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首页> 外文期刊>Lab on a chip >Single cell dual adherent-suspension co-culture micro-environment for studying tumor-stromal interactions with functionally selected cancer stem-like cells
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Single cell dual adherent-suspension co-culture micro-environment for studying tumor-stromal interactions with functionally selected cancer stem-like cells

机译:单细胞双粘附-悬浮共培养微环境,用于研究与功能选择的癌症干样细胞之间的肿瘤基质相互作用

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Considerable evidence suggests that cancer stem-like cells (CSCs) are critical in tumor pathogenesis, but their rarity and transience has led to much controversy about their exact nature. Although CSCs can be functionally identified using dish-based tumorsphere assays, it is difficult to handle and monitor single cells in dish-based approaches; single cell-based microfluidic approaches offer better control and reliable single cell derived sphere formation. However, like normal stem cells, CSCs are heavily regulated by their microenvironment, requiring tumor-stromal interactions for tumorigenic and proliferative behaviors. To enable single cell derived tumorsphere formation within a stromal microenvironment, we present a dual adherent/suspension co-culture device, which combines a suspension environment for single-cell tumorsphere assays and an adherent environment for co-culturing stromal cells in close proximity by selectively patterning polyHEMA in indented microwells. By minimizing dead volume and improving cell capture efficiency, the presented platform allows for the use of small numbers of cells (<100 cells). As a proof of concept, we co-cultured single T47D (breast cancer) cells and primary cancer associated fibroblasts (CAF) on-chip for 14 days to monitor sphere formation and growth. Compared to mono-culture, co-cultured T47D have higher tumorigenic potential (sphere formation rate) and proliferation rates (larger sphere size). Furthermore, 96-multiplexed single-cell transcriptome analyses were performed to compare the gene expression of co-cultured and mono-cultured T47D cells. Phenotypic changes observed in co-culture correlated with expression changes in genes associated with proliferation, apoptotic suppression, tumorigenicity and even epithelial-to-mesechymal transition. Combining the presented platform with single cell transcriptome analysis, we successfully identified functional CSCs and investigated the phenotypic and transcriptome effects induced by tumor-stromal interactions.
机译:大量证据表明,癌干样细胞(CSCs)在肿瘤发病机理中至关重要,但其稀有性和短暂性导致了对其确切性质的争议。尽管可以使用基于皿的肿瘤球分析在功能上鉴定CSC,但是以基于皿的方法难以处理和监测单个细胞。基于单细胞的微流体方法可提供更好的控制和可靠的单细胞衍生球体形成。但是,像正常干细胞一样,CSC受其微环境的严格调节,需要肿瘤与基质之间的相互作用才能实现致瘤和增殖行为。为了能够在基质微环境中形成单细胞衍生的肿瘤球,我们提出了一种双重贴壁/悬浮共培养设备,该设备结合了用于单细胞肿瘤球测定的悬浮环境和通过选择性地紧密培养共培养基质细胞的贴壁环境在缩进的微孔中对polyHEMA进行构图。通过最小化死体积并提高细胞捕获效率,该平台允许使用少量细胞(<100个细胞)。作为概念验证,我们在芯片上共培养了单个T47D(乳腺癌)细胞和原发性癌症相关成纤维细胞(CAF)14天,以监测球的形成和生长。与单培养相比,共培养的T47D具有更高的致瘤潜力(球形成率)和增殖率(更大的球体大小)。此外,进行96多重单细胞转录组分析以比较共培养和单培养T47D细胞的基因表达。在共培养物中观察到的表型变化与与增殖,凋亡抑制,致瘤性甚至上皮-间充质转化相关的基因的表达变化相关。将提出的平台与单细胞转录组分析相结合,我们成功地鉴定了功能性CSC,并研究了肿瘤-基质相互作用诱导的表型和转录组效应。

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