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Size Distribution Analysis with On-Chip Multi-Imaging Cell Sorter for Unlabeled Identification of Circulating Tumor Cells in Blood

机译:芯片上多成像细胞分选仪的大小分布分析,用于血液中循环肿瘤细胞的未标记鉴定

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We report a change of the imaging biomarker distribution of circulating tumor cell (CTC) clusters in blood over time using an on-chip multi-imaging flow cytometry system, which can obtain morphometric parameters of cells and those clusters, such as cell number, perimeter, total cross-sectional area, aspect ratio, number of nuclei, and size of nuclei, as “imaging biomarkers”. Both bright-field (BF) and fluorescent (FL) images were acquired at 200 frames per second and analyzed within the intervals for real-time cell sorting. A green fluorescent protein-transfected prostate cancer cell line (MAT-LyLu-GFP) was implanted into Copenhagen rats, and the blood samples of these rats were collected 2 to 11 days later and measured using the system. The results showed that cells having BF area of 90 μm 2 or larger increased in number seven days after the cancer cell implantation, which was specifically detected as a shift of the cell size distribution for blood samples of implanted rats, in comparison with that for control blood. All cells with BF area of 150 μm 2 or larger were arranged in cell clusters composed of at least two cells, as confirmed by FL nucleus number and area measurements, and they constituted more than 1% of all white blood cells. These results indicate that the mapping of cell size distribution is useful for identifying an increase of irregular cells such as cell clusters in blood, and show that CTC clusters become more abundant in blood over time after malignant tumor formation. The results also reveal that a blood sample of only 50 μL is sufficient to acquire a stable size distribution map of all blood cells to predict the presence of CTC clusters.
机译:我们报告了使用片上多成像流式细胞仪系统随时间推移血液中循环肿瘤细胞(CTC)簇的成像生物标志物分布的变化,该系统可以获取细胞及其簇的形态学参数,例如细胞数,周长,总横截面积,纵横比,核数和核大小,称为“成像生物标记”。以每秒200帧的速度采集明场(BF)和荧光(FL)图像,并在间隔内进行分析以进行实时细胞分选。将绿色荧光蛋白转染的前列腺癌细胞系(MAT-LyLu-GFP)植入哥本哈根大鼠,并在2至11天后收集这些大鼠的血样并使用该系统进行测量。结果显示,在癌细胞植入后的第7天,BF面积为90μm2或更大的细胞数量增加,这被明确检测为与对照组相比,植入大鼠血液样本的细胞大小分布发生了变化。血液。通过FL核数和面积测量证实,所有BF面积大于或等于150μm2的细胞都排列在至少两个细胞组成的细胞簇中,它们构成所有白细胞的1%以上。这些结果表明,细胞大小分布的图谱可用于鉴定不规则细胞的增加,例如血液中的细胞簇,并且表明随着时间的推移,恶性肿瘤形成后,CTC簇在血液中变得更加丰富。结果还表明,仅50μL的血液样本就足以获取所有血细胞的稳定尺寸分布图,以预测CTC簇的存在。

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