Hypercholesterolemia aggravates in-stent restenosis in rabbits: a mitigating effect of stent surface modification with CD47-derived peptide.
Fishbein, I.; Inamdar, V. V.; Alferiev, I. S.; Bratinov, G.; Zviman, M. M.; Yekhilevsky, A.; Nagaswami, C.; Gardiner, K. L.; Levy, R. J.; Stachelek, S. J.
Show abstract
BackgroundHypercholesterolemia (HC) has previously been shown to augment restenotic response in several animal models and humans. However, the mechanistic aspects of in-stent restenosis (ISR) on a hypercholesterolemic background, including potential augmentation of systemic and local inflammation precipitated by HC are not completely understood. CD47 is a transmembrane protein known to abort crucial inflammatory pathways. Our present studies have examined the interrelation between HC, inflammation, and ISR and investigated the therapeutic potential of stents coated with a CD47-derived peptide (pepCD47) in the hypercholesterolemic rabbit model. Methods and ResultsPepCD47 was immobilized on metal foil coupons and stents using polybisphosphonate coordination chemistry and pyridyldithio/thiol conjugation. The relative abundance of the surface-associated cells on bare metal (BM) and pepCD47 foils exposed to whole rabbit blood showed a 40% inhibition of cell attachment on pepCD47-modified surfaces. Likewise, cytokine expression analyzed in buffy coat-derived cells cultured over the BM and pepCD47-derivatized foils demonstrated a M2/M1 increase with pepCD47 coating. Hypercholesterolemic and normocholesterolemic rabbit cohorts underwent bilateral implantation of BM and pepCD47 stents in the iliac location. Hypercholesterolemia increased neointimal growth in comparison with normocholesterolemic animals at 4 weeks post-stenting. These untoward outcomes were mitigated in the arteries of hypercholesterolemic rabbits treated with pepCD47-derivatized stents. Compared to NC animals, inflammatory cytokine immunopositivity and macrophage infiltration of peri-strut areas increased in HC group animals, and was attenuated in the arteries of hypercholesterolemic rabbits treated with pepCD47 stents. ConclusionsAugmented inflammatory responses triggered by HC underlie severe ISR morphology in hypercholesterolemic rabbits. Blockage of initial platelet and leukocyte attachment to stent struts through CD47 functionalization of stents mitigates pro-restenotic effects of HC.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Immunomodulatory Porous Regenerative Scaffolds for in situ Vascular Engineering 95%
- Age and Sex-Dependent Differences in Human Cardiac Matrix-Bound Exosomes Modulate Fibrosis through Synergistic miRNA Effects 93%
- Development and characterization of a human arteriovenous malformation (AVM)-on-a-chip model 92%
Similar papers in this journal
- Directing Cells to Murine Atherosclerotic Aortic Lesions via Targeting Inflamed Circulatory Interface using Nanocarriers 95%
- Endothelial Nitric Oxide Synthase (eNOS) S1176 phosphorylation status governs atherosclerotic lesion formation 93%
- Using TCR and BCR sequencing to unravel the role of T and B cells in abdominal aortic aneurysm 91%
Similar papers in this journal
Similar papers in this journal
- Syngeneic adipose-derived stromal cells modulate the immune response but have limited persistence within decellularized adipose tissue implants in C57BL/6 mice 92%
- Inflammatory and regenerative processes in bioresorbable synthetic pulmonary valves up to 2 years in sheep: Spatiotemporal insights augmented by Raman microspectroscopy 92%
- Hierarchically Vascularized and Implantable Tissue Constructs created through Angiogenesis from Tissue-Engineered Vascular Grafts 91%
Similar papers in this journal
- Gut microbial metabolite imidazole propionate impairs endothelial cell function and promotes the development of atherosclerosis 96%
- Trimethylamine-N-oxide affects cell type-specific pathways and networks in mouse aorta to promote atherosclerotic plaque vulnerability 93%
- Surfactant protein A promotes atherosclerosis through mediating macrophage foam cell formation 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.