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用于从全血中进行无标记细胞分类的光流控装置。

Optofluidic device for label-free cell classification from whole blood.

机构信息

Materials Science Program, University of California at San Diego, La Jolla, California 92093-0418, USA.

出版信息

Lab Chip. 2012 Oct 7;12(19):3791-7. doi: 10.1039/c2lc40560a.

Abstract

We demonstrated a unique optofluidic lab-on-a-chip device that can measure optically encoded forward scattering signals. From the design of the spatial pattern, we can measure the position and velocity of each cell in the flow and generate a 2-D cell distribution plot over the cross section of the channel. Moreover, we have demonstrated that the cell distribution is highly sensitive to its size and stiffness. The latter is an important biomarker for cell classification and our method offers a simple and unequivocal method to classify cells by their size and stiffness. We have proved the concept using live and fixed HeLa cells. Due to the stiffness and size difference of neutrophils compared to other types of white blood cells, we have demonstrated detection of neutrophils from other blood cells. Finally, we have performed the test using 5 μL of human blood. In a greatly simplified blood preparation process, skipping the usual steps of anticoagulation, centrifuge, antibody labelling or staining, filtering, etc., we have demonstrated that our device and detection principle can count neutrophils in whole human blood. Our system is compact, inexpensive and simple to fabricate and operate, having a commodity laser diode and a Si PIN photoreceiver as the main pieces of hardware. Although the results are still preliminary, the studies indicate that this optofluidic device holds promise to be a point-of-care and home care device to measure neutrophil concentration, which is the key indicator of the immune functions for cancer patients undergoing chemotherapy.

摘要

我们展示了一种独特的微流控芯片光学实验室设备,该设备可以测量光学编码的前向散射信号。从空间图案的设计来看,我们可以测量每个流动细胞的位置和速度,并在通道横截面生成二维细胞分布图。此外,我们已经证明细胞分布对其大小和刚度非常敏感。后者是细胞分类的重要生物标志物,我们的方法提供了一种简单而明确的方法,可根据细胞的大小和刚度对其进行分类。我们已经使用活细胞和固定的 HeLa 细胞证明了这一概念。由于与其他类型的白细胞相比,中性粒细胞的刚度和大小存在差异,因此我们已经证明了从其他血细胞中检测到中性粒细胞。最后,我们使用了 5μL 的人血进行了测试。在大大简化的血液准备过程中,跳过了通常的抗凝、离心、抗体标记或染色、过滤等步骤,我们已经证明我们的设备和检测原理可以在全血中计数中性粒细胞。我们的系统紧凑、价格低廉且易于制造和操作,主要硬件包括商用激光二极管和 Si PIN 光电接收器。尽管结果仍初步,但研究表明,这种微流控光学设备有望成为一种即时护理和家庭护理设备,用于测量中性粒细胞浓度,这是癌症患者接受化疗时免疫功能的关键指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6246/3472004/f5f7cd12a1a9/nihms404650f1.jpg

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本文引用的文献

2
Sorting cells by size, shape and deformability.根据大小、形状和变形能力对细胞进行分类。
Lab Chip. 2012 Mar 21;12(6):1048-51. doi: 10.1039/c2lc21083e. Epub 2012 Feb 10.

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