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Archives of Biochemistry and Biophysics|October 31, 2016
How are nitrosothiols formed de novo in vivo?Jack R LancasterChemical Research in Toxicology|September 19, 2006
Nitroxidative, nitrosative, and nitrative stress: kinetic predictions of reactive nitrogen species chemistry under biological conditionsJack R LancasterJournal of Bioenergetics and Biomembranes|December 1, 1989
Sodium, protons, and energy coupling in the methanogenic bacteriaJ R LancasterBiochemical Pharmacology|January 11, 2020
Historical origins of the discovery of mammalian nitric oxide (nitrogen monoxide) production/physiology/pathophysiologyJack R LancasterFEBS Letters|September 5, 2001
Succinate:quinone oxidoreductases--what can we learn from Wolinella succinogenes quinol:fumarate reductase?C R LancasterJournal of Nursing Measurement|May 27, 2005
Development and psychometric testing of the coping with breast cancer threat instrumentDiane R LancasterFuture Science OA|December 30, 2016
Nitric oxide: a brief overview of chemical and physical properties relevant to therapeutic applicationsJack R LancasterNitric Oxide : Biology and Chemistry|May 28, 2008
Protein cysteine thiol nitrosation: maker or marker of reactive nitrogen species-induced nonerythroid cellular signaling?Jack R LancasterBiochimica Et Biophysica Acta|May 4, 2001
Proton uptake associated with the reduction of the primary quinone Q(A) influences the binding site of the secondary quinone Q(B) in Rhodopseudomonas viridis photosynthetic reaction centersU Zachariae, C R LancasterJournal for Healthcare Quality : Official Publication of the National Association for Healthcare Quality|February 16, 2013
Collaboration to improve patient safety: the first domain of qualityJ Levy, D R LancasterPageof 20