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1.
目的:本研究探讨了癌睾丸抗原TFDP3与乳腺癌细胞上皮间质化(epithelial-mesenchymal transition,EMT)的关系。方法:本研究中选取了乳腺癌细胞系(MCF-10A,MCF-7,SK-BR-3和MDA-MB-231)作为研究对象,通过Western Blot的方法筛选获得了TFDP3低水平表达的乳腺癌细胞株。进一步通过质粒转染的方式构建TFDP3过表达的细胞系模型,观察TFDP3在EMT中的作用。结果:TFDP3在MCF-10A及SK-BR-3中不表达,在间质化程度较高的MDA-MB-231中高水平表达,而在上皮化程度较高的MCF-7中的低水平表达。MCF-7中过表达TFDP3后,上皮细胞标记分子E-cadherin表达下调,而间质细胞标记分子N-cadherin、Snail、Twist及细胞骨架蛋白Vimentin表达上调。结论:TFDP3可以促进乳腺癌细胞发生EMT。  相似文献   

2.
该研究探讨了薯蓣皂苷(Dioscin)对三阴性乳腺癌MDA-MB-231、BT549细胞体外侵袭及上皮–间质转化(epithelial to mensenchymal transition,EMT)的影响及其作用机制。以正常人乳腺上皮MCF-10A细胞为对照,通过MTS法、克隆形成实验检测细胞增殖能力;Transwell实验检测细胞侵袭、迁移能力;Western blot法检测p38MAPK、p-p38MAPK、FOXO3a及上皮–间质转化(epithelial to mensenchymal transition,EMT)相关标志物的表达。结果显示,Dioscin能明显抑制MDA-MB-231、BT549细胞的增殖,且具有浓度依赖性,对MCF-10A细胞抑制作用较弱;Dioscin处理后肿瘤细胞的侵袭、迁移能力明显降低,Dioscin可显著下调细胞间质样标志物波形蛋白(vimentin)、N-钙黏蛋白(N-cadherin)并促进上皮样标志物E-钙黏蛋白(E-cadherin)的表达,EMT关键转录因子Snail的表达也受到抑制。进一步研究发现,Dioscin能够上调p38MAPK磷酸化水平并促进转录因子FOXO3a的表达,而干扰FOXO3a能够逆转Dioscin对细胞EMT及侵袭的抑制作用。以上研究表明,Dioscin能够抑制三阴性乳腺癌细胞EMT及体外侵袭、迁移能力,其机制可能与Dioscin调控p38MAPK/FOXO3a信号有关。  相似文献   

3.
目的:探讨PHP14在上皮-间质转化中的作用及其可能作用机制。方法:建立了研究上皮-间质转化的细胞模型小鼠肝细胞AML-12。在AML-12中过表达PHP14,通过光学显微镜进行形态学观察,应用实时荧光定量PCR和蛋白质印迹检测AML-12上皮-间质转化中相关标志物的表达情况。通过免疫共沉淀检测PHP14与Vimentin的相互作用情况。结果:小鼠肝细胞AML-12可作为研究上皮-间质转化的较好细胞模型。在AML-12中过表达PHP14可促进AML-12细胞的上皮-间质转化,并增强其运动能力。过表达PHP14可上调Vimentin的蛋白质水平,而对其他上皮-间质转化相关标志物表达没有影响。进一步的研究发现,PHP14可与Vimentin相互作用。结论:PHP14通过与Vimentin相互作用,稳定Vimentin的蛋白质水平,从而参与并调节上皮-间质转化。  相似文献   

4.
目的:研究线粒体分裂蛋白1(Mitochondrial fission protein 1,FIS1)介导的线粒体分裂对肝癌细胞侵袭与迁移的调控作用与机制。方法:采用免疫组化实验比较10对肝癌原发灶与转移灶组织中FIS1表达,以明确FIS1与肝癌转移的关系。通过si RNA干扰FIS1的表达后,用Transwell实验检测肝癌细胞迁移与侵袭能力的变化,q PCR与Western Blot检测上皮间质转化标志分子上皮型钙黏蛋白(epithelia cadherin,E-cadherin)、紧密连接蛋白(zonula occludens-1,ZO-1)、神经型钙黏蛋白(neural cadherin,N-cadherin)、波形蛋白Vimentin的表达。结果:肝癌转移灶组织中FIS1的表达显著高于原发灶组织。干扰FIS1表达后,肝癌细胞迁移和侵袭能力均明显下降,细胞上皮间质转化标志蛋白E-cadherin和ZO-1的表达上调,而N-cadherin和Vimentin的表达下调。结论:线粒体分裂蛋白FIS1在肝癌转移灶组织中高表达,并可能通过调节细胞上皮间质转化促进肝癌细胞转移。  相似文献   

5.
表没食子儿茶素没食子酸酯(epigallocatechin-3-gallate, EGCG)是茶叶活性物质主要成分.EGCG可预防或治疗多种肿瘤.本文旨在探讨EGCG对人乳腺癌MDA-MB-231细胞增殖、凋亡及迁移力的作用及其机制. 经EGCG处理后,通过流式细胞术及噻唑蓝(MTT)法发现,EGCG使MDA-MB-231细胞周期阻滞,细胞凋亡数量上升,明显抑制乳腺癌细胞的存活率. EGCG处理后,MDA-MB-231细胞的形态由正常的纤维状变为鹅卵石状. 免疫荧光染色及免疫印迹结果表明,其上皮细胞标志物表达量增加,而间质标志物表达量下降. 通过划痕实验发现,EGCG明显抑制了细胞迁移能力. 本文揭示了EGCG通过抑制乳腺癌MDA-MB-231细胞周期进程,促进间质-上皮转化,抑制乳腺癌细胞增殖和迁移.  相似文献   

6.
目的研究AEG-1在大肠癌组织和细胞中的表达,探讨AEG-1通过调控上皮间质转化和耐药参与大肠癌的进展。方法采用qRT-PCR检测AEG-1在大肠癌组织和细胞中的表达,统计AEG-1对大肠癌患者生存率的影响,分析其在不同癌症分期患者中的表达差异,并分析AEG-1表达量与大肠癌诊断敏感性的关系。采用体外实验将si-NC、pc-DNA-NC、si-AEG-1、pc-DNA-AEG-1转染到大肠癌SW116和LOVO细胞中,然后通过qRT-PCR检测转染效率以及AEG-1在两细胞系中的表达情况。采用CCK-8和克隆形成实验检测AEG-1对大肠癌细胞增殖的影响;采用流式细胞术检测转染后上皮间质转化和耐药情况的变化;采用Western blotting检测转染后上皮间质转化和耐药相关蛋白N-cadherin、E-cadherin、MRP的变化情况。结果 77例大肠癌患者组织中AEG-1表达水平明显高于对照组。浸润T3+T4期的患者中AEG-1的表达水平高于浸润T1+T2期患者。Ⅲ+Ⅳ期患者中AEG-1的表达水平高于Ⅰ+Ⅱ期。AEG-1高表达组患者OS时间明显低于低表达组。AEG-1表达量与大肠癌诊断敏感性之间呈显著正相关。在LOVO细胞系中,降低AEG-1表达后其细胞活力、侵袭力明显降低,同时间质细胞标志蛋白N-cadherin、上皮细胞标志蛋白E-cadherin、多药耐药相关蛋白MRP表达量降低。在SW116细胞系中,过表达AEG-1后上皮间质转化、耐药相关蛋白表达量显著升高。结论 AEG-1在大肠癌组织和细胞中的表达量明显上升,AEG-1通过调控上皮间质转化和耐药参与大肠癌的发生发展,为大肠癌的治疗提供了新的理论依据和新的靶点。  相似文献   

7.
目的:从HL-60细胞中获得了sTrail基因片段,优化蛋白表达条件,并研究其抗肿瘤活性。方法:培养HL-60细胞,提取总RNA,通过RT-PCR扩增sTRAIL蛋白基因片段,并将目的基因克隆至原核表达载体p ET28a上,并电击转化E.coli BL21(DE3),IPTG诱导表达,优化蛋白表达条件,Ni-IDA柱纯化重组蛋白,SDS-PAGE蛋白电泳,胶内酶解质谱鉴定。纯化后的重组蛋白作用HUVEC,He La,Hep-3B,HCT-116,MDA-MB-231,H460细胞检测蛋白生物学作用。结果:DNA测序结果证实成功构建了重组质粒p ET28a-sTrail,SDS-PAGE蛋白电泳,胶内酶解质谱检测显示成功表达sTRAIL蛋白,MTT法和流式细胞术结果显示,sTRAIL蛋白对肿瘤细胞包括He La,HCT-116,MDA-MB-231,H460,Hep-3B细胞有良好的生物活性,对正常的HUVEC细胞无毒性。结论:成功构建可以高效表达sTRAIL蛋白的原核表达载体,优化蛋白的表达和纯化后所得sTRAIL蛋白具有良好的抗肿瘤生物活性,为研究和发展利用sTRAIL蛋白作为临床治疗抗肿瘤药物提供了重要基础。  相似文献   

8.
该文探讨了人肝星形细胞(hepatic stellate cells,HSC)对肝癌细胞(Hep G2、SMMC-7721)的迁移、侵袭能力和上皮–间质转化(epithelial-msenchymal transition,EMT)的影响及其机制。采用条件培养法培养肝癌细胞,利用细胞划痕和Transwell实验分析肝星形细胞对肝癌细胞的迁移和侵袭作用。Western blot分析肝星形细胞自身及其分泌到培养液中趋化因子CXCL1[chemokine(C-X-C motif)ligand 1]和肝癌细胞的CXCL1受体2—CXCR2(CXCL1 receptor 2)的表达量,以及条件培养下肝癌细胞中p-PI3K、p-AKT、p-GSK-3β和Snail的表达变化。激光共聚焦显微术和Western blot检测肝癌细胞上皮标志物E-cadherin、间质标志物N-cadherin和Vimentin的表达变化。结果显示,在HSC中大量表达并分泌趋化因子CXCL1,而肝癌细胞Hep G2、SMMC-7721中高表达CXCR2。肝癌细胞通过条件培养后,细胞形态改变,细胞黏附下降,细胞迁移和侵袭能力增强,上皮标志物E-cadherin蛋白表达下调、间质标志物N-cadherin蛋白和Vimentin蛋白表达上调,PI3K/AKT信号通路中的关键成员PI3K和AKT磷酸化水平上调,p-GSK-3β和转录因子Snail表达上调。在肝癌细胞条件培养下加入CXCR2受体的特异性抑制剂(SB265610)后,肝癌细胞上皮标志物E-cadherin蛋白表达上调、间质标志物N-cadherin蛋白和Vimentin蛋白表达下调,p-PI3K、p-AKT、p-GSK-3β和Snail的表达下调。以上结果说明,肝星形细胞可能通过CXCL1/CXCR2轴活化PI3K/AKT信号通路并最终促进肝癌细胞上皮–间质转化。  相似文献   

9.
严玉荣  赵晨辰  杨睿  周婷  许娜 《生物工程学报》2018,34(12):2007-2015
旨在探讨IFN-γ诱导乳腺癌细胞株MDA-MB-231表面程序性死亡配体(PD-L1)的表达、对上皮间质转化的影响及其分子机制。用不同浓度IFN-γ作用MDA-MB-231细胞后,利用蛋白质免疫印迹检测PD-L1、细胞迁移相关蛋白(E-钙黏蛋白、N-钙黏蛋白、波形蛋白)、ERK、p-ERK、Jak2及p-Jak2的表达水平;通过细胞划痕实验和Transwell实验检测细胞迁移能力;利用免疫荧光实验进一步检测细胞迁移相关蛋白的表达量。结果表明,IFN-γ可上调PD-L1的表达,使细胞划痕融合率显著增高,细胞迁移速率显著加快;波形蛋白和N-钙黏蛋白的表达量升高,E-钙黏蛋白表达量下降;ERK、p-ERK、Jak2及p-Jak2表达水平显著增加。加U0126后PD-L1、ERK及p-ERK表达水平下降,而加入AG490后,PD-L1、Jak2、p-Jak2表达水平下降。结果表明IFN-γ能上调乳腺癌细胞PD-L1表达水平,促进肿瘤细胞迁移,促使细胞从上皮向间质转化,而这一过程可能与ERK及Jak2-STAT信号通路相关。  相似文献   

10.
本研究旨在观察辣椒碱对人乳腺癌MDA-MB-231细胞迁移和侵袭的影响,并探讨其分子机制。乳腺癌MDA-MB-231细胞经不同浓度辣椒碱作用24 h后进行实验,采用CCK-8法检测细胞活性,采用细胞划痕实验测量细胞迁移率,采用Transwell侵袭实验检测细胞侵袭率,采用Western blot检测乳腺癌MDA-MB-231细胞中c-Src、p-c-Src(Tyr416)、黏着斑激酶(focal adhesion kinase,FAK)、p-FAK(Tyr576/577)、桩蛋白(Paxillin)、p-Paxillin(Tyr118)、基质金属蛋白酶2(matrix metalloproteinase 2,MMP2)和MMP9蛋白表达水平,采用RT-PCR法检测乳腺癌MDA-MB-231细胞中MMP2和MMP9的mRNA水平。结果显示,10~50μmol/L辣椒碱对MDA-MB-231细胞存活率无显著影响,100~500μmol/L辣椒碱显著降低MDA-MB-231细胞存活率(P0.05);与正常对照组比较,25和50μmol/L辣椒碱组MDA-MB-231细胞体外迁移率和侵袭率均显著降低(P0.05),c-Src、FAK和Paxillin蛋白的磷酸化水平均显著下降(P0.05),MMP2和MMP9的mRNA和蛋白表达水平均下降(P0.05);并且辣椒碱对MDA-MB-231细胞的上述作用具有剂量依赖性。以上结果提示,低浓度辣椒碱可剂量依赖性地抑制人乳腺癌MDA-MB-231细胞迁移和侵袭,其机制可能涉及辣椒碱对c-Src/FAK/Paxillin信号通路以及MMP2和MMP9表达的抑制。  相似文献   

11.
Receptor tyrosine kinase-like orphan receptor 2 (ROR2) is a tyrosine-protein kinase receptor highly implicated in the growth plate and cartilage development, which may be involved in epithelial-mesenchymal transition (EMT) in breast cancer (BC) cells. Although ROR2 is known to promote the migration of BC cells, the detailed mechanism of this event is still not clear. Here, we found that ROR2 expression was significantly increased in BC lymphatic metastatic tissue as well as BC samples compared to normal adjacent breast tissues. A higher expression of ROR2 in MDA-MB-231 and a lower expression of ROR2 in MCF-7 cells were observed. MDA-MB-231-siROR2 cells with ROR2 knockdown inhibited MDA-MB-231 cell invasion, migration, and clonal formation, while MCF-7-OvROR2 cells with overexpression showed the opposite results. The underlying mechanisms involved in ROR2-induced EMT in MDA-MB-231 and MCF-7 cells were further investigated. ROR2 may activate EMT progression in BC cells by altering MAPK kinase 3/6 (MKK3/6) expression. The expressions of transforming growth factor-β, matrix metalloproteinase-2 (MMP-2), and MMP-9, which were related to tumor cell invasion activities, were notably increased in MCF-7-OvROR2 cells. The EMT markers, including snail, N-cadherin, tissue inhibitor of metalloproteinases-1, and vimentin, were significantly upregulated in MCF-7-OvROR2 cells. On the contrary, E-cadherin was obviously reduced expressed in MCF-7-OvROR2 cells. ROR2 may regulate the malignant phenotype of BC cells possibly via activation of mitogen-activated protein kinase (MAPK)/p38 signaling pathway. Collectively, ROR2 promotes BC carcinogenesis by mediating the MAPK/p38 pathway, which is independent of Wnt5α.  相似文献   

12.
Interactions occurring between malignant cells and the stromal microenvironment heavily influence tumor progression. We investigated whether this cross-talk affects some molecular and functional aspects specifically correlated with the invasive phenotype of breast tumor cells (i.e. adhesion molecule expression, membrane fluidity, migration) by co-culturing mammary cancer cells exhibiting different degrees of metastatic potential (MDA-MB-231>MCF-7) with fibroblasts isolated from breast healthy skin (normal fibroblasts, NFs) or from breast tumor stroma (cancer-associated fibroblasts, CAFs) in 2D or 3D (nodules) cultures. Confocal immunofluorescence analysis of the epithelial adhesion molecule E-cadherin on frozen nodule sections demonstrated that NFs and CAFs, respectively, induced or inhibited its expression in MCF-7 cells. An increase in the mesenchymal adhesion protein N-cadherin was observed in CAFs, but not in NFs, as a result of the interaction with both kinds of cancer cells. CAFs, in turn, promoted N-cadherin up-regulation in MDA-MB-231 cells and its de novo expression in MCF-7 cells. Beyond promotion of “cadherin switching”, another sign of the CAF-triggered epithelial-mesenchymal transition (EMT) was the induction of vimentin expression in MCF-7 cells. Plasma membrane labeling of monolayer cultures with the fluorescent probe Laurdan showed an enhancement of the membrane fluidity in cancer cells co-cultured with NFs or CAFs. An increase in lipid packing density of fibroblast membranes was promoted by MCF-7 cells. Time-lapsed cell tracking analysis of mammary cancer cells co-cultured with NFs or CAFs revealed an enhancement of tumor cell migration velocity, even with a marked increase in the directness induced by CAFs.Our results demonstrate a reciprocal influence of mammary cancer and fibroblasts on various adhesiveness/invasiveness features. Notably, CAFs'' ability to promote EMT, reduction of cell adhesion, increase in membrane fluidity, and migration velocity and directness in mammary cancer cells can be viewed as an overall progression- and invasion-promoting effect.  相似文献   

13.
Antony ML  Kim SH  Singh SV 《PloS one》2012,7(2):e32267
Benzyl isothiocyanate (BITC), a constituent of edible cruciferous vegetables, decreases viability of cancer cells by causing apoptosis but the mechanism of cell death is not fully understood. The present study was undertaken to determine the role of Bcl-2 family proteins in BITC-induced apoptosis using MDA-MB-231 (breast), MCF-7 (breast), and HCT-116 (colon) human cancer cells. The B-cell lymphoma 2 interacting mediator of cell death (Bim) protein was dispensable for proapoptotic response to BITC in MCF-7 and MDA-MB-231 cells as judged by RNA interference studies. Instead, the BITC-treated MCF-7 and MDA-MB-231 cells exhibited upregulation of p53 upregulated modulator of apoptosis (PUMA) protein. The BITC-mediated induction of PUMA was relatively more pronounced in MCF-7 cells due to the presence of wild-type p53 compared with MDA-MB-231 with mutant p53. The BITC-induced apoptosis was partially but significantly attenuated by RNA interference of PUMA in MCF-7 cells. The PUMA knockout variant of HCT-116 cells exhibited significant resistance towards BITC-induced apoptosis compared with wild-type HCT-116 cells. Attenuation of BITC-induced apoptosis in PUMA knockout HCT-116 cells was accompanied by enhanced G2/M phase cell cycle arrest due to induction of p21 and down regulation of cyclin-dependent kinase 1 protein. The BITC treatment caused a decrease in protein levels of Bcl-xL (MCF-7 and MDA-MB-231 cells) and Bcl-2 (MCF-7 cells). Ectopic expression of Bcl-xL in MCF-7 and MDA-MB-231 cells and that of Bcl-2 in MCF-7 cells conferred protection against proapoptotic response to BITC. Interestingly, the BITC-treated MDA-MB-231 cells exhibited induction of Bcl-2 protein expression, and RNA interference of Bcl-2 in this cell line resulted in augmentation of BITC-induced apoptosis. The BITC-mediated inhibition of MDA-MB-231 xenograft growth in vivo was associated with the induction of PUMA protein in the tumor. In conclusion, the results of the present study indicate that Bim-independent apoptosis by BITC in cancer cells is mediated by PUMA.  相似文献   

14.
Engineered overexpression of protein kinase Cα (PKCα) is known to phosphorylate Ser165 in α-tubulin resulting in stimulated microtubule dynamics and cell motility, and activation of an epithelial-mesenchymal transition (EMT) in non-transformed human breast cells. Here it is shown that endogenous phosphorylation of native α-tubulin in two metastatic breast cell lines, MDA-MB-231-LM2–4175 and MDA-MB-468 is detected at PKC phosphorylation sites. α-Tubulin mutants that simulated phosphorylated (S165D) or non-phosphorylated (S165 N) states were stably expressed in MDA-MB-231-LM2–4175 cells. The S165D-α-tubulin mutant engendered expression of the EMT biomarker N-cadherin, whereas S165 N-α-tubulin suppressed N-cadherin and induced E-cadherin expression, revealing a ‘cadherin switch’. S165 N-α-tubulin engendered more rapid passage through the cell cycle, induced shorter spindle fibers and exhibited more rapid proliferation. In nude mice injected with MDA-MB-231-LM2–4175 cells, cells expressing S165 N-α-tubulin (but not the S165D mutant) produced hyper-proliferative lung tumors with increased tumor incidence and higher Ki67 expression. These results implicate the phosphorylation state of Ser165 in α-tubulin as a PKC-regulated molecular switch that causes breast cells to exhibit either EMT characteristics or hyper-proliferation. Evaluation of genomic databases of human tumors strengthens the clinical significance of these findings.  相似文献   

15.
《Cellular signalling》2014,26(4):757-765
Since its discovery in biopsies from breast cancer patients, the effect of corticotropin-releasing hormone (CRH) on carcinoma progression is still unclear. Transforming growth factorβ1 (TGFβ1) promotes Epithelial–Mesenchymal Transition (EMT) and induces Snail1 and Twist1 expressions. Loss of epithelial cadherin (E-cadherin) mainly repressed by Snail1 and Twist1, has been considered as hallmark of Epithelial–Mesenchymal Transition (EMT). Two breast cancer cell lines, MCF-7 and MDA-MB-231 were used to investigate the effect of CRH on TGFβ1-induced EMT by transwell chamber. And HEK293 cells were transiently transfected with CRHR1 or CRHR2 to explore the definite effects of CRH receptor. We reported that CRH inhibited migration of human breast cancer cells through downregulation of Snail1 and Twist1, and subsequent upregulation of E-cadherin. CRH inhibited TGFβ1-mediated migration of MCF-7 via both CRHR1 and CRHR2 while this inhibition in MDA-MB-231 was mainly via CRHR2. Ectopic re-expression of CRHR1 or CRHR2 respectively in HEK293 cells increased E-cadherin expression after CRH stimulation. Furthermore, CRH repressed expression of mesenchymal marker, N-cadherin and induced expression of Occludin, inhibiting EMT in MCF-7 & MDA-MB-231. Our results suggest that CRH may function as a tumor suppressor, at least partly by regulating TGFβ1-mediated EMT. These results may contribute to uncovering the effect of CRH in breast tumorigenesis and progression.  相似文献   

16.
先前的研究表明,miR-150-5p发挥抑癌基因的作用,调控肿瘤细胞的侵袭与转移。然而,关于其在乳腺癌细胞侵袭与转移中的机制尚不明确。本实验旨在研究miR-150-5p负向调控Rab1A在乳腺癌细胞上皮-间质转化(epithelial-mesenchymal transition,EMT)中的作用。双荧光素酶的结果显示,miR-150-5p可负向调控Rab1A。荧光定量PCR (qRT-PCR) 结果显示,miR-150-5p在乳腺癌细胞MCF-7及MDA-MB-231(MDA-231)中的表达水平明显低于正常乳腺上皮细胞MCF-10A; 在MDA-231中过表达miR-150-5p后,qRT-PCR结果显示,Rab1A mRNA的表达水平明显降低。Western印迹结果显示,过表达miR-150-5p后,miR-150-5p组细胞中的Rab1A、波形蛋白(vimentin)及N-钙黏着蛋白(N-cadherin)的表达水平相对于对照组(NC)细胞明显降低,而E-钙黏着蛋白(E-cadherin)的表达水平明显增加。Transwell侵袭和划痕实验显示,与miR-150-5p+Con组细胞相比,miR-150-5p+Rab1A组细胞的侵袭和迁移能力明显增加。qRT-PCR结果显示,miR-150-5p+Rab1A组细胞的Rab1A mRNA表达水平明显增加。Western印迹结果显示,miR-150-5p+Rab1A组细胞中的波形蛋白、N-钙黏着蛋白表达水平明显增加, 而E-钙黏着蛋白表达明显降低,过表达Rab1A后显著逆转了miR-150-5p对EMT的影响。综上所述,miR-150-5p可以通过负向调控Rab1A抑制EMT,进而抑制乳腺癌细胞的侵袭和迁移。  相似文献   

17.
18.
Vascular endothelial growth factor receptor-1 (VEGFR-1 or Flt-1), a tyrosine kinase receptor, is highly expressed in breast cancer tissues, but near absent in normal breast tissue. While VEGFR-1 expression is associated with poor prognosis of women with breast cancer, it is not clear whether it is involved in the aggressiveness of breast cancer. Thus, the present study examined whether VEGFR-1 activation is associated with the invasiveness of breast cancer. We reported that VEGFR-1 was detected in 60.6% of invasive breast carcinoma tissue sections. In addition, VEGFR-1 expression positively correlated with lymph node-positive tumor status, low expression level of membranous E-cadherin, and high expression levels of N-cadherin and Snail. We found that PlGF-mediated VEGFR-1 activation promoted migration and invasion in MCF-7 (luminal) cells and led to morphologic and molecular changes of epithelial-mesenchymal transition (EMT). This was blocked by the down-regulation of VEGFR-1. Conversely, down-regulation of VEGFR-1 in MDA-MB-231 (post-EMT) cells resulted in morphologic and molecular changes similar to mesenchymal-epithelial transition (MET), and exogenous PlGF could not reverse these changes. Moreover, VEGFR-1 activation led to an increase in nuclear translocation of Snail. Finally, MDA-MB-231 cells expressing shRNA against VEGFR-1 significantly decreased the tumor growth and metastasis capacity in a xenograft model. Histological examination of VEGFR-1/shRNA-expressing tumor xenografts showed up-regulation of E-cadherin and down-regulation of N-cadherin and Snail. These findings suggest that VEGFR-1 may promote breast cancer progression and metastasis, and therapies that target VEGFR-1 may be beneficial in the treatment of breast cancer patients.  相似文献   

19.
《Cellular signalling》2014,26(7):1604-1615
Macrophages in the tumor microenvironment play an important role in tumor cell survival. They influence the tumor cell to proliferate, invade into surrounding normal tissues and metastasize to local and distant sites. In this study, we evaluated the effect of conditioned medium from monocytes and macrophages on growth and migration of breast cancer cells. Macrophage conditioned medium (MϕCM) containing elevated levels of cytokines TNF-α, IL-1β and IL-6 had a differential effect on non-invasive (MCF7) and highly invasive (MDA-MB-231) breast cancer cell lines. MϕCM induced the secretion of TGF-β1 in MCF7 cells. This was associated with apoptosis in a fraction of cells and generation of reactive oxygen and nitrogen species (ROS and RNS) and DNA damage in the remaining cells. This, in turn, increased expression of cAMP response element binding protein (CREB) and vimentin resulting in migration of cells. These effects were inhibited by neutralization of TNF-α, IL-1β and IL-6, inhibition of ROS and RNS, DNA damage and siRNA mediated knockdown of ATM. In contrast, MDA-MB-231 cells which had higher basal levels of pCREB were not affected by MϕCM. In summary, we have found that pro-inflammatory cytokines secreted by macrophages induce TGF-β1 in tumor cells, which activate pCREB signaling, epithelial–mesenchymal-transition (EMT) responses and enhanced migration.  相似文献   

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