Ethinyl estradiol and levonorgestrel coadministration induces hypophagia and increases energy expenditure in female rats

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ID: 315460
2026
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Abstract
Oral contraceptives containing ethinyl estradiol (EE) with levonorgestrel (LNG) are common in hormonal contraceptives. EE+LNG suppresses weight gain in rodents, but the mechanisms for this remain unclear. Further, metabolic demands in adolescence are increased relative to adulthood. We tested the metabolic effect of a low dose of EE+LNG in adolescents and adult female Long-Evans rats. Rats were given EE (10 µg/kg) + LNG (20 µg/kg) or vehicle subcutaneous injections daily for 16 days. Body mass, food intake, whole-body oxygen consumption, respiratory-exchange ratio, and energy expenditure were measured in Promethion phenotyping cages. Dual-energy X-ray absorptiometry (DXA), glucose tolerance, serum metabolic hormone levels, depot-specific adipose and reproductive tissues were collected. EE+LNG limited body-mass gain in both age groups by combining hypophagia with a marked elevation in total energy expenditure and no change in locomotion, implicating potential thermogenic pathways. DXA scans showed curtailed fat accrual and the preservation of lean mass in EE+LNG treated rats. White-adipose depots were smaller in all hormone-treated rats, whereas brown adipose tissue mass was reduced only in adults. EE+LNG-treated, adults had lower leptin and C-peptide with enhanced glucose clearance, whereas adolescents had reductions in GLP-1, glucagon, and PYY without altered glucose clearance. Thus low-dose EE+LNG reduced caloric intake, increased energy expenditure, and limited white-adipose deposition irrespective of age. Age-specific effects on metabolic hormones and adipose depot UCP1 content were noted. Together, these results delineate an age-sensitive metabolic and endocrine profile of EE+LNG.
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Authors Jesse M. Lacasse, Ahmad Mohammad, Kristen R. Montgomery, Sara Bellaflor, Rebecca E K MacPherson, Liisa A M Galea, Cheryl M. McCormick
Journal american journal of physiology endocrinology and metabolism
Year 2026
DOI
10.1210/endocr/bqag064
URL
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