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  • Introduction: Low-carbohydrate diets (LCDs) have been suggested as a potential treatment option for females with lipedema, due to their superiority in reducing pain, possibly through improvements in insulin dynamics. Objectives: The objective of this secondary analysis was to compare changes in markers of glucose and insulin dynamics after a low-carbohydrate versus low-fat low-energy diets in females with lipedema and obesity. A secondary objective was to investigate potential associations between changes in glucose and insulin dynamics and changes in pain.Methods: Females with obesity and lipedema were randomized to either an LCD or a low-fat low-energy diets (1200 kcal/day for both; 75 vs. 180 g carbohydrates/day) for 8 weeks. Basal and postprandial (total and incremental area under the curve (tAUC and iAUC)) concentrations of glucose, insulin, glucose-dependent insulinotropic polypeptide (GIP), and C-peptide were measured before and after the intervention, and HOMA-IR, Matsuda index and insulin clearance calculated.Results: A total of 70 females (35 in each group, age 47 ± 11 years, BMI 37 ± 5 kg/m2) were included in the analysis. Both groups lost body weight, but with a significantly greater weight loss in the LCD group. Both groups showed ed a reduction in basal glucose, C-peptide, and insulin concentrations, with a greater reduction in glucose on the LCD. A significant increase in glucose iAUC, C-peptide iAUC, insulin clearance, and Matsuda index was observed in the LCD group only. Both groups experienced an increase in GIP tAUC, as well as a reduction in HOMA-IR, with no significant differences between groups. No associations were seen between changes in glucose and insulin measures and changes in pain.Conclusion: Both diets improved insulin dynamics in females with lipedema and obesity, despite additional benefits in the LCD group. However, changes in the measured indices of insulin dynamics were not associated with pain reduction, suggesting that the effects of the LCD on pain and systemic metabolic regulation may involve other pathways.

Last update from database: 8/30/26, 7:18 AM (UTC)

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