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Citations to this article

Long–echo time MR spectroscopy for skeletal muscle acetylcarnitine detection
Lucas Lindeboom, … , Patrick Schrauwen, Vera B. Schrauwen-Hinderling
Lucas Lindeboom, … , Patrick Schrauwen, Vera B. Schrauwen-Hinderling
Published October 1, 2014
Citation Information: J Clin Invest. 2014;124(11):4915-4925. https://doi.org/10.1172/JCI74830.
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Long–echo time MR spectroscopy for skeletal muscle acetylcarnitine detection

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Abstract

Animal models suggest that acetylcarnitine production is essential for maintaining metabolic flexibility and insulin sensitivity. Because current methods to detect acetylcarnitine involve biopsy of the tissue of interest, noninvasive alternatives to measure acetylcarnitine concentrations could facilitate our understanding of its physiological relevance in humans. Here, we investigated the use of long–echo time (TE) proton magnetic resonance spectroscopy (1H-MRS) to measure skeletal muscle acetylcarnitine concentrations on a clinical 3T scanner. We applied long-TE 1H-MRS to measure acetylcarnitine in endurance-trained athletes, lean and obese sedentary subjects, and type 2 diabetes mellitus (T2DM) patients to cover a wide spectrum in insulin sensitivity. A long-TE 1H-MRS protocol was implemented for successful detection of skeletal muscle acetylcarnitine in these individuals. There were pronounced differences in insulin sensitivity, as measured by hyperinsulinemic-euglycemic clamp, and skeletal muscle mitochondrial function, as measured by phosphorus-MRS (31P-MRS), across groups. Insulin sensitivity and mitochondrial function were highest in trained athletes and lowest in T2DM patients. Skeletal muscle acetylcarnitine concentration showed a reciprocal distribution, with mean acetylcarnitine concentration correlating with mean insulin sensitivity in each group. These results demonstrate that measuring acetylcarnitine concentrations with 1H-MRS is feasible on clinical MR scanners and support the hypothesis that T2DM patients are characterized by a decreased formation of acetylcarnitine, possibly underlying decreased insulin sensitivity.

Authors

Lucas Lindeboom, Christine I. Nabuurs, Joris Hoeks, Bram Brouwers, Esther Phielix, M. Eline Kooi, Matthijs K.C. Hesselink, Joachim E. Wildberger, Robert D. Stevens, Timothy Koves, Deborah M. Muoio, Patrick Schrauwen, Vera B. Schrauwen-Hinderling

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 Total
Citations: 1 4 1 3 2 6 2 1 5 2 1 1 29
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Citations to this article (29)

Title and authors Publication Year
Carnitine supplementation improves insulin sensitivity and skeletal muscle acetylcarnitine formation in patients with type 2 diabetes
Op den Kamp\u2010Bruls YM, Op den Kamp YJ, Veeraiah P, Zapata Perez R, Phielix E, Havekes B, Schaart G, Kornips E, Berendsen BR, Virmani A, Wildberger JE, Houtkooper RH, Hesselink MK, Schrauwen P, Schrauwen\u2010Hinderling VB
Diabetes, Obesity & Metabolism 2025
NMR spectroscopy for metabolomics in the living system: recent progress and future challenges.
Peng Y, Zhang Z, He L, Li C, Liu M
Analytical and Bioanalytical Chemistry 2024
Correlation between skeletal muscle acetylcarnitine and phosphocreatine metabolism during submaximal exercise and recovery: interleaved (1)H/(31)P MRS 7 T study.
Klepochová R, Niess F, Meyerspeer M, Slukova D, Just I, Trattnig S, Ukropec J, Ukropcová B, Kautzky-Willer A, Leutner M, Krššák M
Scientific Reports 2024
1H‐NMR‐based metabolomics reveals the preventive effect of Enteromorpha prolifera polysaccharides on diabetes in Zucker diabetic fatty rats
Chen J, Wang S, Guo F, Gong Y, Chen T, Shaw C, Jiang R, Huang F, Lin D
Food Science & Nutrition 2024
Integrative metabolomics and transcriptomics analysis revealed specific genes and metabolites affecting meat quality of chickens under different rearing systems
Cui Z, Amevor FK, Lan X, Tang B, Qin S, Fu P, Liu A, Liu L
Poultry science 2024
Skeletal muscle mitochondrial inertia is associated with carnitine acetyltransferase protein activity and physical function in humans
Rodrigo Mancilla, Lucas Lindeboom, Lotte Grevendonk, Joris Hoeks, Timothy Koves, Deborah M. Muoio, Patrick Schrauwen, Vera Schrauwen-Hinderling, Matthijs Hesselink
JCI Insight 2023
Rheumatoid arthritis T cell and muscle oxidative metabolism associate with exercise-induced changes in cardiorespiratory fitness
B Andonian, A Koss, T Koves, E Hauser, M Hubal, D Pober, J M., N MacIver, E Clair, D Muoio, W Kraus, D Bartlett, K Huffman
Scientific Reports 2022
Effects of SGLT2 inhibitor dapagliflozin in patients with type 2 diabetes on skeletal muscle cellular metabolism.
Op den Kamp YJM, Gemmink A, de Ligt M, Dautzenberg B, Kornips E, Jorgensen JA, Schaart G, Esterline R, Pava DA, Hoeks J, Schrauwen-Hinderling VB, Kersten S, Havekes B, Koves TR, Muoio DM, Hesselink MKC, Oscarsson J, Phielix E, Schrauwen P
Molecular Metabolism 2022
Detection and alterations of acetylcarnitine (AC) in human liver by (1) H MRS at 3T after supplementation with l-carnitine.
Savic D, Mózes FE, Green PG, Burrage MK, Kjaer MS, Hodson L, Neubauer S, Pavlides M, Valkovič L
Magnetic resonance in medicine 2022
Up‐regulation of thioesterase superfamily member 2 in skeletal muscle promotes hepatic steatosis and insulin resistance in mice
N Imai, HT Nicholls, M AlvesBezerra, Y Li, AA Ivanova, EA Ortlund, DE Cohen
Hepatology 2021
Hyperpolarized NMR study of the impact of pyruvate dehydrogenase kinase inhibition on the pyruvate dehydrogenase and TCA flux in type 2 diabetic rat muscle
JM Park, S Josan, RE Hurd, J Graham, PJ Havel, D Bendahan, D Mayer, Y Chung, DM Spielman, T Jue
Pflügers Archiv - European Journal of Physiology 2021
Nicotinamide riboside supplementation alters body composition and skeletal muscle acetylcarnitine concentrations in healthy obese humans
CM Remie, KH Roumans, MP Moonen, NJ Connell, B Havekes, J Mevenkamp, L Lindeboom, VH de Wit, T van de Weijer, SA Aarts, E Lutgens, BV Schomakers, HL Elfrink, R Zapata-Pérez, RH Houtkooper, J Auwerx, J Hoeks, VB Schrauwen-Hinderling, E Phielix, P Schrauwen
The American journal of clinical nutrition 2020
L-carnitine infusion does not alleviate lipid-induced insulin resistance and metabolic inflexibility
YM Bruls, YJ op den Kamp, E Phielix, L Lindeboom, B Havekes, G Schaart, E Moonen-Kornips, JE Wildberger, MK Hesselink, P Schrauwen, VB Schrauwen-Hinderling, D Samocha-Bonet
PloS one 2020
Proton magnetic resonance spectroscopy in skeletal muscle: Experts' consensus recommendations
M Krššák, L Lindeboom, V SchrauwenHinderling, LS Szczepaniak, W Derave, J Lundbom, D Befroy, F Schick, J Machann, R Kreis, C Boesch
NMR in Biomedicine 2020
Muscle‐Specific Relation of Acetylcarnitine and Intramyocellular Lipids to Chronic Hyperglycemia: A Pilot 3‐T 1 H MRS Study
R Klepochová, M Leutner, M Bastian, M Krebs, M Weber, S Trattnig, A KautzkyWiller, M Krššák
Obesity 2020
MicroRNA‐204‐5p modulates mitochondrial biogenesis in C2C12 myotubes and associates with oxidative capacity in humans
A Houzelle, D Dahlmans, EB Nascimento, G Schaart, JA Jörgensen, E MoonenKornips, S Kersten, X Wang, J Hoeks
Journal of Cellular Physiology 2020
Molecular correlates of MRS‐based 31 phosphocreatine muscle resynthesis rate in healthy adults
MM Darpolor, M Singh, J Covington, S Hanet, E Ravussin, OT Carmichael
NMR in Biomedicine 2020
Carnitine supplementation improves metabolic flexibility and skeletal muscle acetylcarnitine formation in volunteers with impaired glucose tolerance: A randomised controlled trial
YM Bruls, M de Ligt, L Lindeboom, E Phielix, B Havekes, G Schaart, E Kornips, JE Wildberger, MK Hesselink, D Muoio, P Schrauwen, VB Schrauwen-Hinderling
EBioMedicine 2019
The effect of exercise on intramyocellular acetylcarnitine (AcCtn) concentration in adult growth hormone deficiency (GHD)
F Meienberg, H Loher, J Bucher, S Jenni, M Krüsi, R Kreis, C Boesch, MJ Betz, E Christ
Scientific Reports 2019
Differences in Muscle Metabolism Between Triathletes and Normally Active Volunteers Investigated Using Multinuclear Magnetic Resonance Spectroscopy at 7T
R Klepochová, L Valkovič, T Hochwartner, C Triska, N Bachl, H Tschan, S Trattnig, M Krebs, M Krššák
Frontiers in physiology 2018
An unbiased silencing screen in muscle cells identifies miR-320a, miR-150, miR-196b, and miR-34c as regulators of skeletal muscle mitochondrial metabolism
D Dahlmans, A Houzelle, P Andreux, JA Jörgensen, X Wang, LJ de Windt, P Schrauwen, J Auwerx, J Hoeks
Molecular Metabolism 2017
Heart, lipids and hormones
P Wolf, Y Winhofer, M Krššák, M Krebs
Endocrine Connections 2017
Detection and Alterations of Acetylcarnitine in Human Skeletal Muscles by 1H MRS at 7 T:
R Klepochová, L Valkovič, M Gajdošík, T Hochwartner, H Tschan, M Krebs, S Trattnig, M Krššák
Investigative Radiology 2017
Spectroscopic sampling of the left side of long-TE spin echoes: a free lunch?
RV Mulkern, M Balasubramanian
Magma (New York, N.Y.) 2017
Evaluation of Muscle microRNA Expression in Relation to Human Peripheral Insulin Sensitivity: A Cross-Sectional Study in Metabolically Distinct Subject Groups
D Dahlmans, A Houzelle, JA Jörgensen, E Phielix, L Lindeboom, MK Hesselink, P Schrauwen, J Hoeks
Frontiers in physiology 2017
Skeletal muscle mitochondria as a target to prevent or treat type 2 diabetes mellitus
MK Hesselink, V Schrauwen-Hinderling, P Schrauwen
Nature Reviews Endocrinology 2016
The Acetyl Group Buffering Action of Carnitine Acetyltransferase Offsets Macronutrient-Induced Lysine Acetylation of Mitochondrial Proteins
MN Davies, L Kjalarsdottir, JW Thompson, LG Dubois, RD Stevens, OR Ilkayeva, MJ Brosnan, TP Rolph, PA Grimsrud, DM Muoio
Cell Reports 2016
Carnitine Acetyltransferase Mitigates Metabolic Inertia and Muscle Fatigue during Exercise
SE Seiler, TR Koves, JR Gooding, KE Wong, RD Stevens, OR Ilkayeva, AH Wittmann, KL DeBalsi, MN Davies, L Lindeboom, P Schrauwen, VB Schrauwen-Hinderling, DM Muoio
Cell Metabolism 2015
Metabolic Inflexibility: When Mitochondrial Indecision Leads to Metabolic Gridlock
DM Muoio
Cell 2014

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