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PMID: 16265535 Published · ppublish English Journal Article Review

Mechanisms of disease: macrophage-derived foam cells emerging as therapeutic targets in atherosclerosis.

Nature clinical practice. Cardiovascular medicine ·Vol. 2 ·No. 6 ·2005-06-00 ·Pages 309-15

Choudhury RP, Lee JM, Greaves DR

Abstract

The limited efficacy of current treatment strategies for targeting atherosclerosis and its complications requires new therapeutic options to be explored. From early fatty-streak lesions to advanced plaques, macrophage-derived foam cells are integral to the development and progression of atherosclerosis. Elucidation of molecular and cellular processes involving macrophages has led to numerous therapeutic targets being suggested. Potential sites of intervention range from monocyte recruitment, through cholesterol uptake and esterification, to cholesterol evacuation and macrophage egress from plaque. In addition, complex patterns of transcriptional regulation of genes involved in macrophage lipid homeostasis and in the regulation of inflammation have been partly unraveled. Recognition of ATP-binding cassette cholesterol transport mechanisms and cellular interactions with cholesterol-accepting apolipoproteins (or synthetic mimetics) opens up new potential therapies to induce atherosclerosis regression in humans. This review presents a systematic evaluation of actual and potential macrophage-directed pharmacologic interventions. It reflects the timely convergence of three important strands: advances in molecular and cell biology that have suggested therapeutic targets in macrophages; the development of multiple classes of drugs targeting these pathways; and the emergence of sensitive imaging techniques that have enabled identification of changes in plaque size and composition in response to treatment.

MeSH Terms
Arteriosclerosis/drug therapy,physiopathology Cholesterol, LDL/metabolism Drug Delivery Systems Foam Cells/drug effects Gene Expression/drug effects Humans Inflammation/physiopathology Macrophages Monocytes Receptors, Scavenger/therapeutic use Time Factors
Chemicals
Cholesterol, LDL Receptors, Scavenger
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Choudhury Robin P
Department of Cardiovascular Medicine, at the University of Oxford, Oxford, UK. robin.choudhury@cardiov.ox.ac.uk
Lee Justin M
Greaves David R
Article Info
Journal
Nature clinical practice. Cardiovascular medicine
Abbr.
Nat Clin Pract Cardiovasc Med
ISSN
1743-4297
Published
2005-06-00
Pages
309-15
Language
English
Region
England
NLM ID
101226507
Subset
IM
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