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DNA computational device-based smart biosensors

delete2023-02-01
delete12
PRE
AI
M
Mengyao Cao
X
Xiewei Xiong
Y
Yun Zhu
M
Mingshu Xiao
L
Li Li
裴昊 (Hao Pei) *
DOI:10.1016/j.trac.2022.116911delete
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Abstract

Abstract

En 中文
During the past decade, DNA computing has been rapidly developed and made continuous progress. Based on typical DNA functional motifs, DNA computational devices can perform diverse powerful computational functions, such as simple Boolean logics and sophisticated neural network algorithms. Thus, DNA computer is widely regarded as one of the most excellent next-generation molecular com-puters performing Boolean logic. Benefiting from DNAs' inherent properties of biocompatibility, low-cost, ease of synthesis, and sequence programmability, DNA computational devices have shown great potential in various biosensing applications. In this review, we summarize the recent progress in DNA computational devices-based biosensors. Initially, DNA logic circuit-based in vitro biosensing is outlined. Afterwards, the DNA neural network-based in vitro biosensing is reviewed. Further, employing DNA logical circuits for in vivo biosensing and programming cell behaviors is also elaborated. Finally, we discuss future challenges and offer some insights on potential directions of DNA computational device-based smart biosensors.(c) 2023 Elsevier B.V. All rights reserved.
Keywords:
DNA nanotechnology
Molecular computing
Smart biosensor
Cell surface engineering

Journal

TRAC-Trends in Analytical Chemistry cover
TRAC-Trends in Analytical Chemistry
IF:
12
Papers:
7.3K
Citations:
3.9W

Organization

E
east china normal university
Scholars:
3.1W
Papers: 2.1W
Citations: 25