DNA and RNA nanotechnology has been used for the development of dynamic molecular devices. In particular, programmable enzyme-free nucleic acid circuits, such as catalytic hairpin assembly, have been demonstrated as useful tools for bioanalysis and to scale up system complexity to an extent beyond current cellular genetic circuits. However, the intracellular functions of most synthetic nucleic acid circuits have been hindered by challenges in the biological delivery and degradation. On the other hand, genetically encoded and transcribed RNA circuits emerge as alternative powerful tools for long-term embedded cellular analysis and regulation. Herein, we reported a genetically encoded RNA-based catalytic hairpin assembly circuit for sensitive...
Enzyme-free signal amplification has enabled sensitive <i>in vitro</i> detection of biomolecules suc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2016.Th...
The engineering of biological systems is anticipated to provide effective solutions to challenges th...
Nucleic acid circuits are finding increasing real-life applications in diagnostics and synthetic bio...
Fluorescence imaging of cellular components and biomolecules have given numerous insights in biomedi...
RNA–RNA assembly governs key biological processes and is a powerful tool for engineering synthetic g...
Enzyme-free signal amplification has enabled sensitive in vitro detection of biomolecules such as pr...
SummaryRNA aptamers can be expressed in cells to influence and image cellular processes. Aptamer fol...
<p>Nucleic Acid hairpins have been a subject of study for the last four decades. They are composed o...
The emerging field of RNA nanotechnology harnesses the versatility of RNA molecules to generate natu...
DNA can execute programmed strand exchange reactions that process signals and information. In partic...
RNA aptamers that bind non-fluorescent dyes and activate their fluorescence are highly sensitive, no...
Nucleic acid nanotechnologies have provided a platform where biologically relevant molecules can be ...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
Abstract Background Small interfering RNA (siRNA) has emerged as a kind of promising therapeutic age...
Enzyme-free signal amplification has enabled sensitive <i>in vitro</i> detection of biomolecules suc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2016.Th...
The engineering of biological systems is anticipated to provide effective solutions to challenges th...
Nucleic acid circuits are finding increasing real-life applications in diagnostics and synthetic bio...
Fluorescence imaging of cellular components and biomolecules have given numerous insights in biomedi...
RNA–RNA assembly governs key biological processes and is a powerful tool for engineering synthetic g...
Enzyme-free signal amplification has enabled sensitive in vitro detection of biomolecules such as pr...
SummaryRNA aptamers can be expressed in cells to influence and image cellular processes. Aptamer fol...
<p>Nucleic Acid hairpins have been a subject of study for the last four decades. They are composed o...
The emerging field of RNA nanotechnology harnesses the versatility of RNA molecules to generate natu...
DNA can execute programmed strand exchange reactions that process signals and information. In partic...
RNA aptamers that bind non-fluorescent dyes and activate their fluorescence are highly sensitive, no...
Nucleic acid nanotechnologies have provided a platform where biologically relevant molecules can be ...
Deoxyribonucleic acid (DNA) and Ribonucleic acid (RNA) are molecules that store and transmit genetic...
Abstract Background Small interfering RNA (siRNA) has emerged as a kind of promising therapeutic age...
Enzyme-free signal amplification has enabled sensitive <i>in vitro</i> detection of biomolecules suc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2016.Th...
The engineering of biological systems is anticipated to provide effective solutions to challenges th...