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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Tissue factor over-expression by human pancreatic cancer cells BXPC3 is related to higher prothrombotic potential as compared to breast cancer cells MCF7
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Tissue factor over-expression by human pancreatic cancer cells BXPC3 is related to higher prothrombotic potential as compared to breast cancer cells MCF7

机译:与乳腺癌细胞MCF7相比,人类胰腺癌细胞BXPC3过度表达组织因子与更高的血栓形成潜能相关

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Cancer histology influences the risk of venous thromboembolism and tissue factor (TF) is the key molecule in cancer-induced hypercoagulability. We investigated the relation between TF expression by pancreatic and breast cancer cells (BXPC3 and MCF7 respectively) and their capacity to trigger in vitro thrombin generation in normal human plasma. Flow cytometry and Western blot analysis for TF expression were performed using murine IgG1 monoclonal antibody against human TF. Real-time PCR for TFmRNA was also performed. Activity of TF expressed by cancer cells was measured with a specific chromogenic assay. Thrombin generation in PPP was assessed using calibrated automated thrombogram. Cancer cells were added to platelet poor plasma from healthy volunteers. In separate experiments cells were incubated with the anti-TF antibody at concentration that completely neutralized the activity of recombinant human TF on thrombin generation. BXPC3 cells expressed significantly higher amounts of functional TF as compared to MCF7 cells. Incubation of BXPC3 and MCF7 cells with PPP resulted in acceleration of the initiation phase of thrombin generation. BXPC3 cells manifested higher procoagulant potential than MCF7 cells. The incubation of BXPC3 or MCF7 cells with the anti-TF monoclonal antibody which resulted in reversal of their effect on thrombin generation. The present study establishes a link between the amount of TF expressed by cancer cells with their procoagulant activity. Both studied types of cancer cells trigger thrombin generation but they have different procoagulant potential. The procoagulant activity of BXPC3 and MCF7 cells is related to the amount of TF expressed. Kinetic parameters of thrombogram are the most relevant for the detection of the TF-dependent procoagulant activity of cancer cells. TF expression is one of the mechanisms by which cancer cells manifest their procoagulant potential but it is not the unique one. The present experimental model will allow the characterization the procoagulant fingerprint of cell lines from the same or different histological types of cancer.
机译:癌症组织学影响静脉血栓栓塞的风险,组织因子(TF)是癌症诱导的高凝性的关键分子。我们调查了胰腺和乳腺癌细胞(分别为BXPC3和MCF7)的TF表达与其在正常人血浆中触发体外凝血酶生成的能力之间的关系。使用抗人TF的鼠IgG1单克隆抗体进行流式细胞术和TF表达的Western印迹分析。还进行了TFmRNA的实时PCR。用特异性显色测定法测量癌细胞表达的TF的活性。使用校准的自动血栓图评估PPP中的凝血酶生成。癌细胞被添加到健康志愿者的贫血小板血浆中。在单独的实验中,将细胞与抗TF抗体以完全中和重组人TF对凝血酶产生的活性的浓度孵育。与MCF7细胞相比,BXPC3细胞表达的功能性TF量明显更高。将BXPC3和MCF7细胞与PPP一起孵育可加速凝血酶生成的起始阶段。 BXPC3细胞比MCF7细胞具有更高的促凝潜能。将BXPC3或MCF7细胞与抗TF单克隆抗体一起孵育,会导致其对凝血酶生成的作用逆转。本研究建立了癌细胞表达的TF数量与其促凝血活性之间的联系。两种研究类型的癌细胞均触发凝血酶生成,但它们具有不同的促凝血潜能。 BXPC3和MCF7细胞的促凝血活性与表达的TF数量有关。血栓形成的动力学参数与检测癌细胞的TF依赖性促凝活性最相关。 TF表达是癌细胞显示其促凝潜能的机制之一,但并非唯一的机制。本实验模型将允许表征来自相同或不同组织学类型的癌症的细胞系的促凝指纹。

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