This review frames genetically encoded RNA nanodevices as artificial RNA-based systems that are produced inside living cells and used for intracellular analysis and regulation. The abstract emphasizes their precision, programmability, and broad application scope.
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genetically encoded RNA nanodevices
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Nowadays, the emergence of genetically encoded RNA nanodevices has provided a promising alternative approach for intracellular analysis and regulation. These genetically encoded RNA-based nanodevices can be directly transcribed and continuously produced inside living cells.
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The review covers applications of genetically encoded RNA nanodevices in regulating cellular gene expression, imaging, logic operation, structural biology, and optogenetics.
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In particular, we will focus on their applications in regulating cellular gene expression, imaging, logic operation, structural biology, and optogenetics.
Genetically encoded RNA-based nanodevices can be directly transcribed and continuously produced inside living cells.
Quoted textsource-backed
These genetically encoded RNA-based nanodevices can be directly transcribed and continuously produced inside living cells.
Genetically encoded RNA nanodevices are presented as a promising alternative approach for intracellular analysis and regulation.
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Nowadays, the emergence of genetically encoded RNA nanodevices has provided a promising alternative approach for intracellular analysis and regulation.