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US CO Fort Collins Hamilton K

From Bioblast

                



US CO Fort Collins Hamilton K

Oroboros O2k-Network

O2k-Network
O2k-Network Lab Colorado State University

Department of Health and Exercise Science

Address 201B Moby B Complex, 80523-1582
City Fort Collins
State/Prov Colorado (CO)
Country USA
Weblink http://tracd.colostate.edu
Contact Hamilton Karyn
Team Lark Daniel S, Whedbee Miles
Team previous Kwon Oh Sung
Status 2 Power-O2k 2018-; previous: US CO Fort Collins Miller BF
Oroboros Events IOC84
Topics aging, mitochondrial biogenesis, proteostasis, oxidative stress, energetic stress, comparative models, rapamycin, metformin, skeletal and cardiac muscle


O2k-Publications

 PublishedReference
Walsh 2023 FASEB J2023Walsh MA, Musci RV, Jacobs RA, Hamilton KL (2023) A practical perspective on how to develop, implement, execute, and reproduce high-resolution respirometry experiments: The physiologist's guide to an Oroboros O2k. https://doi.org/10.1096/fj.202301644rr
Trefts 2019 Am J Physiol Endocrinol Metab2019Trefts E, Hughey CC, Lantier L, Lark DS, Boyd KL, Pozzi A, Zent R, Wasserman DH (2019) Energy metabolism couples hepatocyte integrin-linked kinase to liver glucoregulation and the postabsorptive response of mice in an age-dependent manner. Am J Physiol Endocrinol Metab 316:1118-35.
Konopka 2018 Aging Cell2018Konopka AR, Laurin JL, Schoenberg HM, Reid JJ, Castor WM, Wolff CA, Musci RV, Safairad OD, Linden MA, Biela LM, Bailey SM, Hamilton KL, Miller BF (2018) Metformin inhibits mitochondrial adaptations to aerobic exercise training in older adults. Aging Cell 18:e12880.
Groennebaek 2018 Front Physiol2018Groennebaek T, Jespersen NR, Jakobsgaard JE, Sieljacks P, Wang J, Rindom E, Musci RV, Bรธtker HE, Hamilton KL, Miller BF, de Paoli FV, Vissing K (2018) Skeletal muscle mitochondrial protein synthesis and respiration increase with low-load blood flow restricted as well as high-load resistance training. Front Physiol 9:1796.
Miller 2017 PLOS ONE2017Miller B, Hamilton K, Boushel R, Williamson K, Laner V, Gnaiger E, Davis M (2017) Mitochondrial respiration in highly aerobic canines in the non-raced state and after a 1600-km sled dog race. PLOS ONE 12:e0174874.
Newsom 2017 Am J Physiol Endocrinol Metab2017Newsom SA, Miller BF, Hamilton KL, Ehrlicher SE, Stierwalt HD, Robinson MM (2017) Long-term rates of mitochondrial protein synthesis are increased in mouse skeletal muscle with high fat feeding regardless of insulin sensitizing treatment. Am J Physiol Endocrinol Metab 313:552-62.
Konopka 2017 J Appl Physiol (1985)2017Konopka AR, Castor WM, Wolff CA, Musci RV, Reid JJ, Laurin JL, Valenti ZJ, Hamilton KL, Miller BF (2017) Case studies in physiology: Skeletal muscle mitochondrial protein synthesis and respiration in response to the energetic stress of an ultra-endurance race. https://doi.org/10.1152/japplphysiol.00457.2017
Lark 2015 Front Physiol2015Lark DS, Reese LR, Ryan TE, Torres MJ, Smith CD, Lin CT, Neufer PD (2015) Protein kinase A governs oxidative phosphorylation kinetics and oxidant emitting potential at complex I. https://doi.org/10.3389/fphys.2015.00332

O2k-Abstracts

 PublishedReference
Konopka 2018 FASEB J2018Konopka AR, Castor WM, Reid J, Schoenberg H, Laurin J, Wolff C, Hamilton K, Miller B (2018) Metformin blunts exercise-induced improvements in skeletal muscle mitochondrial respiration independent of changes in mitochondrial biogenesis. FASEB J.
Laner 2016 Abstract Mito Xmas Meeting Innsbruck2016OXPHOS and ET capacity in permeabilized fibers of canine superathletes.
Laner 2016 Abstract MitoFit Science Camp 20162016OXPHOS and ET-capacity in permeabilized fibers of canine superathletes. Analysis of HRR data presenting unexpected challenges.
Laner 2015 Abstract MiP20152015Comparative mitochondrial physiology: OXPHOS and ET capacity in permeabilized fibers of canine superathletes.
Laner 2015 Abstract MiPschool Greenville 20152015Comparative mitochondrial physiology: OXPHOS and ET capacity in permeabilized fibers of canine superathletes.
Laner 2014 Abstract MiP20142014Cytochrome c flux control factor as a quality criterion in respiratory OXPHOS analysis in canine permeabilized fibers.