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Scott W Simpkins

Showing results (1-10 of 18) with videos related to

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Journal of Chromatography. A|November 5, 2010
Targeted three-dimensional liquid chromatography: a versatile tool for quantitative trace analysis in complex matricesScott W Simpkins, Jeremy W Bedard, Stephen R Groskreutz, et al.
Food and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|September 3, 2013
Contamination of deconjugation enzymes derived from Helix pomatia with the plant bioactive compounds 3,3'-diindolylmethane, 5-methoxypsoralen, and 8-methoxypsoralenCheryl E Ainslie-Waldman, Scott W Simpkins, Pramod Upadhyaya, et al.
Scientific Reports|December 11, 2020
Reliable and accurate diagnostics from highly multiplexed sequencing assaysA Sina Booeshaghi, Nathan B Lubock, Aaron R Cooper, et al.
Methods in Molecular Biology (Clifton, N.J.)|January 26, 2015
Chemical genomic profiling via barcode sequencing to predict compound mode of actionJeff S Piotrowski, Scott W Simpkins, Sheena C Li, et al.
Bioinformatics (Oxford, England)|December 6, 2017
MOSAIC: a chemical-genetic interaction data repository and web resource for exploring chemical modes of actionJustin Nelson, Scott W Simpkins, Hamid Safizadeh, et al.
Nature Protocols|January 13, 2019
Using BEAN-counter to quantify genetic interactions from multiplexed barcode sequencing experimentsScott W Simpkins, Raamesh Deshpande, Justin Nelson, et al.
Journal of Chemical Information and Modeling|July 28, 2021
Improving Measures of Chemical Structural Similarity Using Machine Learning on Chemical-Genetic InteractionsHamid Safizadeh, Scott W Simpkins, Justin Nelson, et al.
Nature Communications|May 12, 2017
Accumulation of heme biosynthetic intermediates contributes to the antibacterial action of the metalloid telluriteEduardo H Morales, Camilo A Pinto, Roberto Luraschi, et al.
Plos Computational Biology|October 31, 2018
Predicting bioprocess targets of chemical compounds through integration of chemical-genetic and genetic interactionsScott W Simpkins, Justin Nelson, Raamesh Deshpande, et al.
ACS Chemical Biology|November 10, 2017
Coculture of Marine Invertebrate-Associated Bacteria and Interdisciplinary Technologies Enable Biosynthesis and Discovery of a New Antibiotic, KeyicinNavid Adnani, Marc G Chevrette, Srikar N Adibhatla, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Journal of Chromatography. A|November 5, 2010
Targeted three-dimensional liquid chromatography: a versatile tool for quantitative trace analysis in complex matricesScott W Simpkins, Jeremy W Bedard, Stephen R Groskreutz, et al.
Food and Chemical Toxicology : an International Journal Published for the British Industrial Biological Research Association|September 3, 2013
Contamination of deconjugation enzymes derived from Helix pomatia with the plant bioactive compounds 3,3'-diindolylmethane, 5-methoxypsoralen, and 8-methoxypsoralenCheryl E Ainslie-Waldman, Scott W Simpkins, Pramod Upadhyaya, et al.
Scientific Reports|December 11, 2020
Reliable and accurate diagnostics from highly multiplexed sequencing assaysA Sina Booeshaghi, Nathan B Lubock, Aaron R Cooper, et al.
Methods in Molecular Biology (Clifton, N.J.)|January 26, 2015
Chemical genomic profiling via barcode sequencing to predict compound mode of actionJeff S Piotrowski, Scott W Simpkins, Sheena C Li, et al.
Bioinformatics (Oxford, England)|December 6, 2017
MOSAIC: a chemical-genetic interaction data repository and web resource for exploring chemical modes of actionJustin Nelson, Scott W Simpkins, Hamid Safizadeh, et al.
Nature Protocols|January 13, 2019
Using BEAN-counter to quantify genetic interactions from multiplexed barcode sequencing experimentsScott W Simpkins, Raamesh Deshpande, Justin Nelson, et al.
Journal of Chemical Information and Modeling|July 28, 2021
Improving Measures of Chemical Structural Similarity Using Machine Learning on Chemical-Genetic InteractionsHamid Safizadeh, Scott W Simpkins, Justin Nelson, et al.
Nature Communications|May 12, 2017
Accumulation of heme biosynthetic intermediates contributes to the antibacterial action of the metalloid telluriteEduardo H Morales, Camilo A Pinto, Roberto Luraschi, et al.
Plos Computational Biology|October 31, 2018
Predicting bioprocess targets of chemical compounds through integration of chemical-genetic and genetic interactionsScott W Simpkins, Justin Nelson, Raamesh Deshpande, et al.
ACS Chemical Biology|November 10, 2017
Coculture of Marine Invertebrate-Associated Bacteria and Interdisciplinary Technologies Enable Biosynthesis and Discovery of a New Antibiotic, KeyicinNavid Adnani, Marc G Chevrette, Srikar N Adibhatla, et al.
Pageof 2