MicroRNA-mediated vascular intercellular communication is altered in chronic kidney disease
Cardiovascular Research

Abstract
Chronic kidney disease (CKD) is an independent risk factor for the development of coronary artery disease (CAD). For both, CKD and CAD, the intercellular transfer of microRNAs (miRs) through extracellular vesicles (EVs) is an important factor of disease development. Whether the combination of CAD and CKD affects endothelial function through cellular crosstalk of EV-incorporated miRs is still unknown.
Out of 172 screened CAD patients, 31 patients with CAD + CKD were identified and matched with 31 CAD patients without CKD. Additionally, 13 controls without CAD and CKD were included. Large EVs from CAD + CKD patients contained significantly lower levels of the vasculo-protective miR-130a-3p and miR-126-3p compared to CAD patients and controls. Flow cytometric analysis of plasma-derived EVs revealed significantly higher numbers of endothelial cell-derived EVs in CAD and CAD + CKD patients compared to controls. EVs from CAD + CKD patients impaired target human coronary artery endothelial cell (HCAEC) proliferation upon incubation
Our findings suggest that EV-miR-mediated vascular intercellular communication is altered in patients with CAD and CKD, promoting CKD-induced endothelial dysfunction.
Contributors

Eva Steffen
Author

Sven Niepmann
Author

Philip Düsing
Author

Mohammed Rabiul Hosen
Author

Weiyi Liu
Author

Paul Jamme
Author

Baravan Al-Kassou
Author

Philipp Roger Goody
Author

Sebastian Zimmer
Author

Katrin S Reiners
Author

Alexander Pfeifer
Author

Michael Böhm
Author

Nikos Werner
Author

Georg Nickenig
Author
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