Impact of A Six Week Training Program on Ventilatory Efficiency, Red Blood Cell Rheological Parameters and Red Blood Cell Nitric Oxide Signaling in Young Sickle Cell Anemia Patients: A Pilot Study

Marijke Grau, Elie Nader, Max Jerke, Alexander Schenk, Celine Renoux, Thomas Dietz, Bianca Collins, Daniel Alexander Bizjak, Philippe Joly, Wilhelm Bloch, Aram Prokop, Philippe Connes

Publication: Contribution to journalJournal articlesResearchpeer-review

Abstract

Patients with sickle cell anemia (SCA) show impaired ventilatory efficiency, altered blood rheology, high levels of oxidative/nitrosative stress and enhanced hemolysis with large amounts of circulating free hemoglobin, which reduces nitric oxide (NO) bioavailability. The aim of the study was to investigate whether physical exercise could improve these physiological and biological markers described to contribute to SCA pathophysiology. Twelve SCA patients participated in a controlled six weeks training program with moderate volume (two sessions per week with 15-30 min duration per session) and intensity (70% of the first ventilatory threshold). Parameters were compared before (T0) and after (T1) training. Daily activities were examined by a questionnaire at T0 and one year after the end of T1. Results revealed improved ventilatory efficiency, reduced nitrosative stress, reduced plasma free hemoglobin concentration, increased plasma nitrite levels and altered rheology at T1 while no effect was observed for exercise performance parameters or hematological profile. Red blood cell (RBC) NO parameters indicate increased NO bioavailability which did not affect RBC deformability. Participants increased their daily life activity level. The data from this pilot study concludes that even low intensity activities are feasible and could be beneficial for the health of SCA patients.

Original languageEnglish
JournalJournal of Clinical Medicine
Volume8
Issue number12
ISSN2077-0383
DOIs
Publication statusPublished - 05.12.2019

Research areas and keywords

  • nitric oxide
  • red blood cell aggregation
  • red blood cell deformability
  • red blood cell nitric oxide synthase
  • red blood cells
  • sickle cell anemia
  • ventilatory efficiency

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