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Optical Barcoding for Single-Clone Tracking to Study Tumor Heterogeneity

机译:光学条形码用于单克隆跟踪以研究肿瘤异质性

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摘要

Intratumoral heterogeneity has been identified as one of the strongest drivers of treatment resistance and tumor recurrence. Therefore, investigating the complex clonal architecture of tumors over time has become a major challenge in cancer research. We developed a new fluorescent “optical barcoding” technique that allows fast tracking, identification, and quantification of live cell clones in vitro and in vivo using flow cytometry (FC). We optically barcoded two cell lines derived from malignant glioma, an exemplary heterogeneous brain tumor. In agreement with mathematical combinatorics, we demonstrate that up to 41 clones can unambiguously be marked using six fluorescent proteins and a maximum of three colors per clone. We show that optical barcoding facilitates sensitive, precise, rapid, and inexpensive analysis of clonal composition kinetics of heterogeneous cell populations by FC. We further assessed the quantitative contribution of multiple clones to glioblastoma growth in vivo and we highlight the potential to recover individual viable cell clones by fluorescence-activated cell sorting. In summary, we demonstrate that optical barcoding is a powerful technique for clonal cell tracking in vitro and in vivo, rendering this approach a potent tool for studying the heterogeneity of complex tissues, in particular, cancer.
机译:肿瘤内异质性已被确定为治疗耐药性和肿瘤复发的最强驱动力之一。因此,随着时间的推移研究肿瘤的复杂克隆结构已经成为癌症研究中的主要挑战。我们开发了一种新的荧光“光学条形码”技术,该技术可以使用流式细胞仪(FC)快速跟踪,鉴定和定量活体内和活体内的活细胞克隆。我们光学条形码从恶性神经胶质瘤,示例性异质性脑肿瘤的两个细胞系条形码。与数学组合学一致,我们证明最多可以使用六个荧光蛋白和最多三个颜色明确标记多达41个克隆。我们显示光学条形码有助于通过FC对异质细胞群体的克隆组成动力学进行敏感,精确,快速和廉价的分析。我们进一步评估了多个克隆对胶质母细胞瘤在体内生长的定量贡献,并强调了通过荧光激活细胞分选回收单个活细胞克隆的潜力。总而言之,我们证明了光学条形码技术是体外和体内克隆细胞追踪的强大技术,使这种方法成为研究复杂组织特别是癌症异质性的有效工具。

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