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Cited 13 time in webofscience Cited 13 time in scopus
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Self-assembling biomolecules for biosensor applicationsopen access

Authors
Kim, Ji-eunKang, Jeon HyeongKwon, Woo HyunLee, InseoPark, Sang JunKim, Chun-HoJeong, Woo-jinChoi, Jun ShikKim, Kyobum
Issue Date
Dec-2023
Publisher
한국생체재료학회
Keywords
Molecular self-assembly; Supramolecular biosensor; Electrochemical biosensor
Citation
생체재료학회지, v.27, no.1, pp 2894 - 2911
Pages
18
Indexed
SCIE
SCOPUS
KCI
Journal Title
생체재료학회지
Volume
27
Number
1
Start Page
2894
End Page
2911
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/20685
DOI
10.1186/s40824-023-00466-8
ISSN
1226-4601
2055-7124
Abstract
Molecular self-assembly has received considerable attention in biomedical fields as a simple and effective method for developing biomolecular nanostructures. Self-assembled nanostructures can exhibit high binding affinity and selectivity by displaying multiple ligands/receptors on their surface. In addition, the use of supramolecular structure change upon binding is an intriguing approach to generate binding signal. Therefore, many self-assembled nanostructure-based biosensors have been developed over the past decades, using various biomolecules (e.g., peptides, DNA, RNA, lipids) and their combinations with non-biological substances. In this review, we provide an overview of recent developments in the design and fabrication of self-assembling biomolecules for biosensing. Furthermore, we discuss representative electrochemical biosensing platforms which convert the biochemical reactions of those biomolecules into electrical signals (e.g., voltage, ampere, potential difference, impedance) to contribute to detect targets. This paper also highlights the successful outcomes of self-assembling biomolecules in biosensor applications and discusses the challenges that this promising technology needs to overcome for more widespread use.
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College of Engineering (Department of Chemical and Biochemical Engineering)
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