Are we curing one evil with another? A translational approach targeting the role of neoatherosclerosis in late stent failure

Author:

Lenz Tobias1,Nicol Philipp12,Castellanos Maria Isabel12,Abdelgalil Ayat Aboutaleb Abdellah1,Hoppmann Petra3,Kempf Wolfgang1,Koppara Tobias3,Lahmann Anna Lena1,Rüscher Alena1,Kessler Horst4,Joner Michael12

Affiliation:

1. Deutsches Herzzentrum München (German Heart Centre Munich), Klinik fβ Herz- und Kreislauferkrankungen, Technische Universität München, Lazarettstraße 36, 80363 Munich, Germany

2. DZHK (German Centre for Cardiovascular Research), Partner Site Munich Heart Alliance, Biedersteiner Straße 29, 80802 Munich, Germany

3. Klinik und Poliklinik für Innere Medizin I, Klinikum rechts der Isar, Technische Universität München, Ismaninger Str. 22, 81675 Munich, Germany

4. Department of Chemistry and Center for Integrated Protein Science, Institute for Advanced Study, Technische Universität München, Lichtenbergstr. 4, 85747 Garching, Germany

Abstract

Abstract Neoatherosclerosis is defined as foamy macrophage infiltration into the peri-strut or neointimal area after stent implantation, potentially leading to late stent failure through progressive atherosclerotic changes including calcification, fibroatheroma, thin-cap fibroatheroma, and rupture with stent thrombosis (ST) in advanced stages. Human autopsy as well as intravascular imaging studies have led to the understanding of neoatherosclerosis formation as a similar but significantly accelerated pathophysiology as compared to native atherosclerosis. This acceleration is mainly based on disrupted endothelial integrity with insufficient barrier function and augmented transmigration of lipids following vascular injury after coronary intervention and especially after implantation of drug-eluting stents. In this review, we summarize translational insights into disease pathophysiology and discuss therapeutic approaches to tackle this novel disease entity. We introduce a novel animal model of neoatherosclerosis alongside accompanying in vitro experiments, which show impaired endothelial integrity causing increased permeability for low-density lipoprotein cholesterol resulting in foam cell transformation of human monocytes. In addition, we discuss novel intravascular imaging surrogates to improve reliable diagnosis of early stage neoatherosclerosis. Finally, a therapeutic approach to prevent in-stent neoatherosclerosis with magnesium-based bioresorbable scaffolds and systemic statin treatment demonstrated the potential to improve arterial healing and re-endothelialization, leading to significantly mitigated neoatherosclerosis formation in an animal model of neoatherosclerosis.

Funder

Boehringer Ingelheim

Publisher

Oxford University Press (OUP)

Subject

Cardiology and Cardiovascular Medicine

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