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水凝胶微结构活细胞阵列,用于单元素分辨率下对癌症干细胞、肿瘤异质性和药物反应差异的多重分析。

Hydrogel microstructure live-cell array for multiplexed analyses of cancer stem cells, tumor heterogeneity and differential drug response at single-element resolution.

机构信息

Physics Department, The Biophysical Interdisciplinary Schottenstein Center for the Research and Technology of the Cellome, Bar Ilan University, Bldg 214, 5290002, Ramat Gan, Israel.

出版信息

Lab Chip. 2016 Mar 21;16(6):1047-62. doi: 10.1039/c6lc00014b. Epub 2016 Feb 23.

Abstract

Specific phenotypic subpopulations of cancer stem cells (CSCs) are responsible for tumor development, production of heterogeneous differentiated tumor mass, metastasis, and resistance to therapies. The development of therapeutic approaches based on targeting rare CSCs has been limited partially due to the lack of appropriate experimental models and measurement approaches. The current study presents new tools and methodologies based on a hydrogel microstructure array (HMA) for identification and multiplex analyses of CSCs. Low-melt agarose integrated with type I collagen, a major component of the extracellular matrix (ECM), was used to form a solid hydrogel array with natural non-adhesive characteristics and high optical quality. The array contained thousands of individual pyramidal shaped, nanoliter-volume micro-chambers (MCs), allowing concomitant generation and measurement of large populations of free-floating CSC spheroids from single cells, each in an individual micro-chamber (MC). The optical live cell platform, based on an imaging plate patterned with HMA, was validated using CSC-enriched prostate and colon cancer cell lines. The HMA methodology and quantitative image analysis at single-element resolution clearly demonstrates several levels of tumor cell heterogeneity, including morphological and phenotypic variability, differences in proliferation capacity and in drug response. Moreover, the system facilitates real-time examination of single stem cell (SC) fate, as well as drug-induced alteration in expression of stemness markers. The technology may be applicable in personalized cancer treatment, including multiplex ex vivo analysis of heterogeneous patient-derived tumor specimens, precise detection and characterization of potentially dangerous cell phenotypes, and for representative evaluation of drug sensitivity of CSCs and other types of tumor cells.

摘要

癌症干细胞(CSC)的特定表型亚群负责肿瘤的发展、异质分化肿瘤块的产生、转移以及对治疗的耐药性。由于缺乏合适的实验模型和测量方法,基于靶向罕见 CSC 的治疗方法的发展受到了一定限制。本研究提出了基于水凝胶微结构阵列(HMA)的新工具和方法,用于鉴定和对 CSC 进行多重分析。低熔点琼脂糖与 I 型胶原蛋白(细胞外基质(ECM)的主要成分)结合,用于形成具有天然非粘附特性和高光学质量的固体水凝胶阵列。该阵列包含数千个单独的金字塔形、纳升级体积微腔(MC),允许从单个细胞同时生成和测量大量自由漂浮的 CSC 球体,每个微腔(MC)中都有一个球体。基于 HMA 图案化成像板的光学活细胞平台已通过富含 CSC 的前列腺癌和结肠癌细胞系进行了验证。HMA 方法和单细胞分辨率的定量图像分析清楚地表明了肿瘤细胞异质性的几个层次,包括形态和表型的可变性、增殖能力和药物反应的差异。此外,该系统还便于实时检查单个干细胞(SC)的命运,以及药物诱导的干性标志物表达的改变。该技术可应用于个性化癌症治疗,包括对异质性患者来源的肿瘤标本进行多重体外分析、对潜在危险细胞表型进行精确检测和特征描述,以及对 CSC 和其他类型肿瘤细胞的药物敏感性进行代表性评估。

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