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Rapid methods for high-throughput detection of sulfoxides
Janna Shainsky
, Netta Lee Derry
, Yael Leichtmann-Bardoogo
,
Thomas K. Wood
, Ayelet Fishman
Chemical Engineering
Huck Institutes of the Life Sciences
One Health Microbiome Center
Research output
:
Contribution to journal
›
Article
›
peer-review
10
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Scopus citations
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Keyphrases
High-throughput Detection
100%
Rapid Methods
100%
Sulfoxide
100%
Sulfide
66%
Monooxygenase
33%
Toluene
33%
High-throughput Screening
33%
High-throughput
16%
Organic Synthesis
16%
Ortho
16%
Methyl
16%
Acid Activation
16%
Fluorescence Detection
16%
Success Rate
16%
Highly Active
16%
Low Sensitivity
16%
Iodine
16%
Microtiter Plate
16%
Biocatalytic
16%
Selective Inhibition
16%
Biocatalyst
16%
Direct Approach
16%
Enantioselectivity
16%
Mutagenesis Library
16%
Saturation mutagenesis
16%
Omeprazole
16%
Enantiopure
16%
Enantioselective Oxidation
16%
Chiral Auxiliary
16%
Optically Pure
16%
Prochiral
16%
Economic Approach
16%
Special Equipment
16%
Active Variants
16%
Immunology and Microbiology
High Throughput Screening
100%
Whole Cell
66%
Monooxygenase
66%
Fluorescence Spectroscopy
33%
Screening
33%
Mutagenesis
33%
Biocatalyst
33%
Tincture of Iodine
33%
Cell Screening
33%
Periodate
33%
Biocatalysis
33%
Alcohol Dehydrogenase
33%
Chemistry
Sulfoxide
100%
High Throughput Screening
60%
Monooxygenase
40%
Sulfide
40%
Purity
20%
Chiral Auxiliary
20%
Enantiopurity
20%
Alcohol Dehydrogenase
20%
Biocatalyst
20%
Fluorescence Spectroscopy
20%
Material Science
Monooxygenase
100%
Oxidation Reaction
50%
Fluorescence Spectroscopy
50%
Biocatalyst
50%
Alcohol Dehydrogenase
50%
Pharmacology, Toxicology and Pharmaceutical Science
Sulfoxide
100%
High-Throughput Screening
50%
Sulfide
33%
Thioether
33%
Unspecific Monooxygenase
33%
Mutagenesis
16%
Omeprazole
16%
Alcohol Dehydrogenase
16%
Biochemistry, Genetics and Molecular Biology
Sulfoxide
100%
Periodate
16%
Omeprazole
16%