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Circulation. 1995;92:1084-1088

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(Circulation. 1995;92:1084-1088.)
© 1995 American Heart Association, Inc.


Articles

Infiltrates of Activated Mast Cells at the Site of Coronary Atheromatous Erosion or Rupture in Myocardial Infarction

Petri T. Kovanen, MD, PHD; Maija Kaartinen, MD; Timo Paavonen, MD, PHD

From the Wihuri Research Institute (P.T.K., M.K.) and the Department of Pathology, University of Helsinki (T.P.), Finland.

Correspondence to Petri T. Kovanen, MD, PhD, Wihuri Research Institute, Kalliolinnantie 4, 00140 Helsinki, Finland.

Background Erosion and rupture of coronary atheromas are the events preceding the vast majority of acute coronary syndromes. The shoulder regions of atheromas, the sites at which erosion or rupture is most likely to occur, are the sites at which mast cells accumulate. These cells are filled with neutral proteases capable of triggering extracellular matrix degradation via activation of matrix metalloproteinases. To obtain more direct evidence for the participation of mast cells in the acute coronary syndromes, we quantified the numbers of mast cells at eroded or ruptured sites of coronary atheromas in patients who died of myocardial infarction.

Methods and Results In specimens of coronary arteries from 20 patients who had died of acute myocardial infarction, the site of atheromatous erosion or rupture was identified. The specimens were stained with monoclonal antibodies against the two major proteases of mast cells, tryptase and chymase, and against macrophages, T lymphocytes, and smooth muscle cells. At the immediate site of erosion or rupture, mast cells amounted to 6% of all nucleated cells, in the adjacent atheromatous area to 1%, and in the unaffected intimal area to 0.1%. The proportions of these mast cells that were activated, ie, had been stimulated to degranulate and release some of their tryptase and chymase contents, were 86% at the site of erosion or rupture, 63% in the adjacent atheromatous area, and 27% in the unaffected intima. At the site of erosion or rupture, the numbers of macrophages and T lymphocytes were also increased, but the number of smooth muscle cells was decreased.

Conclusions The accumulation of activated mast cells (200-fold more than in the unaffected coronary intima) at the site of atheromatous erosion or rupture suggests that in thrombotic coronary occlusion the role played by mast cells is significant.


Key Words: atherosclerosis • chymase • tryptase • mast cells • atherosclerosis • myocardial infarction




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[Abstract] [Full Text]


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M. Molino, M. J. Woolkalis, J. Reavey-Cantwell, D. Pratico, P. Andrade-Gordon, E. S. Barnathan, and L. F. Brass
Endothelial Cell Thrombin Receptors and PAR-2. TWO PROTEASE-ACTIVATED RECEPTORS LOCATED IN A SINGLE CELLULAR ENVIRONMENT
J. Biol. Chem., April 25, 1997; 272(17): 11133 - 11141.
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M. Molino, E. S. Barnathan, R. Numerof, J. Clark, M. Dreyer, A. Cumashi, J. A. Hoxie, N. Schechter, M. Woolkalis, and L. F. Brass
Interactions of Mast Cell Tryptase with Thrombin Receptors and PAR-2
J. Biol. Chem., February 14, 1997; 272(7): 4043 - 4049.
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CirculationHome page
P. R. Moreno, V. H. Bernardi, J. Lopez-Cuellar, A. M. Murcia, I. F. Palacios, H. K. Gold, R. Mehran, S. K. Sharma, Y. Nemerson, V. Fuster, et al.
Macrophages, Smooth Muscle Cells, and Tissue Factor in Unstable Angina: Implications for Cell-Mediated Thrombogenicity in Acute Coronary Syndromes
Circulation, December 15, 1996; 94(12): 3090 - 3097.
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CirculationHome page
M. Kaartinen, A. Penttila, and P. T. Kovanen
Mast Cells in Rupture-Prone Areas of Human Coronary Atheromas Produce and Store TNF-{alpha}
Circulation, December 1, 1996; 94(11): 2787 - 2792.
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CirculationHome page
M. J. Davies
Stability and Instability: Two Faces of Coronary Atherosclerosis: The Paul Dudley White Lecture 1995
Circulation, October 15, 1996; 94(8): 2013 - 2020.
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NEJMHome page
R. Jaffe and D. Zahger
The Domino Principle
N. Engl. J. Med., August 1, 1996; 335(5): 340 - 341.
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Arch Intern MedHome page
J. A. Ambrose and M. Weinrauch
Thrombosis in Ischemic Heart Disease
Arch Intern Med, July 8, 1996; 156(13): 1382 - 1394.
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CirculationHome page
P. Constantinides
Infiltrates of Activated Mast Cells at the Site of Coronary Atheromatous Erosion or Rupture in Myocardial Infarction
Circulation, September 1, 1995; 92(5): 1083 - 1083.
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Am. J. Physiol. Heart Circ. Physiol.Home page
A. L. Chancey, G. L. Brower, and J. S. Janicki
Cardiac mast cell-mediated activation of gelatinase and alteration of ventricular diastolic function
Am J Physiol Heart Circ Physiol, June 1, 2002; 282(6): H2152 - H2158.
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