Essential Fluidics for a Flow Cytometer

被引:0
|
作者
Suthanthiraraj, Pearlson Prashanth Austin [1 ]
Shreve, Andrew P. [2 ]
Graves, Steven W. [2 ]
机构
[1] Univ Pittsburgh, Trauma & Transfus Med Res Ctr, Dept Surg, Pittsburgh, PA USA
[2] Univ New Mexico, Dept Chem & Biol Engn, Albuquerque, NM 87106 USA
来源
CURRENT PROTOCOLS | 2024年 / 4卷 / 10期
基金
美国国家卫生研究院;
关键词
cell analysis; fluidics; flow cytometry; FACS; fluorescence-activated cell sorting; microfluidics; ULTRASONIC PARTICLE-CONCENTRATION; HIGH-THROUGHPUT; INTERNATIONAL SOCIETY; KINETIC-ANALYSIS; SEPARATION; CELLS; MICROFLUIDICS; MANIPULATION; PERFORMANCE; CHANNELS;
D O I
10.1002/cpz1.1124
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Flow cytometry is an inherently fluidic process that flows particles on a one-by-one basis through a sensing region to discretely measure their optical and physical properties. It can be used to analyze particles ranging in size from nanoparticles to whole organisms (e.g., zebrafish). It has particular value for blood analysis, and thus most instruments are fluidically optimized for particles that are comparable in size to a typical blood cell. The principles of fluid dynamics allow for particles of such size to be precisely positioned in flow as they pass through sensing regions that are tens of microns in length at linear velocities of meters per second. Such fluidic systems enable discrete analysis of cell-sized particles at rates approaching 100 kHz. For larger particles, the principles of fluidics greatly reduce the achievable rates, but such high rates of data acquisition for cell-sized particles allow rapid collection of information on many thousands to millions of cells and provides for research and clinical measurements of both rare and common cell populations with a high degree of statistical confidence. Additionally, flow cytometers can accurately count particles via the use of volumetric sample delivery and can be coupled with high-throughput sampling technologies to greatly increase the rate at which independent samples can be delivered to the system. Due to the combination of high analysis rates, sensitive multiparameter measurements, high-throughput sampling, and accurate counting, flow cytometry analysis is the gold standard for many critical applications in clinical, research, pharmaceutical, and environmental areas. Beyond the power of flow cytometry as an analytical technique, the fluidic pathway can be coupled with a sorting mechanism to collect particles based on desired properties. We present an overview of fluidic systems that enable flow cytometry-based analysis and sorting. We introduce historical approaches, explanations of commonly implemented fluidics, and brief discussions of potential future fluidics where appropriate. (c) 2024 Wiley Periodicals LLC.
引用
收藏
页数:20
相关论文
共 50 条
  • [31] Directed autonomic flow: Functional motility fluidics
    Kuhn, Philipp
    de Miranda, Barbara
    van Rijn, Patrick
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2016, 251
  • [32] Zone fluidics in flow analysis: potentialities and applications
    Marshall, G
    Wolcott, D
    Olson, D
    ANALYTICA CHIMICA ACTA, 2003, 499 (1-2) : 29 - 40
  • [33] DETERMINE THE POTENCY OF BCG VACCINES BY FLOW CYTOMETER
    Yang, Yi-Chen
    Tsai, Mong-Hsun
    Cheng, Hwei-Fang
    BIOTECHNOLOGY & BIOTECHNOLOGICAL EQUIPMENT, 2011, 25 (02) : 2394 - 2398
  • [34] Evaluating the liquid path stability of a flow cytometer
    Zhang, Wenchang
    Zhu, Lianqing
    Zhang, Fan
    Lou, Xiaoping
    Liu, Chao
    Meng, Xiaochen
    CYTOMETRY PART A, 2016, 89A (10) : 941 - 948
  • [35] Purification of fish spermatogonia using flow cytometer
    Kise, Kazuyoshi
    Miwa, Misako
    Yoshizaki, Goro
    JOURNAL OF REPRODUCTION AND DEVELOPMENT, 2008, 54 (01): : A8 - A8
  • [36] Miniaturized On-Sensor Fluorescence Flow Cytometer
    Shanmugam, Akshaya
    Salthouse, Christopher D.
    2012 IEEE SENSORS PROCEEDINGS, 2012, : 2019 - 2022
  • [37] PURCHASING TIPS WHEN SEARCHING FOR A FLOW CYTOMETER
    Reddy, Emily C.
    Lab Manager, 2022, 17 (01):
  • [38] FLUIDICS MAKE FLUIDICS
    THOMAS, J
    CONTROL ENGINEERING, 1967, 14 (02) : 96 - &
  • [39] INTEGRATION OF A BARCODE READER WITH A COMMERCIAL FLOW CYTOMETER
    ROBINSON, JP
    MAGUIRE, D
    KING, G
    KELLEY, S
    DURACK, G
    CYTOMETRY, 1992, 13 (02): : 193 - 197
  • [40] Validation of a flow cytometer for use in regulated studies
    Hill, Benjaman
    Thomas, John K.
    Schroeder, Michelle
    Ferbas, John
    CYTOMETRY PART B-CLINICAL CYTOMETRY, 2006, 70B (05) : 369 - 369