Author
Listed:
- Julie S. Pedersen
(Copenhagen University Hospital Hvidovre)
- Marte O. Rygg
(Copenhagen University Hospital Hvidovre)
- Karoline Chrøis
(University of Copenhagen)
- Elahu G. Sustarsic
(University of Copenhagen)
- Zach Gerhart-Hines
(University of Copenhagen)
- Nicolai J. Wever Albrechtsen
(University of Copenhagen
University of Copenhagen
University of Copenhagen)
- Reza R. Serizawa
(Copenhagen University Hospital Hvidovre)
- Viggo B. Kristiansen
(Copenhagen University Hospital Hvidovre)
- Astrid L. Basse
(University of Copenhagen)
- Astrid E. B. Boilesen
(Copenhagen University Hospital Hvidovre)
- Beth H. Olsen
(Copenhagen University Hospital Hvidovre)
- Torben Hansen
(University of Copenhagen)
- Lise Lotte Gluud
(Copenhagen University Hospital Hvidovre)
- Sten Madsbad
(Copenhagen University Hospital Hvidovre)
- Steen Larsen
(University of Copenhagen
Medical University of Bialystok)
- Flemming Bendtsen
(Copenhagen University Hospital Hvidovre
University of Copenhagen)
- Flemming Dela
(University of Copenhagen
Copenhagen University Hospital Bispebjerg-Frederiksberg)
Abstract
Impaired mitochondrial oxidative phosphorylation (OXPHOS) in liver tissue has been hypothesised to contribute to the development of nonalcoholic steatohepatitis in patients with nonalcoholic fatty liver disease (NAFLD). It is unknown whether OXPHOS capacities in human visceral (VAT) and subcutaneous adipose tissue (SAT) associate with NAFLD severity and how hepatic OXPHOS responds to improvement in NAFLD. In biopsies sampled from 62 patients with obesity undergoing bariatric surgery and nine control subjects without obesity we demonstrate that OXPHOS is reduced in VAT and SAT while increased in the liver in patients with obesity when compared with control subjects without obesity, but this was independent of NAFLD severity. In repeat liver biopsy sampling in 21 patients with obesity 12 months after bariatric surgery we found increased hepatic OXPHOS capacity and mitochondrial DNA/nuclear DNA content compared with baseline. In this work we show that obesity has an opposing association with mitochondrial respiration in adipose- and liver tissue with no overall association with NAFLD severity, however, bariatric surgery increases hepatic OXPHOS and mitochondrial biogenesis.
Suggested Citation
Julie S. Pedersen & Marte O. Rygg & Karoline Chrøis & Elahu G. Sustarsic & Zach Gerhart-Hines & Nicolai J. Wever Albrechtsen & Reza R. Serizawa & Viggo B. Kristiansen & Astrid L. Basse & Astrid E. B. , 2022.
"Influence of NAFLD and bariatric surgery on hepatic and adipose tissue mitochondrial biogenesis and respiration,"
Nature Communications, Nature, vol. 13(1), pages 1-15, December.
Handle:
RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-30629-5
DOI: 10.1038/s41467-022-30629-5
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