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Lykke Sylow
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Exercise-stimulated glucose uptake—regulation and implications for glycaemic control
L Sylow, M Kleinert, EA Richter, TE Jensen
Nature Reviews Endocrinology 13 (3), 133-148, 2017
5362017
The many actions of insulin in skeletal muscle, the paramount tissue determining glycemia
L Sylow, VL Tokarz, EA Richter, A Klip
Cell Metabolism 33 (4), 758-780, 2021
2362021
Rac1 signaling is required for insulin-stimulated glucose uptake and is dysregulated in insulin-resistant murine and human skeletal muscle
L Sylow, TE Jensen, M Kleinert, K Højlund, B Kiens, J Wojtaszewski, ...
Diabetes 62 (6), 1865-1875, 2013
2042013
Cytosolic ROS production by NADPH oxidase 2 regulates muscle glucose uptake during exercise
C Henríquez-Olguin, JR Knudsen, SH Raun, Z Li, E Dalbram, JT Treebak, ...
Nature communications 10 (1), 4623, 2019
1982019
Exercise increases human skeletal muscle insulin sensitivity via coordinated increases in microvascular perfusion and molecular signaling
KA Sjøberg, C Frøsig, R Kjøbsted, L Sylow, M Kleinert, AC Betik, CS Shaw, ...
Diabetes 66 (6), 1501-1510, 2017
1912017
Rac1 signalling towards GLUT4/glucose uptake in skeletal muscle
TT Chiu, TE Jensen, L Sylow, EA Richter, A Klip
Cellular signalling 23 (10), 1546-1554, 2011
1812011
Deletion of skeletal muscle SOCS3 prevents insulin resistance in obesity
SB Jorgensen, HM O’Neill, L Sylow, J Honeyman, KA Hewitt, R Palanivel, ...
Diabetes 62 (1), 56-64, 2013
1712013
Akt and Rac1 signaling are jointly required for insulin-stimulated glucose uptake in skeletal muscle and downregulated in insulin resistance
L Sylow, M Kleinert, C Pehmøller, C Prats, TT Chiu, A Klip, EA Richter, ...
Cellular signalling 26 (2), 323-331, 2014
1692014
Rac1 is a novel regulator of contraction-stimulated glucose uptake in skeletal muscle
L Sylow, TE Jensen, M Kleinert, JR Mouatt, SJ Maarbjerg, J Jeppesen, ...
Diabetes 62 (4), 1139-1151, 2013
1622013
Current understanding of increased insulin sensitivity after exercise–emerging candidates
SJ Maarbjerg, L Sylow, EA Richter
Acta physiologica 202 (3), 323-335, 2011
1512011
Overexpression of monocarboxylate transporter-1 (SLC16A1) in mouse pancreatic β-cells leads to relative hyperinsulinism during exercise
TJ Pullen, L Sylow, G Sun, AP Halestrap, EA Richter, GA Rutter
Diabetes 61 (7), 1719-1725, 2012
1142012
Rac1 governs exercise‐stimulated glucose uptake in skeletal muscle through regulation of GLUT4 translocation in mice
L Sylow, IL Nielsen, M Kleinert, LLV Møller, T Ploug, P Schjerling, ...
The Journal of physiology 594 (17), 4997-5008, 2016
1132016
Contraction-stimulated glucose transport in muscle is controlled by AMPK and mechanical stress but not sarcoplasmatic reticulum Ca2+ release
TE Jensen, L Sylow, AJ Rose, AB Madsen, Y Angin, SJ Maarbjerg, ...
Molecular metabolism 3 (7), 742-753, 2014
952014
Acute mTOR inhibition induces insulin resistance and alters substrate utilization in vivo
M Kleinert, L Sylow, DJ Fazakerley, JR Krycer, KC Thomas, AJ Oxbøll, ...
Molecular metabolism 3 (6), 630-641, 2014
912014
LKB1 regulates lipid oxidation during exercise independently of AMPK
J Jeppesen, SJ Maarbjerg, AB Jordy, AM Fritzen, C Pehmøller, L Sylow, ...
Diabetes 62 (5), 1490-1499, 2013
912013
Rho GTPases—emerging regulators of glucose homeostasis and metabolic health
LLV Møller, A Klip, L Sylow
Cells 8 (5), 434, 2019
842019
Housing temperature influences exercise training adaptations in mice
SH Raun, C Henriquez-Olguín, I Karavaeva, M Ali, LLV Møller, W Kot, ...
Nature Communications 11 (1), 1560, 2020
812020
Interactions between insulin and exercise
EA Richter, L Sylow, M Hargreaves
Biochemical journal 478 (21), 3827-3846, 2021
792021
Stretch‐stimulated glucose transport in skeletal muscle is regulated by Rac1
L Sylow, LLV Møller, M Kleinert, EA Richter, TE Jensen
The Journal of physiology 593 (3), 645-656, 2015
742015
Rac1 and AMPK account for the majority of muscle glucose uptake stimulated by ex vivo contraction but not in vivo exercise
L Sylow, LLV Møller, M Kleinert, G D’Hulst, E De Groote, P Schjerling, ...
Diabetes 66 (6), 1548-1559, 2017
702017
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