Kung Yu-Chun, Niazi Kayvan R, Chiou Pei-Yu
Department of Mechanical and Aerospace Engineering, University of California at Los Angeles, USA.
Lab Chip. 2021 Mar 21;21(6):1049-1060. doi: 10.1039/d0lc00853b. Epub 2020 Dec 14.
In molecular and cellular biological research, cell isolation and sorting are required for accurate investigation of cell populations of specific physical or biological characteristics. By employing unique cell properties to distinguish between heterogeneous cell populations, rapid and accurate sorting with high efficiency is possible. Dielectrophoresis-based cell manipulation has significant promise for separation of cells based on their physical properties and is used in diverse areas ranging from cellular diagnostics to therapeutic applications. In this study, we present a microfluidic device that can achieve label-free and size-based cell separation with high size differential resolution from a mono-cellular population or complex sample matrices. It was realized by using the tunnel dielectrophoresis (TDEP) technique to manipulate the spatial position of individual cells three dimensionally with high resolution. Cells were processed in high speed flows in high ionic strength buffers. A mixture of different sizes of polystyrene micro-particles with a size difference as small as 1 μm can be separated with high purity (>90%). For the first time, high-pass, low-pass, and band-pass filtering within a mono-cellular mammalian cell population were demonstrated with a tunable bandwidth as small as 3 μm. In addition, leukocyte subtype separation was demonstrated by sorting monocytes out of peripheral blood mononuclear cells (PBMCs) from whole blood with high purity (>85%). Its ability to deliver real-time adjustable cut-off threshold size-based cell sorting and its capability to provide an arbitrary cell size pick-up band could potentially enable many research and clinical applications.
在分子和细胞生物学研究中,为了准确研究具有特定物理或生物学特性的细胞群体,需要进行细胞分离和分选。通过利用独特的细胞特性来区分异质细胞群体,可以实现高效、快速且准确的分选。基于介电电泳的细胞操作在基于细胞物理特性的细胞分离方面具有巨大潜力,并被应用于从细胞诊断到治疗应用的多个领域。在本研究中,我们展示了一种微流控装置,它能够从单细胞群体或复杂样品基质中实现无标记且基于尺寸的细胞分离,具有高尺寸分辨能力。这是通过使用隧道介电电泳(TDEP)技术以高分辨率三维操纵单个细胞的空间位置来实现的。细胞在高离子强度缓冲液中的高速流中进行处理。尺寸差异小至1μm的不同大小的聚苯乙烯微颗粒混合物能够以高纯度(>90%)分离。首次在单细胞哺乳动物细胞群体中展示了高通、低通和带通滤波,可调带宽小至3μm。此外,通过从全血的外周血单核细胞(PBMC)中高效分选单核细胞(纯度>85%),展示了白细胞亚型分离。其能够提供基于实时可调截止阈值大小的细胞分选,以及能够提供任意细胞大小拾取带的能力,可能会推动许多研究和临床应用。