Microfluidic devices for cell separation and sample concentration

Microfluidic platforms for cell separation and downstream bio-sample analysis provide powerful tools for biomedical fundamental research and practical applications. Therefore, the overall goal of my dissertation is to develop such integrative platforms using novel techniques. We first develop a magn...

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Main Author: Ning, Liu
Other Authors: Lew Wen Siang
Format: Theses and Dissertations
Language:English
Published: 2018
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Online Access:http://hdl.handle.net/10356/73351
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-733512023-02-28T23:47:55Z Microfluidic devices for cell separation and sample concentration Ning, Liu Lew Wen Siang School of Physical and Mathematical Sciences DRNTU::Science::Physics Microfluidic platforms for cell separation and downstream bio-sample analysis provide powerful tools for biomedical fundamental research and practical applications. Therefore, the overall goal of my dissertation is to develop such integrative platforms using novel techniques. We first develop a magnetofluidic device using microelectromagnets for magnetic field generation and applied it for cancer cell separation. The cell separation efficiency can reach up to 79 % using 1A electric current. This tunable device would be a promising platform to separate many types of cells. Next, we propose a hybrid size and affinity-based multiplexed cell sorter, consisting spiral channel, inertial alignment segment and magnetic separation part. This is the first platform integrating spiral inertial microfluidics and magnetophoretic separation technique in one single chip. Using blood cell sample, a good separation performance (>90% efficiency) is achieved. This novel hybrid platform offers a promising alternative to many existing cell separation technologies. Sample concentration technology is another critical aspect of biomedical innovation. Utilizing our developed fabrication techniques, we establish paper-based microfluidic platforms using ion concentration polarization effect for bio-sample concentration. The sample concentration performances are comparable with other reported results. Our paper-based platforms and fabrication techniques hold great promise for creating simple and inexpensive paper-based assays, which can be used for practical point-of-care (POC) diagnostics. ​Doctor of Philosophy (SPMS) 2018-02-26T04:06:53Z 2018-02-26T04:06:53Z 2018 Thesis Ning, L. (2018). Microfluidic devices for cell separation and sample concentration. Doctoral thesis, Nanyang Technological University, Singapore. http://hdl.handle.net/10356/73351 10.32657/10356/73351 en 202 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science::Physics
spellingShingle DRNTU::Science::Physics
Ning, Liu
Microfluidic devices for cell separation and sample concentration
description Microfluidic platforms for cell separation and downstream bio-sample analysis provide powerful tools for biomedical fundamental research and practical applications. Therefore, the overall goal of my dissertation is to develop such integrative platforms using novel techniques. We first develop a magnetofluidic device using microelectromagnets for magnetic field generation and applied it for cancer cell separation. The cell separation efficiency can reach up to 79 % using 1A electric current. This tunable device would be a promising platform to separate many types of cells. Next, we propose a hybrid size and affinity-based multiplexed cell sorter, consisting spiral channel, inertial alignment segment and magnetic separation part. This is the first platform integrating spiral inertial microfluidics and magnetophoretic separation technique in one single chip. Using blood cell sample, a good separation performance (>90% efficiency) is achieved. This novel hybrid platform offers a promising alternative to many existing cell separation technologies. Sample concentration technology is another critical aspect of biomedical innovation. Utilizing our developed fabrication techniques, we establish paper-based microfluidic platforms using ion concentration polarization effect for bio-sample concentration. The sample concentration performances are comparable with other reported results. Our paper-based platforms and fabrication techniques hold great promise for creating simple and inexpensive paper-based assays, which can be used for practical point-of-care (POC) diagnostics.
author2 Lew Wen Siang
author_facet Lew Wen Siang
Ning, Liu
format Theses and Dissertations
author Ning, Liu
author_sort Ning, Liu
title Microfluidic devices for cell separation and sample concentration
title_short Microfluidic devices for cell separation and sample concentration
title_full Microfluidic devices for cell separation and sample concentration
title_fullStr Microfluidic devices for cell separation and sample concentration
title_full_unstemmed Microfluidic devices for cell separation and sample concentration
title_sort microfluidic devices for cell separation and sample concentration
publishDate 2018
url http://hdl.handle.net/10356/73351
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