Lavery GG

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COST Action CA15203 MitoEAGLE
Evolution-Age-Gender-Lifestyle-Environment: mitochondrial fitness mapping


 

Lavery GG


MitoPedia topics: EAGLE 

COST: Member COST WG1: WG1


Name Lavery Gareth G., PhD

Professor of Molecular Endocrinology

ORCID ID

Institution Centre for Endocrinology, Diabetes and Metabolism (CEDAM),

Institute of Metabolism and Systems Research,

College of Medical and Dental Sciences,

University of Birmingham, UK

Address Edgbaston, B15 2TT
City Birmingham
State/Province
Country United Kingdom
Email g.g.lavery@bham.ac.uk
Weblink
O2k-Network Lab UK Birmingham Lavery GG


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Publications

 PublishedReference
Dollerup 2019 J Physiol2019Dollerup OL, Chubanava S, Agerholm M, Søndergård SD, Altıntaş A, Møller AB, Høyer KF, Ringgaard S, Stødkilde-Jørgensen H, Lavery GG, Barres R, Larsen S, Prats C, Jessen N, Treebak JT (2019) Nicotinamide riboside does not alter mitochondrial respiration, content or morphology in skeletal muscle from obese and insulin resistant men. J Physiol [Epub ahead of print].
Gnaiger 2019 MitoFit Preprint Arch2019Gnaiger E, Aasander Frostner E, Abdul Karim N, Abdel-Rahman EA, Abumrad NA, Acuna-Castroviejo D, Adiele RC, et al (2019) Mitochondrial respiratory states and rates. MitoFit Preprint Arch doi:10.26124/mitofit:190001.v6.
Doig 2019 bioRxiv2019Doig CD, Zelinska AE, Oakey LA, Fletcher RS, El Hassan Y, Garten A, Cartwright D, Heising S, Tennant DA, Watson D, Adamski J, Lavery GG (2019) Induction of the nicotinamide riboside kinase NAD+ salvage pathway in skeletal muscle of H6PDH KO mice. bioRxiv doi: https://doi.org/10.1101/567297 .
Oakey 2019 Wellcome Open Res2019Oakey LA, Fletcher RS, Elhassan YS, Cartwright DM, Doig CL, Garten A, Thakker A, Maddocks ODK, Zhang T, Tennant DA, Ludwig C, Lavery GG (2019) Metabolic tracing reveals novel adaptations to skeletal muscle cell energy production pathways in response to NAD+ depletion. Wellcome Open Res 3:147.
Elhassan 2017 J Endocr Soc2017Elhassan YS, Philp AA, Lavery GG (2017) Targeting NAD+ in metabolic disease; new insights into an old molecule. J Endocr Soc 1:816–35.

Abstracts

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