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May 14, 2026International Journal of Molecular Sciences0 citationsOpen Access

Oxy-Inflammatory Profile of Finishers and No-Finishers in an Extreme Ultra-Endurance Trail Race: The 866 km Transpyrénéa

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SMSimona Mrakic‐SpostaMGM. GussoniFMFederica Mrakic-Sposta

Key Points

  • The research aims to analyze the bio-physiological responses of athletes during an extreme ultra-endurance race, particularly focusing on their oxy-inflammatory profiles.
  • Studied 39 experienced ultra-marathon runners using capillary blood and urine samples at baseline and during multiple race stages.
  • Biomarkers such as reactive oxygen species, total antioxidant capacity, and inflammation markers were assessed.
  • Compared Finishers and No-Finishers regarding their physiological changes throughout the race.
  • Both Finishers and No-Finishers exhibited significant increases in ROS, oxidative damage, and inflammation during the race.
  • NFRs showed significantly different ROS production and oxidative damage compared to FRs at specified time points.
  • Findings suggest FRs have better metabolic efficacy and adaptation to extreme physiological stress.

Abstract

This study investigates the bio-physiological responses occurring under extreme stress conditions and the characterization of the oxy-inflammatory profile of Finishers (FRs) and NoFinishers (NFRs) athletes during the time course and following the Transpyrénéa, an 866 km extreme ultra-race across the French Pyrenees with an altitude difference of 52,900+ m ascent. Thirty-nine experienced ultra-marathon runners (age 43.5 ± 9.1 years; weight 72.1 ± 11.1 kg; BMI 23.3 ± 2.6 kg/m2) were studied using minimally invasive methods on capillary blood and urine samples obtained at baseline (T0), during (T1, 2, 3) and at the end (T4) of the race. Reactive Oxygen Species (ROS) production, total antioxidant capacity (TAC), oxidative damage (8-hydroxy-2-deoxy Guanosine: 8-OH-dG and 8-isoprostane: 8-isoPGF2α), inflammatory (IL-6), nitric oxide pathway (NOx and 3-NT), neopterin, and hematologic (lactate, and hematocrit) biomarkers were assessed. In both FR and NFR athletes a marked systemic increase in ROS, oxidative and nitrosative damage, inflammation, transient immune-renal dysfunction and lactate release were detected throughout the race. Compared to FRs, NFRs displayed significant differences concerning ROS production at T0, 8-isoPGF2-α at T0, T1 and T2, and perceived exertion (RPE score) at T2. These data potentially reflect enhanced adaptative responses to training and metabolic efficacy in FRs, allowing them to better tolerate extreme physiological stress.

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Cite This Study

Mrakic‐Sposta et al. (2026) studied this question.

synapsesocial.com/papers/6a05680ea550a87e60a206achttps://doi.org/10.3390/ijms27104295
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Effects of extreme mountain ultramarathon on stress‐related biomarkers from multiple biological matrices in adult male runners2026
  2. 2Concurrent inflammatory, hemorheological and macrovascular responses to a 230-km ultramarathon: an exploratory study2026
  3. 3The impact of an ultra-trail on the dynamic of cardiac, inflammatory, renal and oxidative stress biological markers correlated with electrocardiogram and echocardiogram2020 · 7 citations
  4. 4Race predictors and hemodynamic alteration after an ultra-trail marathon race2017 · 12 citations
  5. 5(Ultra-)inflammation or adaptation? Comparison of different ultramarathon distances and their effect on the immune system2026 · 1 citations