ArticleBiology of sex differences2025
Sexual dimorphism in the serum metabolome following acute exhaustive exercise.
Article in Biology of sex differences, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 4 papers.
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Who cites it
4 citing papers in PubMed.
- Intensity-dependent lipidomic dynamic regulation following acute swimming exercise.Scientific reports · 2026Trial
- Sex-specific effects of exercise on motor coordination and extended basal ganglia physiology.bioRxiv : the preprint server for biology · 2026Article
- Sex dimorphism in serum lipid dynamics after acute exhaustive exercise.Biology of sport · 2026Article
- Exercise-specific post-translational modification signatures: unveiling precise regulatory mechanisms of molecular exercise language and cellular adaptation.Frontiers in sports and active living · 2026Review
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8 authors.
Funding
Abstract
backgroundSex differences in exercise metabolism have been recognized for decades, but the molecular metabolic landscape in which men and women reach standardized physiological exhaustion criteria remains unexplored.
objectiveWe systematically characterized serum metabolic sexual dimorphism following acute exhaustive exercise using standardized termination criteria.
methodsIn a cross-sectional study (ChiCTR2400089036), forty healthy adults (20 males, 20 females; aged 22.4 ± 3.4 years, BMI 22.4 ± 2.1 kg/m
resultsAll participants achieved standardized exhaustion endpoints. Despite equivalent fat-free mass-normalized V̇O
conclusionsThis study reveals distinct metabolic response patterns between males and females when standardized exhaustion endpoints are reached. Key exercise-induced sex-discriminating metabolites were identified and opposing metabolic-fitness associations were observed between sexes. These findings emphasize the necessity of sex-stratified analysis in exercise metabolism research and metabolic biomarker interpretation. While men and women respond differently to exercise, molecular differences at complete exhaustion have never been studied. We studied 20 men and 20 women who exercised to exhaustion using standardized criteria, then analyzed hundreds of blood molecules before, during, and after exercise. Although both sexes showed similar numbers of changed molecules, the specific types were remarkably different, with fat-related molecules showing the largest differences. We identified molecular markers that distinguished male from female responses, found certain fat storage molecules responded in opposite directions between sexes, and discovered that molecules like kynurenine and androsterone sulfate showed opposite fitness relationships in men versus women. These findings reveal that even at identical exhaustion levels, men and women use fundamentally different molecular strategies. By understanding these biological differences, we could develop personalized exercise and nutrition plans that work better for everyone's biology, potentially improving health outcomes and athletic performance. HIGHLIGHTS: 1. Males and females exhibit distinct serum metabolomic profiles when they reach standardized physiological exhaustion endpoints, with similar numbers of altered metabolites but different molecular compositions. 2. Lipid species composed the largest fraction of sex-differential responses, including LPLs, bile acids, and fatty acids, showing female-dominant sustained downregulation and male-dominant recoverable downregulation patterns. 3. Targeted analysis revealed the sexually antagonistic regulation of 37 triacylglycerol species. These species are characterized primarily by C50‒C52 carbon chain lengths and enrichment with monounsaturated fatty acids, particularly those containing palmitoleic acid. 4. Key metabolites showing sex-related differential characteristics, including hypoxanthine, sarcosine, and LPLs, were identified, providing molecular markers for sex differences in exercise responses. 5. Among the 115 metabolites correlated with V̇O
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