CBS 2019
CBSMD教育中心
English

动脉粥样硬化性心血管疾病预防

科研文章

荐读文献

Hypertension: Do Inflammation and Immunity Hold the Key to Solving this Epidemic? Endocardium Minimally Contributes to Coronary Endothelium in the Embryonic Ventricular Free Walls 2020 Expert Consensus Decision Pathway on Novel Therapies for Cardiovascular Risk Reduction in Patients With Type 2 Diabetes CD163+ macrophages promote angiogenesis and vascular permeability accompanied by inflammation in atherosclerosis Association Between Depressive Symptoms and Incident Cardiovascular Diseases Efficacy and safety of low-dose colchicine in patients with coronary disease: a systematic review and meta-analysis of randomized trials Membrane type 1 matrix metalloproteinase promotes LDL receptor shedding and accelerates the development of atherosclerosis 2010 ACCF/AHA guideline for assessment of cardiovascular risk in asymptomatic adults: a report of the American College of Cardiology Foundation/American Heart Association Task Force on Practice Guidelines SR-B1 Drives Endothelial Cell LDL Transcytosis via DOCK4 to Promote Atherosclerosis Statin Effects on Vascular Calcification: Microarchitectural Changes in Aortic Calcium Deposits in Aged Hyperlipidemic Mice

Original Research2019 Aug 7;40(30):2482-2491.

JOURNAL:Eur Heart J. Article Link

Stage-dependent differential effects of interleukin-1 isoforms on experimental atherosclerosis

Vromman A, Ruvkun V, Shvartz E et al. Keywords: arterial remodelling; atherosclerosis; inflammation; interleukin-1

ABSTRACT


AIMS - Targeting interleukin-1 (IL-1) represents a novel therapeutic approach to atherosclerosis. CANTOS demonstrated the benefits of IL-1β neutralization in patients post-myocardial infarction with residual inflammatory risk. Yet, some mouse data have shown a prominent role of IL-1α rather than IL-1β in atherosclerosis, or even a deleterious effect of IL-1 on outward arterial remodelling in atherosclerosis-susceptible mice. To shed light on these disparate results, this study investigated the effect of neutralizing IL-1α or/and IL-1β isoforms starting either early in atherogenesis or later in ApoE-/- mice with established atheroma.


METHODS AND RESULTS - The neutralization of IL-1α or of both IL-1 isoforms impaired outward remodelling during early atherogenesis as assessed by micro-computed tomographic and histologic assessment. In contrast, the neutralization of IL-1β did not impair outward remodelling either during early atherogenesis or in mice with established lesions. Interleukin-1β inhibition promoted a slant of blood monocytes towards a less inflammatory state during atherogenesis, reduced the size of established atheromata, and increased plasma levels of IL-10 without limiting outward remodelling of brachiocephalic arteries.


CONCLUSION - This study established a pivotal role for IL-1α in the remodelling of arteries during early experimental atherogenesis, whereas IL-1β drives inflammation during atherogenesis and the evolution of advanced atheroma in mice.

Published on behalf of the European Society of Cardiology. All rights reserved. © The Author(s) 2019.