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A Potential Application of Triangular Microwells to Entrap Single Cancer Cells: A Canine Cutaneous Mast Cell Tumor Model

机译:三角形微孔捕获单个癌细胞的潜在应用:犬皮状肥大细胞肿瘤模型

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摘要

Cellular heterogeneity is a major hindrance, leading to the misunderstanding of dynamic cell biology. However, single cell analysis (SCA) has been used as a practical means to overcome this drawback. Many contemporary methodologies are available for single cell analysis; among these, microfluidics is the most attractive and effective technology, due to its advantages of low-volume specimen consumption, label-free evaluation, and real-time monitoring, among others. In this paper, a conceptual application for microfluidic single cell analysis for veterinary research is presented. A microfluidic device is fabricated with an elastomer substrate, polydimethylsiloxane (PDMS), under standard soft lithography. The performance of the microdevice is high-throughput, sensitive, and user-friendly. A total of 53.1% of the triangular microwells were able to trap single canine cutaneous mast cell tumor (MCT) cells. Of these, 38.82% were single cell entrapments, while 14.34% were multiple cell entrapments. The ratio of single-to-multiple cell trapping was high, at 2.7:1. In addition, 80.5% of the trapped cells were viable, indicating that the system was non-lethal. OCT4A-immunofluorescence combined with the proposed system can assess OCT4A expression in trapped single cells more precisely than OCT4A-immunohistochemistry. Therefore, the results suggest that microfluidic single cell analysis could potentially reduce the impact of cellular heterogeneity.
机译:细胞异质性是主要障碍,导致对动态细胞生物学的误解。但是,单细胞分析(SCA)已被用作克服此缺点的实用手段。许多当代方法可用于单细胞分析。其中,微流体技术由于其样品消耗量小,无标签评估和实时监控等优点而成为最有吸引力和最有效的技术。在本文中,提出了在微流控单细胞分析中用于兽医研究的概念性应用。在标准的软光刻技术下,用弹性体基质聚二甲基硅氧烷(PDMS)制造微流体装置。微型设备的性能高吞吐量,灵敏且用户友好。总共53.1%的三角形微孔能够捕获单个犬类皮肤肥大细胞肿瘤(MCT)细胞。其中38.82%是单细胞捕获,而14.34%是多细胞捕获。单细胞对多细胞捕获的比例很高,为2.7:1。另外,所捕获的细胞中有80.5%是活的,表明该系统是非致命的。 OCT4A免疫荧光与拟议的系统相结合可以比OCT4A免疫组织化学更准确地评估捕获的单细胞中OCT4A的表达。因此,结果表明微流控单细胞分析可以潜在地减少细胞异质性的影响。

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