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用于细胞和微珠流体动力学分级分离的可调谐微流控装置:综述

Tunable Microfluidic Devices for Hydrodynamic Fractionation of Cells and Beads: A Review.

作者信息

Alvankarian Jafar, Majlis Burhanuddin Yeop

机构信息

Institute of Microengineering and Nanoelectronics, National University of Malaysia (UKM), 43600 Bangi, Selangor, Malaysia.

出版信息

Sensors (Basel). 2015 Nov 24;15(11):29685-701. doi: 10.3390/s151129685.

Abstract

The adjustable microfluidic devices that have been developed for hydrodynamic-based fractionation of beads and cells are important for fast performance tunability through interaction of mechanical properties of particles in fluid flow and mechanically flexible microstructures. In this review, the research works reported on fabrication and testing of the tunable elastomeric microfluidic devices for applications such as separation, filtration, isolation, and trapping of single or bulk of microbeads or cells are discussed. Such microfluidic systems for rapid performance alteration are classified in two groups of bulk deformation of microdevices using external mechanical forces, and local deformation of microstructures using flexible membrane by pneumatic pressure. The main advantage of membrane-based tunable systems has been addressed to be the high capability of integration with other microdevice components. The stretchable devices based on bulk deformation of microstructures have in common advantage of simplicity in design and fabrication process.

摘要

已开发出的用于基于流体动力学的珠子和细胞分离的可调微流控装置,对于通过流体流动中颗粒的机械性能与机械柔性微结构的相互作用实现快速性能可调性而言非常重要。在本综述中,将讨论有关用于分离、过滤、分离和捕获单个或大量微珠或细胞等应用的可调弹性体微流控装置的制造和测试的研究工作。这种用于快速性能改变的微流控系统分为两类:一类是利用外部机械力使微器件发生整体变形,另一类是利用气动压力通过柔性膜使微结构发生局部变形。基于膜的可调系统的主要优点在于与其他微器件组件的高集成能力。基于微结构整体变形的可拉伸装置具有设计和制造过程简单的共同优点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03be/4701354/7c4e32845965/sensors-15-29685-g001.jpg

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