The Role of Plasma Extracellular Vesicles in Remote Ischemic Conditioning and Exercise-Induced Ischemic Tolerance.
Tingting GuJesper JustKatrine Tang StenzYan YanPeter SieljacksJakob WangThomas Skjaerlund GroennebaekJesper Emil JakobsgaardEmil RindomJon HerskindAnders GravholtThomas Ravn LassenMathias JørgensenRikke BækEugenio Gutiérrez-JiménezNina Kerting IversenPeter Mondrup RasmussenJens Randel NyengaardMalene Møller JørgensenFrank de PaoliHans Erik BotkerJørgen KjemsKristian VissingKim Ryun DrasbekPublished in: International journal of molecular sciences (2022)
Ischemic conditioning and exercise have been suggested for protecting against brain ischemia-reperfusion injury. However, the endogenous protective mechanisms stimulated by these interventions remain unclear. Here, in a comprehensive translational study, we investigated the protective role of extracellular vesicles (EVs) released after remote ischemic conditioning (RIC), blood flow restricted resistance exercise (BFRRE), or high-load resistance exercise (HLRE). Blood samples were collected from human participants before and at serial time points after intervention. RIC and BFRRE plasma EVs released early after stimulation improved viability of endothelial cells subjected to oxygen-glucose deprivation. Furthermore, post-RIC EVs accumulated in the ischemic area of a stroke mouse model, and a mean decrease in infarct volume was observed for post-RIC EVs, although not reaching statistical significance. Thus, circulating EVs induced by RIC and BFRRE can mediate protection, but the in vivo and translational effects of conditioned EVs require further experimental verification.
Keyphrases
- ischemia reperfusion injury
- endothelial cells
- cerebral ischemia
- blood flow
- physical activity
- high intensity
- mouse model
- randomized controlled trial
- atrial fibrillation
- subarachnoid hemorrhage
- resistance training
- acute myocardial infarction
- adipose tissue
- coronary artery disease
- brain injury
- blood pressure
- metabolic syndrome
- high resolution
- body composition
- blood glucose
- left ventricular
- mass spectrometry
- insulin resistance
- atomic force microscopy
- percutaneous coronary intervention