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Histological and Morphometric Analyses for Rat Carotid Balloon Injury Model

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Vascular Biology Protocols

Part of the book series: Methods in Molecular Medicineā„¢ ((MIMM,volume 139))

Summary

Experiments aimed at analyzing the response of blood vessels to mechanical injury and ensuing remodeling responses often employ the highly characterized carotid artery balloon injury model in laboratory rats. This approach utilizes luminal insertion of a balloon embolectomy catheter into the common carotid artery with inflation and withdrawal resulting in an injury characterized by vascular endothelial cell (EC) denudation and medial wall distension. The adaptive response to this injury is typified by robust vascular smooth muscle cell (SMC) replication and migration, SMC apoptosis and necrosis, enhanced synthesis and deposition of extracellular matrix (ECM) components, partial vascular EC regeneration from the border zones, luminal narrowing, and establishment of a neointima in time-dependent fashion. Evaluation of these adaptive responses to blood vessel injury can include acute and longer term qualitative and quantitative measures including expression analyses, activity assays, immunostaining for a plethora of factors and signals, and morphometry of neointima formation and gross mural remodeling. This chapter presents a logical continuation of Chapter 1 that offers details for performing the rat carotid artery balloon injury model in a standard laboratory setting by providing commonly used protocols for performing histological and morphometric analyses in such studies. Moreover, procedures, caveats, and considerations included in this chapter are highly relevant for alternative animal vascular physiology/pathophysiology studies and in particular those related to mechanisms of vascular injury and repair. Included in this chapter are specifics for in situ perfusion-fixation, tissue harvesting and processing for both snap-frozen and paraffin-embedded protocols, specimen embedding and sectioning, slide preparation, several standard histological staining steps, and routine morphological assessment.

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References

  1. Bancroft, J.D., and Gamble, M., Eds. Theory and Practice of Histological Techniques, 5th edition. Churchill Livingstone, Harcourt Publishers Limited, 2002.

    Google ScholarĀ 

  2. Junqueira, L.C., Carneiro, J., and Kelley, R.O. Basic Histology, 8th edition. Appleton & Lange, A Simon & Schuster Company, 1995.

    Google ScholarĀ 

  3. Seifert, P., Rogers, C., and Edelman, E.R. Histological and immunohistological methods for vascular animal model studies. In: Contemporary Cardiology: Vascular Disease and Injury: Preclinical Research, Simon, D., and Rogers, C., Eds. Humana Press, 2001.

    Google ScholarĀ 

  4. Tulis, D.A., Durante, W., Peyton, K.J., Chapman, G.B., Evans, A.J., and Schafer, A.I. (2000) YC-1, a benzyl indazole derivative, stimulates vascular cGMP and inhibits neointima formation. Biochem. Biophys. Res. Commun. 279, 646ā€“652.

    ArticleĀ  CASĀ  PubMedĀ  Google ScholarĀ 

  5. Clowes, A.W., Reidy, M.A., and Clowes, M.M. (1983) Mechanisms of stenosis after arterial injury. Lab. Invest. 49, 208ā€“215.

    CASĀ  PubMedĀ  Google ScholarĀ 

  6. Clowes, A.W., Clowes, M.M., and Reidy, M.A. (1986) Kinetics of cellular proliferation after arterial injury. III. Endothelial and smooth muscle growth in chronically denuded vessels. Lab. Invest. 54, 295ā€“303.

    CASĀ  PubMedĀ  Google ScholarĀ 

  7. Tulis, D.A., Durante, W., Peyton, K.J., Evans, A.J., and Schafer, A.I. (2001) Heme oxygenase-1 attenuates vascular remodeling following balloon injury in rat carotid arteries. Atherosclerosis 155, 113ā€“122.

    ArticleĀ  CASĀ  PubMedĀ  Google ScholarĀ 

  8. Waynforth, H.B., and Flecknell, P.A., Eds. Experimental and Surgical Technique in the Rat, 2nd edition. Academic Press, A Harcourt Science and Technology Company, 2001.

    Google ScholarĀ 

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Acknowledgments

Work in preparation of this chapter was supported by NHLBI grants HL-59868 and HL-081720 and by a grant from the American Heart Association. The author would like to apologize to investigators whose works were not cited in this report due to space limitations and the personal context in which this chapter was prepared.

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Ā© 2007 Humana Press Inc.

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Tulis, D.A. (2007). Histological and Morphometric Analyses for Rat Carotid Balloon Injury Model. In: Sreejayan, N., Ren, J. (eds) Vascular Biology Protocols. Methods in Molecular Medicineā„¢, vol 139. Humana Press. https://doi.org/10.1007/978-1-59745-571-8_2

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  • DOI: https://doi.org/10.1007/978-1-59745-571-8_2

  • Publisher Name: Humana Press

  • Print ISBN: 978-1-58829-574-3

  • Online ISBN: 978-1-59745-571-8

  • eBook Packages: Springer Protocols

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