Systemic inflammation and alterations to cerebral blood flow in obstructive sleep apnea.
Hsiu-Ling ChenHsin-Ching LinCheng-Hsien LuPei-Chin ChenChih-Cheng HuangKun-Hsien ChouMao-Chang SuMichael FriedmanYi-Wen ChenWei-Che LinPublished in: Journal of sleep research (2017)
Systemic inflammation and alterations to regional cerebral blood flow (CBF) have been reported previously in obstructive sleep apnea (OSA). This study utilized arterial spin labelling (ASL) perfusion magnetic resonance imaging (MRI) to evaluate CBF in OSA patients and determine its relationship with systemic inflammation. Twenty male patients with moderate and severe OSA [apnea-hypopnea index (AHI) >15] and 16 healthy male volunteers (AHI <5) were recruited. Early- or late-phase changes in leucocyte apoptosis and its subsets were determined by flow cytometry. Perfusion MRI data were acquired with a pulsed continuous ASL technique. The CBF maps were compared using voxel-based statistics to determine differences between the OSA and control groups. The differences in CBF, clinical severity and leucocyte apoptosis were correlated. Exploratory groupwise comparison between the two groups revealed that the OSA patients exhibited low CBF values in the vulnerable regions. The lower regional CBF values were correlated with higher clinical disease severity and leucocyte apoptosis. OSA impairs cerebral perfusion in vulnerable regions, and this deficit is associated with increased disease severity. The apparent correlation between systemic inflammation and cerebral perfusion may be indicative of haemodynamic alterations and their consequences in OSA.
Keyphrases
- obstructive sleep apnea
- cerebral blood flow
- positive airway pressure
- contrast enhanced
- magnetic resonance imaging
- sleep apnea
- end stage renal disease
- oxidative stress
- ejection fraction
- endoplasmic reticulum stress
- flow cytometry
- chronic kidney disease
- cell cycle arrest
- peritoneal dialysis
- computed tomography
- cell death
- magnetic resonance
- subarachnoid hemorrhage
- single cell
- brain injury
- artificial intelligence
- blood brain barrier
- peripheral blood
- density functional theory
- signaling pathway
- data analysis
- drug induced