the interaction between JIP3 and ASK1, SEK1, and JNK. UVC irradiation activates MEKK1 rather than ASK1. We also observed that MEKK1 interacted with Grb2 and Grb2-MEKK1 complex was recruited to epidermal growth factor receptor (EGFR) after UVC irradiation. Taken together, our data demonstrate that UVC-induced JNK activation adopts a different signaling cascade (EGFR-Grb2-MEKK1-SEK1-JNK) from glucose deprivation (ASK1-SEK1-JNK).  相似文献   

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目的:探讨即早基因c-fos在THP-1巨噬细胞亚型极化过程中的表达变化。方法:运用PMA刺激诱导THP-1单核细胞极化为巨噬细胞,观察c-fos在单核细胞极化过程中的表达变化;在PMA刺激的基础上,分别运用LPS和IL-4诱导THP-1巨噬细胞向M1及M2亚型极化,实时定量PCR及Western blot技术分析刺激24 h时,细胞亚型标记物CD274、CD86和CD163的表达变化,并动态观察诱导极化过程中,c-fos的表达情况。结果:c-fos在PMA刺激THP-1单核细胞分化为巨噬细胞过程中蛋白和mRNA水平显示上调;LPS诱导THP-1巨噬细胞极化为M1型过程中,c-fos蛋白和mRNA水平表达降低,其特异性标记物在24 h呈现出M1型极化的特点(CD86蛋白表达升高,CD274、CD163蛋白表达降低);IL-4诱导THP-1巨噬细胞极化为M2型过程中,c-fos蛋白和mRNA水平表达升高,其特异性标记物在24 h表现出M2型极化的特点(CD86蛋白表达降低,CD274、CD163蛋白表达升高)。结论:c-fos参与了THP-1单核细胞向巨噬细胞极化的过程,并且可能通过抑制巨噬细胞M1亚型形成,促进巨噬细胞向M2亚型极化的作用参与巨噬细胞的亚型极化及其功能调节中。  相似文献   

19.
JSAP1 (also termed JIP3) is a scaffold protein that interacts with specific components of the JNK signaling pathway. Apoptosis signal-regulating kinase (ASK) 1 is a MAP kinase kinase kinase that activates the JNK and p38 mitogen-activated protein (MAP) kinase cascades in response to environmental stresses such as reactive oxygen species. Here we show that JSAP1 bound ASK1 and enhanced ASK1- and H(2)O(2)-induced JNK activity. ASK1 phosphorylated JSAP1 in vitro and in vivo, and the phosphorylation facilitated interactions of JSAP1 with SEK1/MKK4, MKK7 and JNK3. Furthermore, ASK1-dependent phosphorylation was required for JSAP1 to recruit and thereby activate JNK in response to H(2)O(2). We thus conclude that JSAP1 functions not only as a simple scaffold, but it dynamically participates in signal transduction by forming a phosphorylation-dependent signaling complex in the ASK1-JNK signaling module.  相似文献   

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