Literature DB >> 26110589

Nanoparticle uptake by macrophages in vulnerable plaques for atherosclerosis diagnosis.

Susanne Melzer1,2, Rinat Ankri3, Dror Fixler3, Attila Tarnok4,5.   

Abstract

The composition of atherosclerotic (AS) plaques is crucial concerning rupture, thrombosis and clinical events. Two plaque types are distinguished: stable and vulnerable plaques. Vulnerable plaques are rich in inflammatory cells, mostly only M1 macrophages, and are highly susceptible to rupture. These plaques represent a high risk particularly with the standard invasive diagnosis by coronary angiography. So far there are no non-invasive low-risk clinical approaches available to detect and distinguish AS plaque types in vivo. The perspective review introduces a whole work-flow for a novel approach for non-invasive detection and classification of AS plaques using the diffusion reflection method with gold nanoparticle loaded macrophages in combination with flow and image cytometric analysis for quality assurance. Classical biophotonic methods for AS diagnosis are summarized. Phenotyping of monocytes and macrophages are discussed for specific subset labelling by nanomaterials, as well as existing studies and first experimental proofs of concept for the novel approach are shown. In vitro and in vivo detection of NP loaded macrophages (MΦ). Different ways of MΦ labelling include (1) in vitro labelling in suspension (whole blood or buffy coat) or (2) labelling of short-term MΦ cultures with re-injection of MΦ-NP into the animal to detect migration of the cells in the plaques and (3) in vivo injection of NP into the organism.
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  Atherosclerosis; Diffusion Reflection; Flow Cytometry; Macrophages; Monocytes; Nanoparticles; Non-invasive Detection

Mesh:

Substances:

Year:  2015        PMID: 26110589     DOI: 10.1002/jbio.201500114

Source DB:  PubMed          Journal:  J Biophotonics        ISSN: 1864-063X            Impact factor:   3.207


  7 in total

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3.  Detection of gold nanorods uptake by macrophages using scattering analyses combined with diffusion reflection measurements as a potential tool for in vivo atherosclerosis tracking.

Authors:  Rinat Ankri; Susanne Melzer; Attila Tarnok; Dror Fixler
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6.  The Scattering of Gold Nanorods Combined with Differential Uptake, Paving a New Detection Method for Macrophage Subtypes Using Flow Cytometery.

Authors:  Ruchira Chakraborty; Dorit Leshem-Lev; Ran Kornowski; Dror Fixler
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7.  Identification of Monocyte-Associated Genes Related to the Instability of Atherosclerosis Plaque.

Authors:  Wentao Qin; Fu Gan; Riguan Liang; Jing Li; Xiaomei Lai; Yongfa Dai; Jie Liu
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  7 in total

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