Vasc Med. 2026 Aug 27:1358863X261452546. doi: 10.1177/1358863X261452546. Online ahead of print.
ABSTRACT
BACKGROUND: Peripheral artery disease (PAD) is a prevalent manifestation of systemic atherosclerosis and is associated with substantial morbidity, impaired functional capacity, and adverse cardiovascular outcomes. Although reduced walking performance is a defining clinical feature of PAD, the underlying biological responses to acute physiological stress remain poorly understood.
METHODS: We conducted a prospective observational study including 35 patients with PAD and 36 control participants. All participants' serum samples were collected immediately before exercise and 5 minutes after exercise. Acute metabolic responses were quantified using targeted liquid chromatography-tandem mass spectrometry. Functional assessments, between-group comparisons, and associations with disease severity were evaluated using nonparametric methods.
RESULTS: Compared with control participants, patients with PAD exhibited distinct alterations in exercise-induced metabolic responses. Hypoxanthine showed a robust postexercise increase in controls but a blunted and directionally opposite response in PAD (p < 0.001), whereas 2-oxoglutarate increased significantly following exercise in PAD but not in controls (p < 0.001). In exploratory analyses within the PAD group, exercise-induced changes in hypoxanthine and 2-oxoglutarate were not significantly correlated with ankle-brachial index (ABI) or 6-minute walk distance (6MWD) in the available cases.
CONCLUSIONS: PAD is associated with impaired metabolic flexibility during acute exercise, characterized by altered purine- and tricarboxylic acid-related metabolic responses to exercise, supporting the concept that acute metabolic responses provide clinically relevant information beyond resting assessments in PAD.
PMID:42658039 | DOI:10.1177/1358863X261452546

