MicroRNAs in the regulation of immune cell functions - implications for atherosclerotic vascular disease

被引:37
|
作者
Zernecke, Alma [1 ]
机构
[1] Univ Wurzburg, Rudolf Virchow Ctr, DFG Res Ctr Expt Biomed, D-97080 Wurzburg, Germany
关键词
microRNAs; inflammation; immune cells; remodelling; atherosclerosis; CORONARY-ARTERY-DISEASE; INTIMAL DENDRITIC CELLS; SCAVENGER RECEPTOR-A; CD4(+) T-CELLS; INFLAMMATORY RESPONSE; LIPID UPTAKE; PLATELET MICRORNA; INTERFERON-GAMMA; DEFICIENT MICE; EXPRESSION;
D O I
10.1160/TH11-08-0603
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Regarded as a chronic inflammatory disease of the vessel wall, the development of atherosclerotic lesions is shaped by immune responses and their regulation. Macrophages and dendritic cells are positioned at the crossroad of innate and adaptive immune responses by sensing atherogenic danger signals and by taking up and presenting antigens. T helper cells and auto-antibodies produced by B cells, together with their cytokine responses in turn modulate atheroprogression. In addition, platelets contribute to atherosclerosis by multiple pathways. microRNAs (miRNAs) that post-transcriptionally regulate gene expression may thus critically control immune cell differentiation and functions during plaque evolution. This review summarises the role of miRNAs in regulating lipid uptake and expression of inflammatory mediators in monocytes/macrophages and dendritic cells, in lymphocyte functions with a focus on T helper cell responses, as well as in platelet biology, and the implications of altering these functions in vascular pathology and atherosclerosis. T systematically survey miRNA functions in controlling molecular mechanisms and immune responses in atherosclerosis holds potential for the development of novel miRNA-based strategies for therapies targeting inflammation and immunity in atherosclerosis.
引用
收藏
页码:626 / 633
页数:8
相关论文
共 50 条
  • [21] Acquired dysfibrinogenemia in atherosclerotic vascular disease
    Undas, Anetta
    POLSKIE ARCHIWUM MEDYCYNY WEWNETRZNEJ-POLISH ARCHIVES OF INTERNAL MEDICINE, 2011, 121 (09): : 310 - 318
  • [22] Genomics of Premature Atherosclerotic Vascular Disease
    Seo, David
    Goldschidt-Clermont, Pascal
    Velazquez, Omaida
    Beecham, Gary
    CURRENT ATHEROSCLEROSIS REPORTS, 2010, 12 (03) : 187 - 193
  • [23] Inflammatory mediators in atherosclerotic vascular disease
    A. Zernecke
    C. Weber
    Basic Research in Cardiology, 2005, 100 : 93 - 101
  • [24] Genomics of Premature Atherosclerotic Vascular Disease
    David Seo
    Pascal Goldschidt-Clermont
    Omaida Velazquez
    Gary Beecham
    Current Atherosclerosis Reports, 2010, 12 : 187 - 193
  • [25] Inflammatory mediators in atherosclerotic vascular disease
    Zernecke, A
    Weber, C
    BASIC RESEARCH IN CARDIOLOGY, 2005, 100 (02) : 93 - 101
  • [26] Regulation of Immune Cell Functions by Metabolic Reprogramming
    Kim, Jaehong
    JOURNAL OF IMMUNOLOGY RESEARCH, 2018, 2018
  • [27] Helicobacter pylori infection: Host immune response, implications on gene expression and microRNAs
    Targa Cadamuro, Aline Cristina
    Teixeira Rossi, Ana Flavia
    Maniezzo, Nathalia Maciel
    Silva, Ana Elizabete
    WORLD JOURNAL OF GASTROENTEROLOGY, 2014, 20 (06) : 1424 - 1437
  • [28] MicroRNAs in Vascular Biology and Vascular Disease
    Chunxiang Zhang
    Journal of Cardiovascular Translational Research, 2010, 3 : 235 - 240
  • [29] B cells interactions in lipid immune responses: implications in atherosclerotic disease
    Laura C Echeverri Tirado
    Lina M Yassin
    Lipids in Health and Disease, 16
  • [30] Pharmacological inhibition of NOX reduces atherosclerotic lesions, vascular ROS and immune-inflammatory responses in diabetic Apoe -/- mice
    Di Marco, E.
    Gray, S. P.
    Chew, P.
    Koulis, C.
    Ziegler, A.
    Szyndralewiez, C.
    Touyz, R. M.
    Schmidt, H. H. H. W.
    Cooper, M. E.
    Slattery, R.
    Jandeleit-Dahm, K. A.
    DIABETOLOGIA, 2014, 57 (03) : 633 - 642