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Annals of Clinical and Laboratory Science|August 12, 2009
Chemical pathology of homocysteine. IV. Excitotoxicity, oxidative stress, endothelial dysfunction, and inflammationKilmer S McCullyAnnals of Clinical and Laboratory Science|April 19, 2015
The active site of oxidative phosphorylation and the origin of hyperhomocysteinemia in aging and dementiaKilmer S McCullyAnnals of Clinical and Laboratory Science|March 14, 2018
Communication: Melatonin, Hyperhomocysteinemia, Thioretinaco Ozonide, Adenosylmethionine and Mitochondrial Dysfunction in Aging and DementiaKilmer S McCullyAnnals of Clinical and Laboratory Science|July 5, 2018
Loss of the Thioretinaco Ozonide Oxygen Adenosine Triphosphate Complex from Mitochondria Produces Mitochondrial Dysfunction and CarcinogenesisKilmer S McCullyAnnals of Clinical and Laboratory Science|December 15, 2011
Chemical pathology of homocysteine. V. Thioretinamide, thioretinaco, and cystathionine synthase function in degenerative diseasesKilmer S McCullyClinical Chemistry and Laboratory Medicine|October 4, 2005
Hyperhomocysteinemia and arteriosclerosis: historical perspectivesKilmer S McCullyFrontiers in Aging Neuroscience|October 24, 2017
Hyperhomocysteinemia, Suppressed Immunity, and Altered Oxidative Metabolism Caused by Pathogenic Microbes in Atherosclerosis and DementiaKilmer S McCullyAnnals of Clinical and Laboratory Science|December 21, 2016
Communication: Homocysteine, Thioretinaco Ozonide, Oxidative Phosphorylation, Biosynthesis of Phosphoadenosine Phosphosulfate and the Pathogenesis of AtherosclerosisKilmer S McCullyAnnals of Clinical and Laboratory Science|October 31, 2018
Review: Chemical Pathology of Homocysteine VI. Aging, Cellular Senescence, and Mitochondrial DysfunctionKilmer S McCullyPageof 4