Mitochondrial reactive oxygen species generation in blood cells is associated with disease severity and exercise intolerance in heart failure patients.
Ryosuke ShirakawaTakashi YokotaTakayuki NakajimaShingo TakadaMiwako YamaneTakaaki FurihataSatoshi MaekawaHideo NambuTakashi KatayamaArata FukushimaAkimichi SaitoNaoki IshimoriFlemming DelaShintaro KinugawaToshihisa AnzaiPublished in: Scientific reports (2019)
Systemic oxidative stress plays a key role in the development of chronic heart failure (CHF). We tested the hypothesis that mitochondrial reactive oxygen species (ROS) generation in circulating peripheral blood mononuclear cells (PBMCs) contributes to CHF progression. A total of 31 patients who had a history of hospital admission due to worsening HF were enrolled and grouped as having either mild CHF defined as New York Heart Association (NYHA) functional class I-II or moderate-to-severe CHF defined as NYHA functional class III. ROS levels in PBMC mitochondria were significantly increased in CHF patients with NYHA functional class III compared to those with NYHA functional class I-II, accompanied by impaired mitochondrial respiratory capacity in PBMCs. ROS generation in PBMC mitochondria was positively correlated with urinary 8-hydroxydeoxyguanosine, a systemic oxidative stress marker, in CHF patients. Importantly, mitochondrial ROS generation in PBMCs was directly correlated with plasma levels of B-type natriuretic peptide, a biomarker for severity of HF, and inversely correlated with peak oxygen uptake, a parameter of exercise capacity, in CHF patients. The study showed that ROS generation in PBMC mitochondria was higher in patients with advanced CHF, and it was associated with disease severity and exercise intolerance in CHF patients.
Keyphrases
- reactive oxygen species
- oxidative stress
- ejection fraction
- end stage renal disease
- cell death
- dna damage
- newly diagnosed
- chronic kidney disease
- physical activity
- high intensity
- peritoneal dialysis
- healthcare
- heart failure
- induced apoptosis
- prognostic factors
- resistance training
- atrial fibrillation
- diabetic rats
- cell cycle arrest
- early onset
- endoplasmic reticulum stress
- pi k akt
- endoplasmic reticulum
- heat shock protein