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Optimizing locked nucleic acid modification in double-stranded biosensors for live single cell analysis.

Authors :
Vilchez Mercedes, Samuel A.
Eder, Ian
Ahmed, Mona
Zhu, Ninghao
Wong, Pak Kin
Source :
Analyst; 2/21/2022, Vol. 147 Issue 4, p722-733, 12p
Publication Year :
2022

Abstract

Double-stranded (ds) biosensors are homogeneous oligonucleotide probes for detection of nucleic acid sequences in biochemical assays and live cell imaging. Locked nucleic acid (LNA) modification can be incorporated in the biosensors to enhance the binding affinity, specificity, and resistance to nuclease degradation. However, LNA monomers in the quencher sequence can also prevent the target-fluorophore probe binding, which reduces the signal of the dsLNA biosensor. This study investigates the influence of LNA modification on dsLNA biosensors by altering the position and amount of LNA monomers present in the quencher sequence. We characterize the fluorophore–quencher interaction, target detection, and specificity of the biosensor in free solution and evaluate the performance of the dsLNA biosensor in 2D monolayers and 3D spheroids. The data indicate that a large amount of LNA monomers in the quencher sequence can enhance the specificity of the biosensor, but prevents effective target binding. Together, our results provide guidelines for improving the performance of dsLNA biosensors in nucleic acid detection and gene expression analysis in live cells. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00032654
Volume :
147
Issue :
4
Database :
Complementary Index
Journal :
Analyst
Publication Type :
Academic Journal
Accession number :
155236124
Full Text :
https://doi.org/10.1039/d1an01802g