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Plos One|October 4, 2011
Mariprofundus ferrooxydans PV-1 the first genome of a marine Fe(II) oxidizing ZetaproteobacteriumEsther Singer, David Emerson, Eric A Webb, et al.Nature|December 8, 2022
Decoupling of respiration rates and abundance in marine prokaryoplanktonJacob H Munson-McGee, Melody R Lindsay, Eva Sintes, et al.Genome Announcements|February 14, 2018
Genome Sequence of <i>Hydrogenovibrio</i> sp. Strain SC-1, a Chemolithoautotrophic Sulfur and Iron OxidizerChristopher Neely, Charbel Bou Khalil, Alex Cervantes, et al.Environmental Science. Processes & Impacts|June 14, 2014
Using in situ voltammetry as a tool to identify and characterize habitats of iron-oxidizing bacteria: from fresh water wetlands to hydrothermal vent sitesDaniel J MacDonald, Alyssa J Findlay, Sean M McAllister, et al.The ISME Journal|March 9, 2025
Laminarin stimulates single cell rates of sulfate reduction whereas oxygen inhibits transcriptomic activity in coastal marine sedimentMelody R Lindsay, Timothy D'Angelo, Elizabeth Goodell, et al.Bioorganic & Medicinal Chemistry Letters|March 5, 2005
Potent and selective [2-imidazol-1-yl-2-(6-alkoxy-naphthalen-2-yl)-1-methyl-ethyl]-dimethyl-amines as retinoic acid metabolic blocking agents (RAMBAs)Mark J Mulvihill, Julie L C Kan, Patricia Beck, et al.Scientific Reports|October 19, 2021
Visible blue light inhibits infection and replication of SARS-CoV-2 at doses that are well-tolerated by human respiratory tissueNathan Stasko, Jacob F Kocher, Abigail Annas, et al.Msphere|May 28, 2025
The pan-variant potential of light: 425 nm light inactivates SARS-CoV-2 variants of concern and non-cytotoxic doses reduce viral titers in human airway epithelial cellsNathan Stasko, Leslee Arwood, Nicole Jandick, et al.Bioorganic & Medicinal Chemistry Letters|March 1, 2006
3-[6-(2-Dimethylamino-1-imidazol-1-yl-butyl)-naphthalen-2-yloxy]-2,2-dimethyl-propionic acid as a highly potent and selective retinoic acid metabolic blocking agentMark J Mulvihill, Julie L C Kan, Andrew Cooke, et al.Proceedings of the National Academy of Sciences of the United States of America|April 4, 2024
Species-resolved, single-cell respiration rates reveal dominance of sulfate reduction in a deep continental subsurface ecosystemMelody R Lindsay, Timothy D'Angelo, Jacob H Munson-McGee, et al.Pageof 9