镊子
分离(统计)
吞吐量
纳米技术
功能(生物学)
光学镊子
化学
计算机科学
材料科学
物理
生物
细胞生物学
光学
电信
机器学习
无线
作者
Mengxi Wu,Kejie Chen,Shujie Yang,Zeyu Wang,Po‐Hsun Huang,John Mai,Zeng-Yao Li,Tony Jun Huang
出处
期刊:Lab on a Chip
[Royal Society of Chemistry]
日期:2018-01-01
卷期号:18 (19): 3003-3010
被引量:76
摘要
Separation of particles and cells is an important function in many biological and biomedical protocols. Although a variety of microfluidic-based techniques have been developed so far, there is clearly still a demand for a precise, fast, and biocompatible method for separation of microparticles and cells. By combining acoustics and hydrodynamics, we have developed a method which we integrated into three-dimensional acoustofluidic tweezers (3D-AFT) to rapidly and efficiently separate microparticles and cells into multiple high-purity fractions. Compared with other acoustophoresis methods, this 3D-AFT method significantly increases the throughput by an order of magnitude, is label-free and gently handles the sorted cells. We demonstrate not only the separation of 10, 12, and 15 micron particles at a throughput up to 500 μl min-1 using this 3D-AFT method, but also the separation of erythrocytes, leukocytes, and cancer cells. This 3D-AFT method is able to meet various separation demands thus offering a viable alternative with potential for clinical applications.
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