Authors
Ming J Cheng, Ronodeep Mitra, Chinedu C Okorafor, Alina A Nersesyan, Ian C Harding, Nandita N Bal, Rajiv Kumar, Hanjoong Jo, Srinivas Sridhar, Eno E Ebong
Publication date
2020/7
Journal
Annals of biomedical engineering
Volume
48
Pages
1941-1954
Publisher
Springer International Publishing
Description
Therapies for atherosclerotic cardiovascular disease should target early disease stages and specific vascular sites where disease occurs. Endothelial glycocalyx (GCX) degradation compromises endothelial barrier function and increases vascular permeability. This initiates pro-atherosclerotic lipids and inflammatory cells to penetrate vessel walls, and at the same time this can be leveraged for targeted drug delivery. In prior cell culture studies, GCX degradation significantly increased endothelial cell uptake of nanoparticle vehicles that are designed for drug delivery, compared to the effects of intact GCX. The present study assessed if the cell culture findings translate to selective nanoparticle uptake in animal vessels. In mice, the left carotid artery (LCA) was partially ligated to disturb blood flow, which induces GCX degradation, endothelial dysfunction, and atherosclerosis. After ligation, the LCA vessel wall exhibited …
Total citations
2020202120222023202433653
Scholar articles
MJ Cheng, R Mitra, CC Okorafor, AA Nersesyan… - Annals of biomedical engineering, 2020