Highly efficient and scalable biomarker preconcentrator based on nanoelectrokinetics
- Authors
- Lee, Dohwan; Lee, Jee Won; Kim, Cheonjung; Lee, Dongho; Chung, Seok; Yoon, Dae Sung; Lee, Jeong Hoon
- Issue Date
- 15-3월-2021
- Publisher
- ELSEVIER ADVANCED TECHNOLOGY
- Citation
- BIOSENSORS & BIOELECTRONICS, v.176
- Indexed
- SCIE
SCOPUS
- Journal Title
- BIOSENSORS & BIOELECTRONICS
- Volume
- 176
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/49471
- DOI
- 10.1016/j.bios.2020.112904
- ISSN
- 0956-5663
- Abstract
- Micro/nanofluidics are excellent candidates for biological sample preparation. However, the limited process volume in micro/nanofluidics is the main hurdle limiting their practical applications. To date, most micro/nanofluidics have processed sample volumes of several microliters and have rarely been used to handle large-volume samples. Herein, we propose a microfluidic paper-based large-volume preconcentrator (u-LVP) for enrichment and purification of biomarkers (e.g., miRNA) using ion concentration polarization. A Nafion (ion-selective nanoporous membrane)-functionalized multilayer cellulose paper enables microscale division of milliliter-scale samples, thus electrokinetically separating and preconcentrating the biomarker in different locations within the u-LVP. By inserting collecting discs at optimal positions in the u-LVP, the enriched biomarker is simply recovered with high efficiency. With this approach, as an exemplary biomarker, miRNA-21 in human serum was separated from proteins and preconcentrated with an effective preconcentration factor exceeding 6.63 and a recovery rate above 84%. Thus, our platform offers new opportunities and benefits for biomarker, diagnostic, prognostic, and therapeutic research.
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- Appears in
Collections - College of Engineering > Department of Mechanical Engineering > 1. Journal Articles
- Graduate School > Department of Bioengineering > 1. Journal Articles
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