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一种用于研究生长因子调节的肿瘤细胞-巨噬细胞相互作用的体外一维分析方法。

An in vitro one-dimensional assay to study growth factor-regulated tumor cell-macrophage interaction.

作者信息

Sharma Ved P, Beaty Brian T, Cox Dianne, Condeelis John S, Eddy Robert J

机构信息

Department of Anatomy and Structural Biology, Albert Einstein College of Medicine, 1300 Morris Park Avenue, Bronx, NY, 10461, USA.

出版信息

Methods Mol Biol. 2014;1172:115-23. doi: 10.1007/978-1-4939-0928-5_10.

Abstract

Growth factor-dependent pairing and motility between tumor cells and tumor-associated macrophages on extracellular matrix (ECM) fibers of the tumor microenvironment have been shown to enhance intravasation and metastatic spread of breast carcinomas. We describe an in vitro motility assay that combines time-lapse wide-field microscopy and micro-patterned linear adhesive substrates to reconstitute the in vivo behavior between macrophages, tumor cells, and ECM fibers in orthotopic rodent tumor models observed by intravital imaging. Commercially available linear stripes of 650 nm dye-labeled fibronectin microlithographed onto glass cover slips are sequentially plated with fluorescently labeled MTLn3 tumor cells and bone marrow-derived macrophages and time-lapse imaged for up to 8 h. Incubation with pharmacological inhibitors during the assay can identify important paracrine or autocrine signaling pathways involved in the macrophage-tumor cell interaction. This high-resolution motility assay will lead to a more detailed description of immune cell-tumor cell behavior as well as interrogating additional cell types within the tumor microenvironment which use cytokine/growth factor paracrine signaling interactions to facilitate intravasation and metastasis.

摘要

肿瘤微环境细胞外基质(ECM)纤维上肿瘤细胞与肿瘤相关巨噬细胞之间的生长因子依赖性配对和运动已被证明可增强乳腺癌的血管内侵入和转移扩散。我们描述了一种体外运动分析方法,该方法结合了延时宽场显微镜和微图案化线性粘附底物,以重建在活体成像观察到的原位啮齿动物肿瘤模型中巨噬细胞、肿瘤细胞和ECM纤维之间的体内行为。将商业上可获得的650 nm染料标记的纤连蛋白微光刻到玻璃盖玻片上的线性条纹依次接种荧光标记的MTLn3肿瘤细胞和骨髓来源的巨噬细胞,并进行长达8小时的延时成像。在分析过程中与药理抑制剂一起孵育可以识别参与巨噬细胞-肿瘤细胞相互作用的重要旁分泌或自分泌信号通路。这种高分辨率运动分析将导致对免疫细胞-肿瘤细胞行为的更详细描述,以及探究肿瘤微环境中使用细胞因子/生长因子旁分泌信号相互作用促进血管内侵入和转移的其他细胞类型。

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