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The Journal of Nutritional Biochemistry|April 10, 2007
Dietary factors and growth and metabolism in experimental tumorsLeonard A Sauer, David E Blask, Robert T DauchyComparative Medicine|August 31, 2023
Dietary Linoleic Acid: An Omega-6 Fatty Acid Essential for Liver Regeneration in Buffalo RatsRobert T Dauchy, Leonard A Sauer, David E BlaskContemporary Topics in Laboratory Animal Science|September 19, 2009
A new surgical technique for perfusion of the epididymal fat pad in situ in ratsRobert T Dauchy, David E Blask, Leonard A SauerCurrent Topics in Medicinal Chemistry|March 20, 2002
Melatonin as a chronobiotic/anticancer agent: cellular, biochemical, and molecular mechanisms of action and their implications for circadian-based cancer therapyDavid E Blask, Leonard A Sauer, Robert T DauchyEndocrine|October 12, 2005
Putting cancer to sleep at night: the neuroendocrine/circadian melatonin signalDavid E Blask, Robert T Dauchy, Leonard A SauerCarcinogenesis|February 3, 2004
Melatonin uptake and growth prevention in rat hepatoma 7288CTC in response to dietary melatonin: melatonin receptor-mediated inhibition of tumor linoleic acid metabolism to the growth signaling molecule 13-hydroxyoctadecadienoic acid and the potential role of phytomelatoninDavid E Blask, Robert T Dauchy, Leonard A Sauer, et al.Neuro Endocrinology Letters|August 7, 2002
Light during darkness, melatonin suppression and cancer progressionDavid E Blask, Robert T Dauchy, Leonard A Sauer, et al.Breast Cancer Research and Treatment|July 9, 2003
Growth and fatty acid metabolism of human breast cancer (MCF-7) xenografts in nude rats: impact of constant light-induced nocturnal melatonin suppressionDavid E Blask, Robert T Dauchy, Leonard A Sauer, et al.The Journal of Nutrition|September 6, 2005
Eicosapentaenoic acid suppresses cell proliferation in MCF-7 human breast cancer xenografts in nude rats via a pertussis toxin-sensitive signal transduction pathwayLeonard A Sauer, Robert T Dauchy, David E Blask, et al.Comparative Medicine|June 30, 2021
Dietary Melatonin and Omega-3 Fatty Acids Induce Human Cancer Xenograft Regression In Vivo in Rats by Suppressing Linoleic Acid Uptake and MetabolismErin M Dauchy, Robert T Dauchy, Robert P Tirrell, et al.Pageof 3