Kumar Saran, Sharife Husni, Kreisel Tirzah, Bar-Lev Libat, Grunewald Myriam, Keshet Eli
Department of Developmental Biology and Cancer Research, Hebrew University of Jerusalem, Israel.
Bio Protoc. 2020 May 20;10(10):e3628. doi: 10.21769/BioProtoc.3628.
Differential exposure of tumor cells to microenvironmental cues greatly impacts cell phenotypes, raising a need for position based sorting of tumor cells amenable to multiple OMICs and functional analyses. One such key determinant of tumor heterogeneity in solid tumors is its vasculature. Proximity to blood vessels (BVs) profoundly affects tumor cell phenotypes due to differential availability of oxygen, gradient exposure to blood-borne substances and inputs by angiocrine factors. To unravel the whole spectrum of genes, pathways and phenotypes impacted by BVs and to determine spatial domains of vascular influences, we developed a methodology for sorting tumor cells according to their relative distance from BVs. The procedure exemplified here using glioblastoma (GBM) model is based on differential uptake of intra-venously injected, freely-diffusing fluorescent dye that allows separation of stroma-free tumor cells residing in different, successive microenvironments amenable for subsequent OMICs and functional analyses. This reliable, easy to use, cost effective strategy can be extended to all solid tumors to study the impact of vasculature or the lack of it.
肿瘤细胞对微环境信号的差异暴露极大地影响细胞表型,因此需要对适合多种组学和功能分析的肿瘤细胞进行基于位置的分选。实体瘤中肿瘤异质性的一个关键决定因素就是其脉管系统。由于氧气供应差异、对血源物质的梯度暴露以及血管分泌因子的输入,靠近血管(BVs)会深刻影响肿瘤细胞表型。为了揭示受BVs影响的基因、信号通路和表型的全貌,并确定血管影响的空间域,我们开发了一种根据肿瘤细胞与BVs的相对距离对其进行分选的方法。这里以胶质母细胞瘤(GBM)模型为例的程序基于静脉注射的自由扩散荧光染料的差异摄取,这种染料可分离存在于不同连续微环境中的无基质肿瘤细胞,便于后续的组学和功能分析。这种可靠、易用且经济高效的策略可扩展到所有实体瘤,以研究脉管系统或其缺失的影响。