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Reduction in mitochondrial biogenesis balanced by a shift away from fat metabolism in critically ill patients

Ronan Astin, Zudin Puthucheary, Saima Saeed, Christina Velloso, Mark McPhail, Jaikirty Rawal, James Skipworth, Mervyn Singer, Steve Harridge, Hugh Montgomery, Nick Hart
European Respiratory Journal 2014 44: P4898; DOI:
Ronan Astin
1Institute for Human Health and Performance, University College London, London, United Kingdom
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Zudin Puthucheary
1Institute for Human Health and Performance, University College London, London, United Kingdom
2Division of Respiratory and Critical Care Medicine, National University Health System, Singapore, Singapore
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Saima Saeed
3Bloomsbury Institute for Intensive Care Medicine, University Collge London, London, United Kingdom
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Christina Velloso
4Centre of Human & Aerospace Physiological Sciences, King's College London, London, United Kingdom
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Mark McPhail
5Institute of Liver Studies, King's College Hospital NHS TRust, London, United Kingdom
6Hepatology and Gatroenterology, Division of Diabetes Endocrinology and Metabolism, Imperial College London, London, United Kingdom
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Jaikirty Rawal
1Institute for Human Health and Performance, University College London, London, United Kingdom
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James Skipworth
1Institute for Human Health and Performance, University College London, London, United Kingdom
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Mervyn Singer
3Bloomsbury Institute for Intensive Care Medicine, University Collge London, London, United Kingdom
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Steve Harridge
4Centre of Human & Aerospace Physiological Sciences, King's College London, London, United Kingdom
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Hugh Montgomery
1Institute for Human Health and Performance, University College London, London, United Kingdom
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Nick Hart
7Lane Fox Clinical Respiratory Physiology Research Unit, St Thomas' Hospital, Guy's & St Thomas' NHS Foundation Trust, London, United Kingdom
8Division of Asthma, Allergy and Lung Biology, King's College London, London, United Kingdom
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Abstract

Background

In severe sepsis, early mitochondrial dysfunction in skeletal muscle is associated with decreased biogenesis and adverse patient outcome. We hypothesised that reduction in mitochondrial content during critical illness would be balanced by improved efficiency by switching from fatty acid oxidation as metabolic substrate.

Methods

30 critically ill patients (70% male, age 56.4±19.7 years, APACHE II score 22.4±6.6) were recruited <24 hours after intensive care admission. Vastus lateralis muscle biopsies were taken on day 1 and 7. Concentrations of mitochondrial respiratory complex proteins and key proteins of the β-oxidation pathway were determined. Mitochondrial DNA content (mtDNA) and PGC1-α mRNA concentrations were determined contemporaneously by RT-qPCR. Muscle and blood metabolic profiles were quantified by H1 nuclear magnetic resonance (H1 NMR).

Results

There was reduction in both mtDNA (p = 0.003) and PGC1-α (p=0.041) from day 1 to day 7. Mitochondrial respiratory complex I-V concentrations did not change significantly but mitochondrial β-oxidation pathway proteins (CPT1, MCAD, ETF, DecR1) all significantly decreased. There was a significant increase in serum LDL and VLDL from day 1 to day 7 (p<0.01) and intramyocellular concentrations of lipid also increased significantly (p= 0.002).

Conclusion

These data suggest decreased mitochondrial biogenesis over the first week of critical illness. The decrease in β-oxidation proteins combined with an increase in both serum and muscle fat concentrations suggest a shift away from inefficient fat metabolism during the first 7 days of critical illness. These data have implications for feeding regimes in critical illness.

  • Critically ill patients
  • Intensive care
  • Skeletal muscle
  • © 2014 ERS
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Reduction in mitochondrial biogenesis balanced by a shift away from fat metabolism in critically ill patients
Ronan Astin, Zudin Puthucheary, Saima Saeed, Christina Velloso, Mark McPhail, Jaikirty Rawal, James Skipworth, Mervyn Singer, Steve Harridge, Hugh Montgomery, Nick Hart
European Respiratory Journal Sep 2014, 44 (Suppl 58) P4898;

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Reduction in mitochondrial biogenesis balanced by a shift away from fat metabolism in critically ill patients
Ronan Astin, Zudin Puthucheary, Saima Saeed, Christina Velloso, Mark McPhail, Jaikirty Rawal, James Skipworth, Mervyn Singer, Steve Harridge, Hugh Montgomery, Nick Hart
European Respiratory Journal Sep 2014, 44 (Suppl 58) P4898;
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