Method Article

Induction of Atherosclerotic Plaques Through Activation of Mineralocorticoid Receptors in Apolipoprotein E-deficient Mice

DOI:

10.3791/58303

September 26th, 2018

In This Article

Summary

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We describe a protocol to induce atherosclerosis in the aortic root of ApoE-/- mice fed with an atherogenic diet, through a continuous release of aldosterone. Methods to characterize plaque composition are also described.

Abstract

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Atherosclerosis is due to a chronic inflammatory response affecting vascular endothelium and is promoted by several factors such as hypertension, dyslipidemia, and diabetes. To date, there is evidence to support a role for circulating aldosterone as a risk factor for the development of cardiovascular disease. Transgenic mouse models have been generated to study cellular and molecular processes leading to atherosclerosis. In this manuscript, we describe a protocol that takes advantage of continuous infusion of aldosterone in ApoE-/- mice and generates atherosclerotic plaques in the aortic root after 4 weeks of treatment. We, therefore, illustrate a method for quantification and characterization of atherosclerotic lesions at the aortic root level. The added value of aldosterone infusion is represented by the generation of atherosclerotic lesions rich in lipid and inflammatory cells after 4 weeks of treatment. We describe in detail the staining procedures to quantify lipid and macrophage content within the plaque. Notably, in this protocol, we perform heart tissue-embedding in OCT in order to preserve the antigenicity of cardiac tissue and facilitate detectability of antigens of interest. Analysis of the plaque phenotype represents a valid approach to study the pathophysiology of atherosclerosis development and to identify novel pharmacological targets for the development of anti-atherogenic drugs.

Introduction

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Atherosclerosis is one of the main causes of mortality and morbidity worldwide1. It is characterized by a chronic inflammatory state where blood vessels are infiltrated by lipids and leukocytes that determine the formation of atherosclerotic plaques. The majority of acute cardiac events are associated with thrombotic events due to plaque rupture. Plaques prone to rupture are defined "vulnerable" and are characterized by increased infiltration of pro-inflammatory leukocytes, a necrotic core, and a thin fibrous cap2. In the last decades, clinical and experimental studies have clarified the complex pathophysiology o....

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Protocol

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The study was approved by the Italian National Institutes of Health Care and Use Committees, authorization number 493/2016-PR. All procedures were conducted per the guidelines of the European Community for the use of experimental animals (European Directive, 2010/63/UE).

Note: Subcutaneous implantation of osmotic minipump containing vehicle (ethanol in saline solution) or aldosterone (240 µg · kg-1 · d-1) in 8-10 week-old male mice deficient for the ApoE gene. In general, 8-10 week-old male ApoE−/− mice weigh around 25-26 g.

1. Dissolving Aldoster....

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Results

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In 8-10 weeks Apo-/- mice, minipumps were implanted to infuse with vehicle or aldosterone (Figure 1E-1I) and fed an atherogenic diet (adjusted calories diet 42% from fat) for 4 weeks. At the end of treatment, mice were euthanized and perfused with PBS and 10% formalin as described above. The aortic root was separated from the apical portion of the heart and was embedded in OCT (Figure 2). Cross section.......

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Discussion

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Atherosclerosis is a chronic inflammatory disorder associated with large and medium vessels involving interactions between multiple cell types, such as macrophages, T-lymphocytes, endothelial cells and smooth muscle cells1. Despite the limitations of murine atherogenic models, a large body of evidence on the atherosclerotic process is available. These models have the advantage of rapidly generating experimental cohorts of a specific age and gender. Mice also show a defined and homogeneous genetic .......

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Disclosures

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The authors have nothing to disclose.

Acknowledgements

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This work was supported by grants from the Italian Ministry of Health (Ricerca Corrente, GR-2009-1594563 and PE-2011-02347070 to M.C.)

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
Adjusted calories diet (42 % from fat)EnvigoTD.88137atherogenic diet
Osmotic minipump with filling tubeAlzetmodel 1004for continous realase
AldosteroneSIGMAA9477hormone
EthanolSIGMA34852-Msolvent
Alchol Preps saturated with 70 % Isopropyl AlcoholKendal Webcol6818Disinfectant
Surgery wire (Vicryl 6.0)Demas500004surgery
10% Povidone/iodine ointmentAplicare-Meriden52380-0026-1Antiseptic
Formalin 10%SIGMAHT5012to fix vascolature
CryomoldBio-Optica07-MP1515for embedding
O.C.T. CompoundSakura Finetek4583for embedding
CryostatLeicaCM1900instrument for sectioning
Dulbecco's Phosphat Buffered SalineAurogeneAU-L0615-500buffer solution
Adhesion Slides PolysineVWR631-0107microscope glasses
Cover GlassesBio-Optica72015cover glasses
Formaldehyde 37%SIGMA252549solvent
Oil Red O solution (0.5 % in isopropanol)SIGMAO1391staining solution
Mayer’s HematoxylinSIGMAMHS32staining solution
Lithium CarbonateSIGMA62470washing buffer
Acqueous Mounting MediumThermo ScientificTA-125-AMmounting solution
AcetoneSIGMA179124solvent
Phosphomolybdic acid solutionSIGMAHT153for hystology
Direct Red 80 (Picrosirius Red)SIGMA365548staining solution
Bio Clear (clearing agent of terpene origin)Bio-Optica06-1782Dproduct for the preparation of histological samples
Eukitt Quick Hardening mounting medium (Poly(butyl methacrylate-co-methyl methacrylate)SIGMA3989mounting solution
Sodium Dodecyl SulfateFluka71725powder
Hydrogen Peroxide solution (30 %)SIGMAH1009solution
Vectorstain ABC KIT including: anti-rabbit IgG ABC, normal rabbit serum, Secondary-biotinylated Anti-Rat IgG ,Vector LaboratoriesPK-6100staining solution
3-amino-9-ethylcarbazoleVector LaboratoriesSK-4200staining solution
Mac3 antibodyBD Biosciences553322antibody
ImagePro Premier 9Media Cybernetics050910000-2534software to analyze images

References

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  1. Ross, R. Atherosclerosis--an inflammatory disease. New England Journal of Medicine. 340 (2), 115-126 (1999).
  2. Lafont, A. Basic aspects of plaque vulnerability. Heart. 89 (10), 1262-1267 (2003).
  3. Getz, G. S., Reardon, C. A. Animal models of atherosclerosis. Arteriosclerosis, Thrombosis, and Vascular Biology. 32 (5), 1104-1115 (2012).
  4. Bentzon, J. ....

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Tags

Aldosterone InfusionAortic Root AnalysisOil Red O StainingMacrophage QuantificationHeart Tissue EmbeddingOCT PreservationCryosectioning Technique

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