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Method Article

A Human Ex Vivo Atherosclerotic Plaque Model to Study Lesion Biology

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DOI:

10.3791/50542

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May 6th, 2014

* These authors contributed equally

In This Article

Summary

Atherosclerosis is a chronic inflammatory process. This manuscript illustrates an easy to use ex vivo model to investigate fresh carotid or coronary artery plaques. The ex vivo model allows for the investigation of potential substances on the inflammatory milieu in human atherosclerotic lesions and results can be analyzed by various methods.

Abstract

Atherosclerosis is a chronic inflammatory disease of the vasculature. There are various methods to study the inflammatory compound in atherosclerotic lesions. Mouse models are an important tool to investigate inflammatory processes in atherogenesis, but these models suffer from the phenotypic and functional differences between the murine and human immune system. In vitro cell experiments are used to specifically evaluate cell type-dependent changes caused by a substance of interest, but culture-dependent variations and the inability to analyze the influence of specific molecules in the context of the inflammatory compound in atherosclerotic lesions limit the impact of the results. In addition, measuring levels of a molecule of interest in human blood helps to further investigate its clinical relevance, but this represents systemic and not local inflammation. Therefore, we here describe a plaque culture model to study human atherosclerotic lesion biology ex vivo. In short, fresh plaques are obtained from patients undergoing endarterectomy or coronary artery bypass grafting and stored in RPMI medium on ice until usage. The specimens are cut into small pieces followed by random distribution into a 48-well plate, containing RPMI medium in addition to a substance of interest such as cytokines or chemokines alone or in combination for defined periods of time. After incubation, the plaque pieces can be shock frozen for mRNA isolation, embedded in Paraffin or OCT for immunohistochemistry staining or smashed and lysed for western blotting. Furthermore, cells may be isolated from the plaque for flow cytometry analysis. In addition, supernatants can be collected for protein measurement by ELISA. In conclusion, the presented ex vivo model opens the possibility to further study inflammatory lesional biology, which may result in identification of novel disease mechanisms and therapeutic targets.

Introduction

Atherosclerosis as a chronic inflammatory disease is one of main causes of death in industrialized nations1-2. Complications of atherosclerosis, especially acute coronary syndromes, have been linked to rupture of vulnerable lesions, causing atherothrombosis and vessel occlusion3. Innate and adaptive immunity seem to be involved during all steps of atherogenesis2,4-5. Although significant progress has been made in the treatment of myocardial infarction, effective prevention of atherosclerosis and adverse cardiovascular events are still unresolved. Thus, studying lesional biology is essential for increasing our knowledge on the pathophys....

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Protocol

1. Prepare medium as follows

  1. Culture Medium: RPMI medium.
  2. Add 10% fetal calf serum (FCS).
  3. Add 100 U/ml penicillin G, and 100 g/ml streptomycin.

2. Storage of fresh plaque cylinder until use

  1. The carotid endarterectomy operation of patients with or without ischemic symptoms (stroke, transitory ischemic attack) with a significant carotid artery stenosis will be done by vascular surgeons and coronary artery endarterectomy during coronary artery bypass grafting by heart surgeons. Carotid / coronary plaques need to be removed en bloc to preserve the plaque structure as described previous....

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Results

Here we present a number of figures that demonstrate results of the ex vivo plaque culturing. To assess changes in the inflammatory milieu in response to the agent of interest in the ex vivo model experiment, we measure different molecules which are known to be primarily involved in atherogenesis. As representative pro-atherogenic cytokines we choose TNFa, IL6 and IFNg2,11. In addition, we use von Willebrand factor and tissue factor to evaluate pro-thrombotic changes. Furthermore, to address .......

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Discussion

Here we present an ex vivo plaque culture model to investigate the influence of potentially relevant substances on atherosclerotic lesion biology. The major advantage of this ex vivo method is the ability to evaluate the influence of indicated substances on inflammatory cells and their cellular interplay as well as inflammatory pathways and cascades within human atherosclerotic lesions. Several usable methods (e.g. RT-PCR, western blot, immunohistochemistry, flow cytometry, ELISA) help to provi.......

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Disclosures

The authors do not have any conflicts to disclose.

Acknowledgements

We thank Nadine Wambsganss for excellent technical assistance. This work was supported by the German Research Foundation (DFG) ER 682/2-1 and a research stipend from the German Society of Cardiology to C. Erbel as well as a research stipend from German Academic Service Heidelberg to L. Zhao.

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
RPMI mediumGibco21875-091
FCSGibco10270-106
Penicillin-streptomycinSigmaP-4458
15 ml TubeSarstedt62,554,502
Culture dish (60 mm)Orange Scientific5550200
LPSSigmaL4516
Cell culture plates 48-wellGreiner677102
Scalpel - single useFeatherFEA200130011
TissueLyserPrecellys 24 DualCat. No. EQ03119.200.RD010.0
RNeasy (Mini) Kit QiagenCat. No. 74104
Boehringer cDNA kit Roche DiagnosticsCat. No. 11483188001
Nanodrop spectrophotometer Thermo Fisher Scientific

References

  1. Lusis, A. J. Atherosclerosis. Nature. 407, 233-241 (2000).
  2. Hansson, G. K., Libby, P. The immune response in atherosclerosis: a double-edged sword. Nat Rev Immunol. 6, 508-519 (2006).
  3. Virmani, R., Kolodgie, F. D., Burke, A. P., Farb, A., Schwartz, S. M.

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Tags

Ex Vivo Plaque ModelAtherosclerotic Lesion BiologyPlaque Tissue IsolationCytokine StimulationRNA ExtractionWestern BlottingFlow Cytometry AnalysisImmunohistochemistry StainingELISA Protein MeasurementShock Freezing