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Adapting Enzyme-Free DNA Circuits to the Detection of Loop-Mediated Isothermal Amplification Reactions
American Chemical Society | 2012| -
Analysis of DNA-Guided Self-Assembly of Microspheres Using Imaging Flow Cytometry
American Chemical Society | 2012| -
Aptamer-Based Sensor Arrays for the Detection and Quantitation of Proteins
American Chemical Society | 2004| -
Asymmetric Synthesis of α‑Chloroamides via Photoenzymatic Hydroalkylation of Olefins
American Chemical Society | 2024| -
Designed Signaling Aptamers that Transduce Molecular Recognition to Changes in Fluorescence Intensity
American Chemical Society | 2000| -
Diffractometric Detection of Proteins Using Microbead-Based Rolling Circle Amplification
American Chemical Society | 2010| -
DNA Hybridization and Discrimination of Single-Nucleotide Mismatches Using Chip-Based Microbead Arrays
American Chemical Society | 2003| -
Engineering Signaling Aptamers That Rely on Kinetic Rather Than Equilibrium Competition
American Chemical Society | 2016| -
Evolution of a Thermophilic Strand-Displacing Polymerase Using High-Temperature Isothermal Compartmentalized Self-Replication
American Chemical Society | 2018| -
Evolving to Evolve, Dan Tawfik’s Insights into Protein Engineering
American Chemical Society | 2023| -
Evolving tRNASec for Efficient Canonical Incorporation of Selenocysteine
American Chemical Society | 2015| -
Improved Bst DNA Polymerase Variants Derived via a Machine Learning Approach
American Chemical Society | 2023| -
Incorporation of a Non-Nucleotide Bridge into Hairpin Oligonucleotides Capable of High-Affinity Binding to the Rev Protein of HIV-1 †
American Chemical Society | 1996| -
Integrated Top-Down and Bottom-Up Mass Spectrometry for Characterization of Diselenide Bridging Patterns of Synthetic Selenoproteins
American Chemical Society | 2022| -
Micromechanical Detection of Proteins Using Aptamer-Based Receptor Molecules
American Chemical Society | 2004| -
Monitoring the Growth of a Bacteria Culture by MALDI-MS of Whole Cells
American Chemical Society | 1999| -
NMR Mapping of the Recombinant Mouse Major Urinary Protein I Binding Site Occupied by the Pheromone 2-sec-Butyl-4,5-dihydrothiazole †
American Chemical Society | 1999|
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