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Annals of Clinical and Laboratory Science|October 17, 2020
Chemical Pathology of Homocysteine VIII. Effects of Tocotrienol, Geranylgeraniol, and Squalene on Thioretinaco Ozonide, Mitochondrial Permeability, and Oxidative Phosphorylation in Arteriosclerosis, Cancer, Neurodegeneration and AgingKilmer S McCullyAnnals of Clinical and Laboratory Science|September 1, 2019
Chemical Pathology of Homocysteine VII. Cholesterol, Thioretinaco Ozonide, Mitochondrial Dysfunction, and Prevention of MortalityKilmer S McCullyJournal of Alzheimer'S Disease : JAD|August 29, 2016
Homocysteine, Infections, Polyamines, Oxidative Metabolism, and the Pathogenesis of Dementia and AtherosclerosisKilmer S McCullyMilitary Medicine|May 11, 2004
Homocysteine, vitamins, and prevention of vascular diseaseKilmer S McCullyComprehensive Physiology|January 13, 2016
Homocysteine Metabolism, Atherosclerosis, and Diseases of AgingKilmer S McCullyAnnals of Clinical and Laboratory Science|June 26, 2020
Environmental Pollution, Oxidative Stress and Thioretinaco Ozonide: Effects of Glyphosate, Fluoride and Electromagnetic Fields on Mitochondrial Dysfunction in Carcinogenesis, Atherogenesis and AgingKilmer S McCullyMethods in Molecular Biology (Clifton, N.J.)|February 7, 2019
Homocysteine, Thioretinaco Ozonide, and Oxidative Phosphorylation in Cancer and Aging: A Proposed Clinical Trial ProtocolKilmer S McCullyThe American Journal of Clinical Nutrition|November 10, 2007
Homocysteine, vitamins, and vascular disease preventionKilmer S McCullyAnnals 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 McCullyPageof 3