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Small volume low mechanical stress cytometry using computer-controlled Braille display microfluidics

机译:使用计算机控制的盲文显示器微流控技术进行小体积低机械应力细胞术

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This paper describes a micro flow cytometer system designed for efficient and non-damaging analysis of samples with small numbers of precious cells. The system utilizes actuation of Braille-display pins for micro-scale fluid manipulation and a fluorescence microscope with a CCD camera for optical detection. The microfluidic chip is fully disposable and is composed of a polydimethylsiloxane (PDMS) slab with microchannel features sealed against a thin deformable PDMS membrane. The channels are designed with diffusers to alleviate pulsatile flow behaviors inherent in pin actuator- based peristaltic pumping schemes to maximize hydrodynamic focusing of samples with minimal disturbances in the laminar streams within the channel. A funnel connected to the microfluidic channel is designed for efficient loading of samples with small number of cells and is also positioned on the chip to prevent physical damages of the samples by the squeezing actions of Braille pins during actuation. The sample loading scheme was characterized by both computational fluidic dynamics (CFD) simulation and experimental observation. A fluorescein solution was first used for flow field investigation, followed by use of fluorescence beads with known relative intensities for optical detection performance calibration. Murine myoblast cells (C2C12) were exploited to investigate cell viability for the sample loading scheme of the device. Furthermore, human promyelocytic leukemia (HL60) cells stained by hypotonic DNA staining buffer were also tested in the system for cell cycle analysis. The ability to efficiently analyze cellular samples where the number of cells is small was demonstrated by analyzing cells from a single embryoid body derived from mouse embryonic stem cells. Consequently, the designed microfluidic device reported in this paper is promising for easy-to-use, small sample size flow cytometric analysis, and has potential to be further integrated with other Braille display-based microfluidic devices to facilitate a multi-functional lab-on-a-chip for mammalian cell manipulations.
机译:本文介绍了一种微流式细胞仪系统,该系统旨在对具有少量珍贵细胞的样品进行高效且无损的分析。该系统利用盲文显示销的致动来进行微型流体操纵,并利用带有CCD相机的荧光显微镜进行光学检测。该微流控芯片是完全可抛弃的,由聚二甲基硅氧烷(PDMS)平板组成,该平板具有密封在可变形PDMS薄膜上的微通道特征。通道设计有扩散器,以减轻基于销钉执行器的蠕动泵送方案固有的脉动流动特性,从而以最小的通道内层流干扰最小化样品的流体动力学聚焦。连接到微流体通道的漏斗设计用于有效装载少量细胞的样品,并且还位于芯片上,以防止在致动过程中盲文针的挤压作用对样品造成物理损坏。样品加载方案通过计算流体动力学(CFD)模拟和实验观察来表征。首先将荧光素溶液用于流场研究,然后将具有相对强度的已知荧光珠用于光学检测性能校准。利用小鼠成肌细胞(C2C12)来研究设备样品加载方案的细胞活力。此外,还用低渗DNA染色缓冲液对人早幼粒细胞白血病(HL60)细胞进行了系统细胞周期分析测试。通过分析来自小鼠胚胎干细胞的单个胚状体中的细胞,证明了有效分析细胞数量少的细胞样品的能力。因此,本文报道的设计的微流体设备有望用于易于使用,小样本流式细胞仪分析,并有可能与其他基于盲文显示器的微流体设备进一步集成,以促进多功能实验室-用于哺乳动物细胞操作的芯片。

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