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Träfflista för sökning "WFRF:(Hodson Leanne) ;pers:(Frayn Keith N.)"

Sökning: WFRF:(Hodson Leanne) > Frayn Keith N.

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1.
  • Marinou, Kyriakoula, et al. (författare)
  • Young women partition fatty acids towards ketone body production rather than VLDL-TAG synthesis, compared with young men.
  • 2011
  • Ingår i: The British journal of nutrition. - 1475-2662 .- 0007-1145. ; 105:6, s. 857-65
  • Tidskriftsartikel (refereegranskat)abstract
    • Before the menopause, women are relatively protected against CVD compared with men. The reasons for this sex difference are not completely understood, but hepatic fatty acid metabolism may play a role. The present study aimed to investigate the utilisation of plasma NEFA by the liver and to determine whether they are partitioned differently into ketone bodies and VLDL-TAG in healthy, lean young men and women. Volunteers were studied during a prolonged overnight fast (12-19 h) using an intravenous infusion of [U-¹³C]palmitate. After 12 h fasting, the women had a more advantageous metabolic profile with lower plasma glucose (P < 0·05) and TAG (P < 0·05) but higher plasma NEFA (P < 0·05) concentrations. Plasma 3-hydroxybutyrate (3-OHB) concentrations rose more in women than in men, and the transfer of ¹³C from [U-¹³C]palmitate to plasma [¹³C]3-OHB reached a plateau 6-7 h after the start of the infusion in women but was still increasing at 6 h in men. This implies a slower 3-OHB production rate and/or dilution by other precursor pools in men. In women, the high isotopic enrichment of plasma 3-OHB suggested that systemic plasma fatty acids were the major source of 3-OHB production. However, in men, this was not observed during the course of the study (P < 0·01). There were no sex differences for the incorporation of ¹³C into VLDL1- or VLDL2-TAG. The ability of young women to partition fatty acids towards ketone body production rather than VLDL-TAG may contribute to their more advantageous metabolic profile compared with young men.
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2.
  • Ruge, Toralph, et al. (författare)
  • Fasted to fed trafficking of fatty acids in human adipose tissue reveals a novel regulatory step for enhanced fat storage.
  • 2009
  • Ingår i: The Journal of clinical endocrinology and metabolism. - : The Endocrine Society. - 1945-7197 .- 0021-972X.
  • Tidskriftsartikel (refereegranskat)abstract
    • Context: Absence or excess of adipose tissue are both associated with metabolic complications implying the importance of well-functioning adipose tissue present in normal amounts. Adipose tissue sequesters dietary fat and thus protects other tissues from excess fat exposure, especially following meals. Objective: Use of an integrative physiological technique to quantify trafficking of fatty acids (FA) in adipose tissue over a 24-h period. Methods: Adipose tissue FA handling was studied in response to three meals in eight healthy men by the combination of arterio-venous blood sampling, tissue blood flow, and specific labelling of FA tracing of exogenous and endogenous fat by stable isotope methodology. Results: The efficiency of adipose tissue FA uptake increased robustly with each meal. Chylomicron-triglyceride (TG) was the dominating source of FA. Adipose tissue fractional extraction of chylomicron-TG increased from 21+/-4 to 47+/-8% (p=0.03) between the first and last meal. Although adipose tissue lipoprotein lipase (LPL) action increased with time (2-fold), there was an even greater increase in FA re-esterification (3-fold), which led to a reduced spillover of chylomicron-derived FA, from 77+/-15 to 34+/-7% (p=0.04) comparing the end of the first and the third meal period. Increased uptake of VLDL-derived FA was observed, but spillover of VLDL-derived FA was only seen in the fasting state. Conclusion: Human adipose tissue has a significant potential to up-regulate fat storage during a normal day that goes beyond increased LPL activation. The adaptation towards increasing fat storage may provide an explanation for the beneficial properties of normal amounts of adipose tissue.
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3.
  • Westerbacka, Jukka, et al. (författare)
  • Splanchnic balance of free fatty acids, endocannabinoids, and lipids in subjects with nonalcoholic fatty liver disease
  • 2010
  • Ingår i: Gastroenterology. - : Saunders Elsevier. - 0016-5085 .- 1528-0012. ; 139:6, s. 1961-1971.e1
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND & AIMS: Animal studies suggest that endocannabinoids could contribute to the development of nonalcoholic fatty liver disease (NAFLD). In addition, NAFLD has been shown to be associated with multiple changes in lipid concentrations in liver biopsies. There are no data on splanchnic free fatty acid (FFA), glycerol, ketone body, endocannabinoid, and lipid fluxes in vivo in subjects with NAFLD.METHODS: We performed hepatic venous catheterization studies in combination with [(2)H(2)]palmitate infusion in the fasting state and during a low-dose insulin infusion in 9 subjects with various degrees of hepatic steatosis as determined using liver biopsy. Splanchnic balance of endocannabinoids and individual lipids was determined using ultra performance liquid chromatography coupled to mass spectrometry.RESULTS: Concentrations of the endocannabinoid 2-arachidonoylglycerol were higher in arterialized (91 ± 33 μg/L basally) than in hepatic venous (51 ± 19 μg/L; P < .05) plasma. Fasting arterial (r = 0.72; P = .031) and hepatic venous (r = 0.70; P = .037) concentrations of 2-arachidonoylglycerol were related positively to liver fat content. Analysis of fluxes of 85 different triglycerides showed that the fatty liver overproduces saturated triglycerides. In the plasma FFA fraction in the basal state, the relative amounts of palmitoleate and linoleate were lower and those of stearate and oleate were higher in the hepatic vein than in the artery. Absolute concentrations of all nontriglyceride lipids were comparable in arterialized venous plasma and the hepatic vein both in the basal and insulin-stimulated states.CONCLUSIONS: The human fatty liver takes up 2-arachidonoylglycerol and overproduces triacylglycerols containing saturated fatty acids, which might reflect increased de novo lipogenesis.
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