John C. Newman, MD, PhD

Affiliations: 
Buck Institute for Research on Aging 
 Geriatrics UCSF School of Medicine 
Area:
Geroscience, aging, geriatrics, delirium, frailty, ketone bodies
Website:
https://www.buckinstitute.org/lab/newman-lab/
Google:
"John Newman geriatrics"
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Publications

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Nomura M, Murad NF, Madhavan SS, et al. (2024) Ketogenic Diet Reduces Age-Induced Chronic Neuroinflammation in Mice. Aging Biology. 2
Madhavan SS, Roa Diaz S, Peralta S, et al. (2024) β-hydroxybutyrate is a metabolic regulator of proteostasis in the aged and Alzheimer disease brain. Cell Chemical Biology
Nomura M, Murad NF, Madhavan SS, et al. (2023) A ketogenic diet reduces age-induced chronic neuroinflammation in mice Running title: ketogenic diet and brain inflammaging. Biorxiv : the Preprint Server For Biology
Strong R, Miller RA, Cheng CJ, et al. (2022) Lifespan benefits for the combination of rapamycin plus acarbose and for captopril in genetically heterogeneous mice. Aging Cell. e13724
Chen O, Blonquist TM, Mah E, et al. (2021) Tolerability and Safety of a Novel Ketogenic Ester, Bis-Hexanoyl (R)-1,3-Butanediol: A Randomized Controlled Trial in Healthy Adults. Nutrients. 13
Stubbs BJ, Nikiforov AI, Rihner MO, et al. (2021) Toxicological Evaluation of the ketogenic ester Bis Hexanoyl (R)-1,3-Butanediol: Subchronic Toxicity in Sprague Dawley Rats. Food and Chemical Toxicology : An International Journal Published For the British Industrial Biological Research Association. 112084
Stubbs BJ, Nikiforov AI, Rihner MO, et al. (2021) Genetic Toxicity Studies of the Ketogenic Ester Bis Hexanoyl (R)-1,3-Butanediol. International Journal of Toxicology. 1091581821991772
Yurista SR, Matsuura TR, Silljé HHW, et al. (2020) Ketone Ester Treatment Improves Cardiac Function and Reduces Pathologic Remodeling in Preclinical Models of Heart Failure. Circulation. Heart Failure. CIRCHEARTFAILURE1200
Covarrubias AJ, Kale A, Perrone R, et al. (2020) Author Correction: Senescent cells promote tissue NAD decline during ageing via the activation of CD38 macrophages. Nature Metabolism
Gut P, Matilainen S, Meyer JG, et al. (2020) SUCLA2 mutations cause global protein succinylation contributing to the pathomechanism of a hereditary mitochondrial disease. Nature Communications. 11: 5927
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