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Patients with a univentricular heart live with chronic hypoxia (75-85%) in their first years of life, which could affect adaptation to altitude or other hypoxic insults later in life. To test this hypothesis, we exposed 18 patients with Fontan circulation (age: 24.5 16.3-38.8 years; f/m 9/9) to simulated altitude using normobaric hypoxia (15.2% oxygen, equivalent to 2500 masl) for 24 h. In blood samples obtained in normoxia (T1, 21% oxygen) and after 24 h hypoxia after a submaximal stress test, we measured hypoxia-regulated molecules involved in angiogenesis and tissue homeostasis. A significant increase was displayed for IL-10 (p = 0.001), CCL2 (p = 0.006), ANG-1 (p = 0.001), ANG-2 (p = 0.029), FGF-1 (p = 0.001) and FGF-2 (p = 0.024). E-Selectin (p p = 0.026 at T2 compared to baseline. However, OPN and OSF-1 did not exhibit significant changes (p = 0.348; p = 0.065). Fontan patients show hypoxia-related protein patterns similar to healthy individuals despite intermittent hypoxemia, but their response to standardised hypoxia was described here for the first time, requiring further study.
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Nicole Müller
Christopher Hart
Julian Alexander Härtel
International Journal of Molecular Sciences
Deutsches Zentrum für Luft- und Raumfahrt e. V. (DLR)
University Hospital Bonn
German Sport University Cologne
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Müller et al. (Tue,) studied this question.
www.synapsesocial.com/papers/69d76d1edb9d5e1bf4b8a5df — DOI: https://doi.org/10.3390/ijms26030887
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