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Mark P. Brynildsen

Affiliations: 
Chemical and Biological Engineering Princeton University, Princeton, NJ 
Area:
host-pathogen interactions, bacterial persistence, and biofilms
Website:
http://www.princeton.edu/cbe/people/faculty/brynildsen/
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"Mark P. Brynildsen"
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Parents

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James C. Liao grad student 2008 UCLA
 (Transcription network analysis with application to biofuel toxicity of Escherichia coli.)
James J. Collins post-doc 2008-2010 Boston University
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Publications

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Chou WK, Vaikunthan M, Schröder HV, et al. (2020) Synergy Screening Identifies a Compound That Selectively Enhances the Antibacterial Activity of Nitric Oxide. Frontiers in Bioengineering and Biotechnology. 8: 1001
Sivaloganathan DM, Wan X, Brynildsen MP. (2020) Quantifying Nitric Oxide Flux Distributions. Methods in Molecular Biology (Clifton, N.J.). 2088: 161-188
Aedo SJ, Orman MA, Brynildsen MP. (2019) Stationary phase persister formation in Escherichia coli can be suppressed by piperacillin and PBP3 inhibition. Bmc Microbiology. 19: 140
Adolfsen KJ, Chou WK, Brynildsen MP. (2019) Transcriptional regulation contributes to prioritized detoxification of hydrogen peroxide over nitric oxide. Journal of Bacteriology
Balaban NQ, Helaine S, Lewis K, et al. (2019) Publisher Correction: Definitions and guidelines for research on antibiotic persistence. Nature Reviews. Microbiology
Balaban NQ, Helaine S, Lewis K, et al. (2019) Definitions and guidelines for research on antibiotic persistence. Nature Reviews. Microbiology
Barrett TC, Mok WWK, Murawski AM, et al. (2019) Enhanced antibiotic resistance development from fluoroquinolone persisters after a single exposure to antibiotic. Nature Communications. 10: 1177
Aedo SJ, Ma HR, Brynildsen MP. (2019) Checks and Balances with Use of the Keio Collection for Phenotype Testing. Methods in Molecular Biology (Clifton, N.J.). 1927: 125-138
Chou WK, Brynildsen MP. (2018) Loss of DksA leads to multi-faceted impairment of nitric oxide detoxification by Escherichia coli. Free Radical Biology & Medicine
Brynildsen MP. (2018) Nitric Oxide Stress as a Metabolic Flux. Advances in Microbial Physiology. 73: 63-76
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