Online hemodiafiltration inhibits inflammation-related endothelial dysfunction and vascular calcification of uremic patients modulating miR-223 expression in plasma extracellular vesicles

  • Claudia Cavallari
  • , Sergio Dellepiane
  • , Valentina Fonsato
  • , Davide Medica
  • , Marita Marengo
  • , Massimiliano Migliori
  • , Alessandro D. Quercia
  • , Adriana Pitino
  • , Marco Formica
  • , Vincenzo Panichi
  • , Stefano Maffei
  • , Luigi Biancone
  • , Emanuele Gatti
  • , Ciro Tetta
  • , Giovanni Camussi
  • , Vincenzo Cantaluppi

Risultato della ricerca: Contributo su rivistaArticolo in rivistapeer review

Abstract

Decreased inflammation and cardiovascular mortality are evident in patients with end-stage chronic kidney disease treated by online hemodiafiltration. Extracellular vesicles (EV) are mediators of cell-to-cell communication and contain different RNA types. This study investigated whether mixed online hemodiafiltration (mOL-HDF) beneficial effects associate with changes in the RNA content of plasma EV in chronic kidney disease patients. Thirty bicarbonate hemodialysis (BHD) patients were randomized 1:1 to continue BHD or switch to mOL-HDF. Concentration, size, and microRNA content of plasma EV were evaluated for 9 mo; we then studied EV effects on inflammation, angiogenesis, and apoptosis of endothelial cells (HUVEC) and on osteoblast mineralization of vascular smooth muscle cells (VSMC). mOL-HDF treatment reduced different inflammatory markers, including circulating CRP, IL-6, and NGAL. All hemodialysis patients showed higher plasma levels of endothelial-derived EV than healthy subjects, with no significant differences between BHD and mOL-HDF. However, BHD-derived EV had an increased expression of the proatherogenic miR-223 with respect to healthy subjects or mOL-HDF. Compared with EV from healthy subjects, those from hemodialysis patients reduced angiogenesis and increased HUVEC apoptosis and VSMC calcification; however, all these detrimental effects were reduced with mOL-HDF with respect to BHD. Cell transfection with miR-223 mimic or antagomiR proved the role of this microRNA in EV-induced HUVEC and VSMC dysfunction. The switch from BHD to mOL-HDF significantly reduced systemic inflammation and miR-223 expression in plasma EV, thus improving HUVEC angiogenesis and reducing VSMC calcification.

Lingua originaleInglese
pagine (da-a)2372-2383
Numero di pagine12
RivistaJournal of Immunology
Volume202
Numero di pubblicazione8
DOI
Stato di pubblicazionePubblicato - 15 apr 2019

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