Lab-on-a-chip dielectrophoretic manipulation of beta-2 microglobulin for toxin removal in an artificial kidney

被引:0
|
作者
Samad M.I.A. [1 ]
Kayani A.A. [2 ]
Zoolfakar A.S. [3 ]
Hamzah A.A. [1 ]
Majlis B.Y. [1 ]
Buyong M.R. [1 ]
机构
[1] Institute of Microengineering and Nanoelectronics (IMEN), Universiti Kebangsaan Malaysia, Bangi
[2] Center for Advanced Materials and Green Technology, Multimedia University, Melaka
[3] NANOElecTronic Centre, NET, Universiti Teknologi Mara, UiTM, Shah Alam, 45450, Selangor
关键词
Artificial kidney; Beta-2-microglobulin; Dielectrophoresis; End-stage renal disease; Hollow fibre membrane; Lab on chip;
D O I
10.2174/1876402911666181218145459
中图分类号
学科分类号
摘要
Background: This paper presents a fundamental study of protein manipulation under the influence of dielectrophoretic (DEP) force for a lab-on-a-chip platform. Objective: Protein manipulation is dependent on the polarisation factor of protein when exposed to an electric field. Therefore the objective of this work is a microfluidic device and measurement system are used to characterise the human beta-2 microglobulin (β2M) protein via lateral attractive forces and vertical repulsive forces by means of DEP responses. Method: The manipulation of the β2M protein was conducted using a microfluidic platform with a tapered DEP microelectrode and the protein concentration was quantified based on a biochemical interaction using an Enzyme-Linked Immunosolvent Assay (ELISA). The protein distribution has been analysed based on the β2M concentration for each microfluidic outlet. Results: At 300 kHz, the protein experienced a negative DEP (nDEP) with of 83.3% protein distribution on the middle microchannel. In contrast, the protein experienced a positive DEP (pDEP) at 1.2 MHz with of 78.7% of protein on the left and right sides of the microchannel. Conclusion: This is concept proved that the tapered DEP microelectrode is capable of manipulating a β2M via particle polarisation, hence making it suitable to be utilised for purifying proteins in biomedical application. © 2019 Bentham Science Publishers.
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页码:40 / 46
页数:6
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