| Literature DB >> 29197574 |
Changlong Li1, Sufang Li1, Feng Zhang1, Manyan Wu1, Huizhu Liang1, Junxian Song1, Chongyou Lee1, Hong Chen2.
Abstract
Microparticles(MPs) are the major carriers of circulating microRNAs. Our previous study has shown that microRNA (miR)-19b in endothelial cell-derived microparticles (EMPs) is significantly increased in patients with unstable angina. However, little is known about the relationship between miR-19b in EMPs and the progression of atherosclerosis. The aim of the present study was to define the role and potential mechanism of miR-19b incorporated in EMPs in the development of atherosclerosis. Western-diet-fed apoE-/- mice were injected with phosphate buffered solution(PBS), EMP carrying microRNA control(EMPcontrol) or miR-19b mimic (EMPmiR19b) intravenously. Systemic treatment with EMPmiR19b significantly accelerated carotid artery atherosclerosis progression by increasing lipid, macrophages and smooth muscle cells and decreasing collagen content in atherosclerotic plaque. Fluorescence-labelled EMPmiR19b injection proved that miR-19b could be transported into perivascular adipose tissue(PVAT) by EMPs. EMPmiR19b treatment also promoted inflammatory cytokines secretion and macrophages infiltration in PVAT. In further experiment, apoE-/- mice were divided into 3 groups: EMPcontrolPVAT(+), EMPmiR19bPVAT(+) and EMPmiR19bPVAT(-), based on removing or keeping pericarotid adipose tissue and injected with EMPcontrol or EMPmiR19b. Loss of PVAT attenuated EMPmiR19b-mediated effects on increasing carotid atherosclerosis formation and inflammatory cytokines level in plaque. EMPmiR19b inhibited suppressor of cytokine signaling 3 (SOCS3) expression in PVAT. Our findings demonstrate that miR-19b in EMPs exaggerates atherosclerosis progression by augmenting PVAT-specific inflammation proceeded by downregulating SOCS3 expression.Entities:
Keywords: Atherosclerosis; Endothelial microparticle; Perivascular adipose tissue; SOCS3; microRNA-19b
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Year: 2017 PMID: 29197574 DOI: 10.1016/j.bbrc.2017.11.195
Source DB: PubMed Journal: Biochem Biophys Res Commun ISSN: 0006-291X Impact factor: 3.575