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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Quantitative in vivo imaging of the effects of inhibiting integrin signaling via Src and FAK on cancer cell movement: effects on E-cadherin dynamics.
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Quantitative in vivo imaging of the effects of inhibiting integrin signaling via Src and FAK on cancer cell movement: effects on E-cadherin dynamics.

机译:通过Src和FAK抑制整合素信号传导对癌细胞运动的影响的定量体内成像:对E-钙粘蛋白动力学的影响。

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Most cancer-related deaths are due to the development of metastatic disease, and several new molecularly targeted agents in clinical development have the potential to prevent disease progression. However, it remains difficult to assess the efficacy of antimetastatic agents in the clinical setting, and an increased understanding of how such agents work at different stages of the metastatic cascade is important in guiding their clinical use. We used optical window chambers combined with photobleaching, photoactivation, and photoswitching to quantitatively measure (a) tumor cell movement and proliferation by tracking small groups of cells in the context of the whole tumor, and (b) E-cadherin molecular dynamics in vivo following perturbation of integrin signaling by inhibiting focal adhesion kinase (FAK) and Src. We show that inhibition of Src and FAK suppresses E-cadherin-dependent collective cell movement in a complex three-dimensional tumor environment, and modulates cell-cell adhesion strength and endocytosis in vitro. This shows a novel role for integrin signaling in the regulation of E-cadherin internalization, which is linked to regulation of collective cancer cell movement. This work highlights the power of fluorescent, direct, in vivo imaging approaches in the preclinical evaluation of chemotherapeutic agents, and shows that inhibition of the Src/FAK signaling axis may provide a strategy to prevent tumor cell spread by deregulating E-cadherin-mediated cell-cell adhesions.
机译:大多数与癌症相关的死亡是由于转移性疾病的发展所致,临床开发中的几种新型分子靶向药物具有预防疾病进展的潜力。然而,仍然难以评估抗转移剂在临床环境中的功效,并且对这种药物在转移级联反应的不同阶段如何工作的深入了解对于指导其临床使用非常重要。我们使用了结合光漂白,光活化和光开关的光学窗口室,以定量测量(a)通过追踪整个肿瘤情况下的小细胞群来肿瘤细胞的运动和增殖,以及(b)体内E-钙黏着蛋白分子动力学通过抑制粘着斑激酶(FAK)和Src干扰整联蛋白信号传导。我们表明抑制Src和FAK抑制复杂的三维肿瘤环境中E-钙粘着蛋白依赖的集体细胞运动,并在体外调节细胞与细胞的粘附强度和内吞作用。这表明整联蛋白信号传导在调节E-钙粘着蛋白内在化方面的新作用,这与调节集体癌细胞的运动有关。这项工作强调了荧光,直接,体内成像方法在化学治疗剂临床前评估中的力量,并表明抑制Src / FAK信号轴可能提供一种通过放松E-钙黏着蛋白介导的细胞来防止肿瘤细胞扩散的策略-细胞粘附。

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