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David J. Marcinek

California Institute for Regenerative Medicine ·
Area of research
Molecular Biology · Physiology
Research interest
Research interests include Mitochondrion, Skeletal muscle, Biology, Oxidative stress, Medicine, and Internal medicine.
h-index
citations
1,515
works
11
NIH funding
primary concept
email

Recent publications

Childhood adverse life events and skeletal muscle mitochondrial function
Science Advances 2024cited by 11position: middledoi
The Study of Muscle, Mobility and Aging (SOMMA): A Unique Cohort Study About the Cellular Biology of Aging and Age-related Loss of Mobility
The Journals of Gerontology Series A 2023cited by 102position: middledoi
Lower muscle mitochondrial energetics is associated with greater phenotypic frailty in older women and men: the Study of Muscle, Mobility and Aging
GeroScience 2023cited by 23position: middledoi
Mitochondrial Energetics in Skeletal Muscle Are Associated With Leg Power and Cardiorespiratory Fitness in the Study of Muscle, Mobility and Aging
The Journals of Gerontology Series A 2022cited by 65position: middledoi
Late-life restoration of mitochondrial function reverses cardiac dysfunction in old mice
eLife 2020cited by 125position: middledoi
The mitochondrial-targeted peptide, SS-31, improves glomerular architecture in mice of advanced age
Kidney International 2017cited by 113position: middledoi
NAD <sup>+</sup> repletion improves muscle function in muscular dystrophy and counters global PARylation
Science Translational Medicine 2016cited by 251position: middledoi
Nitric Oxide Regulates Skeletal Muscle Fatigue, Fiber Type, Microtubule Organization, and Mitochondrial ATP Synthesis Efficiency Through cGMP-Dependent Mechanisms
Antioxidants and Redox Signaling 2016cited by 43position: middledoi
Mitochondrial oxidative stress in aging and healthspan
Longevity & Healthspan 2014cited by 471position: middledoi
Mitochondrial-targeted peptide rapidly improves mitochondrial energetics and skeletal muscle performance in aged mice
Aging Cell 2013cited by 187position: lastdoi
Defects in mitochondrial localization and ATP synthesis in the mdx mouse model of Duchenne muscular dystrophy are not alleviated by PDE5 inhibition
Human Molecular Genetics 2012cited by 124position: lastdoi

Grants

No grants ingested yet.

Frequent collaborators

Theresa Mau · Sutter Health4 papers (2022–2024)Peter S. Rabinovitch · University of Washington4 papers (2013–2020)Russell T. Hepple · McGill University Health Centre4 papers (2022–2024)Hazel H. Szeto · Menlo School4 papers (2013–2020)Anne B. Newman · UPMC Health System4 papers (2022–2024)Paul M. Coen · AdventHealth Orlando4 papers (2022–2024)Peggy M. Cawthon · Sutter Health4 papers (2022–2024)Steven R. Cummings · University of Manitoba4 papers (2022–2024)Frederico G. S. Toledo · University of Pittsburgh3 papers (2022–2024)Li‐Yung Lui · University of California, San Francisco3 papers (2022–2024)Ying Ann Chiao · University of Oklahoma Health Sciences Center3 papers (2014–2020) · 3 papers (2012–2016)Michael Siegel · Seattle University3 papers (2012–2016)Philip Kramer · Wake Forest University3 papers (2022–2024)Justin M. Percival · University of Miami2 papers (2013–2016)Bret H. Goodpaster · AdventHealth Orlando2 papers (2022–2023)Kate A. Duchowny · University of Michigan2 papers (2022–2024) · 2 papers (2022–2023)Mariya T. Sweetwyne · Rush University Medical Center2 papers (2017–2020)Anthony Molina · University of California San Diego2 papers (2022–2024)