Menopausal Status and Abdominal Obesity Are Significant Determinants of Hepatic Lipid Metabolism in Women

Author:

Hodson Leanne1,Banerjee Rajarshi2,Rial Belén2,Arlt Wiebke3,Adiels Martin45,Boren Jan5,Marinou Kyriakoula16,Fisher Ciaran7,Mostad Ingrid L.89,Stratton Irene M.10,Barrett P. Hugh R.1112,Chan Dick C.11,Watts Gerald F.11,Harnden Karin1,Karpe Fredrik113,Fielding Barbara A.17

Affiliation:

1. Oxford Centre for Diabetes, Endocrinology and Metabolism, Churchill Hospital, Oxford, UK

2. Division of Cardiovascular Medicine, Oxford Centre for Clinical Magnetic Resonance Research, John Radcliffe Hospital, Oxford, UK

3. Centre for Endocrinology, Diabetes and Metabolism, School of Clinical & Experimental Medicine, University of Birmingham, UK

4. Department of Molecular and Clinical Medicine, University of Gothenburg, Sweden

5. Department of Mathematical Sciences, University of Gothenburg, Sweden

6. Department of Experimental Physiology, Athens University School of Medicine, Athens, Greece

7. Faculty of Health and Medical Sciences, University of Surrey, Guildford, UK

8. Department of Clinical Nutrition, Clinic of Clinical Service, St. Olavs Hospital, Trondheim University Hospital, Trondheim, Norway

9. Department of Cancer Research and Molecular Medicine, Faculty of Medicine, NTNU, Trondheim, Norway

10. Gloucestershire Diabetic Retinopathy Research Group, Cheltenham General Hospital, Gloucestershire, UK

11. Metabolic Research Centre, School of Medicine and Pharmacology, University of Western Australia, Perth, WA, Australia

12. Faculty of Engineering, Computing and Mathematics, University of Western Australia, Perth, WA, Australia

13. National Institute for Health Research Oxford Biomedical Research Centre, Oxford University Hospital Trusts, Oxford, UK

Abstract

Background Android fat distribution (abdominal obesity) is associated with insulin resistance, hepatic steatosis, and greater secretion of large very low‐density lipoprotein ( VLDL ) particles in men. Since abdominal obesity is becoming increasingly prevalent in women, we aimed to investigate the relationship between android fat and hepatic lipid metabolism in pre‐ and postmenopausal women. Methods and Results We used a combination of stable isotope tracer techniques to investigate intrahepatic fatty acid synthesis and partitioning in 29 lean and 29 abdominally obese women (android fat/total fat 0.065 [0.02 to 0.08] and 0.095 [0.08 to 0.11], respectively). Thirty women were premenopausal aged 35 to 45 and they were matched for abdominal obesity with 28 postmenopausal women aged 55 to 65. As anticipated, abdominal obese women were more insulin resistant with enhanced hepatic secretion of large (404±30 versus 268±26 mg/kg lean mass, P <0.001) but not small VLDL (160±11 versus 142±13). However, postmenopausal status had a pronounced effect on the characteristics of small VLDL particles, which were considerably triglyceride‐enriched (production ratio of VLDL 2 ‐ triglyceride:apolipoprotein B 30±5.3 versus 19±1.6, P <0.05). In contrast to postmenopausal women, there was a tight control of hepatic fatty acid metabolism and triglyceride production in premenopausal women, whereby oxidation ( r s =−0.49, P =0.006), de novo lipogenesis ( r s =0.55, P =0.003), and desaturation ( r s =0.48, P =0.012) were closely correlated with abdominal obesity‐driven large VLDL ‐triglyceride secretion rate. Conclusions In women, abdominal obesity is a major driver of hepatic large VLDL particle secretion, whereas postmenopausal status was characterized by increased small VLDL particle size. These data provide a mechanistic basis for the hyperlipidemia observed in postmenopausal obesity.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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