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May 5, 2015Scandinavian Journal of Medicine and Science in Sports14 citations

Effects of acute, intermittent exercise in hypoxic environments on the release of cardiac troponin

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FLF. LiYHYang HuJNJinlei Nie

Structured PICO

Does acute, intermittent exercise in hypoxic environments increase the release of cardiac troponin in well-trained male marathon runners?

P
Population
10 well-trained, male marathon runners, mean age 22.1 ± 2.6 years
I
Intervention
Acute, intermittent exercise in hypoxic environments (FIO2 14.4%, simulated altitude 3000 m) at 90% and 50% normoxic or hypoxic vVO2max
C
Comparator
Acute, intermittent exercise in normoxic environment (FIO2 21.0%) at 90% and 50% normoxic vVO2max
O
Outcome
Release of cardiac troponin (hs-cTnT and cTnI) measured pre- and 0, 2, 4, and 24 h post-exercisesurrogate

Hypoxia alone does not induce greater cardiac troponin release during intermittent exercise, but exercise intensity in hypoxic environments modulates this response.

Abstract

The purpose of this study was to examine the effects of acute, intermittent exercise performed in hypoxic environments on the release of cardiac troponin (cTn). Ten well-trained, male marathon runners (22.1 ± 2.6 years, 64.0 ± 4.9 kg and 177.3 ± 3.9 cm) completed three intermittent exercise protocols under normoxic (trial N) and hypoxic (trial AH and RH) conditions. In trial N, the fraction of inspiration oxygen (FIO2 ) was 21.0% and exercise intensity was 90% and 50% normoxic velocity of VO2max (vVO2max). In trial AH, FIO2 was 14.4% (simulated altitude of 3000 m) and exercise intensity was 90% and 50% normoxic vVO2max. In trial RH, FIO2 was 14.4% and exercise intensity was 90% and 50% hypoxic vVO2max. High-sensitivity cardiac troponin T (hs-cTnT) and cardiac troponin I (cTnI) were measured pre- and 0, 2, 4, and 24 h post-exercise. Hs-cTnT was elevated in all three trials, peaking at 2 to 4 h and returning to the baseline 24 h post-exercise. CTnI increased in trial AH, peaking at 2 to 4 h and returning below the detection limit 24 h post-exercise. It is concluded that the stimulus of hypoxia did not in and of itself induce more cTn to be released, but exercise intensity could affect this response in hypoxic environments.

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Cite This Study

Li et al. (2015) studied this question.

synapsesocial.com/papers/6a0908a1a2bc65e38873bde5https://doi.org/10.1111/sms.12463
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Also Consider

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

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