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American Journal of Pathology, Vol 152, 885-888, Copyright © 1998 by American Society for Investigative Pathology
REGULAR ARTICLES |
MM Kockx, J Muhring, MW Knaapen and GR de Meyer
Department of Pathology A.Z. Middelheim, Antwerp, Belgium. mark.kockx@uia.ua.ac.be
The detection of DNA fragmentation by the use of the TUNEL technique has become a standard technique for the detection of apoptosis in tissue sections. DNA cleavage, detected by the TUNEL technique, is the last irreversible stage of the apoptosis cascade. When the nuclear DNA is cleaved in oligonucleosomal-sized fragments, processes such as transcription are completely abolished. The values of apoptotic cell death that were obtained for atherosclerotic plaques by the TUNEL technique ranged from less than 2% up to 60%. The latter value would indicate that plaques are in an imminent state of collapse, which is certainly not the case. Other factors that could result in TUNEL labeling have to be considered. Therefore, we developed a co- localization system and studied TUNEL labeling together with markers of RNA transcription and splicing. The present study demonstrates that, besides apoptotic nuclei, non-apoptotic nuclei that show signs of active gene transcription are labeled by the TUNEL technique. The fact that the TUNEL technique is not specific for the executive phase of apoptosis is not surprising, as the technique is only selective (rather than specific) for apoptotic nuclei as these contain a far greater degree of DNA fragmentation than non-apoptotic nuclei. Therefore, we think that the TUNEL technique should be combined with additional techniques, such as markers of transcription and morphological criteria.
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E. Lutgens, E. D. de Muinck, P. J.E.H.M. Kitslaar, J. H.M. Tordoir, H. J.J. Wellens, and M. J.A.P. Daemen Biphasic pattern of cell turnover characterizes the progression from fatty streaks to ruptured human atherosclerotic plaques Cardiovasc Res, February 1, 1999; 41(2): 473 - 479. [Abstract] [Full Text] [PDF] |
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Z. Mallat, B. Hugel, J. Ohan, G. Leseche, J.-M. Freyssinet, and A. Tedgui Shed Membrane Microparticles With Procoagulant Potential in Human Atherosclerotic Plaques : A Role for Apoptosis in Plaque Thrombogenicity Circulation, January 26, 1999; 99(3): 348 - 353. [Abstract] [Full Text] [PDF] |
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E. L. Henderson, Y.-J. Geng, G. K. Sukhova, A. D. Whittemore, J. Knox, and P. Libby Death of Smooth Muscle Cells and Expression of Mediators of Apoptosis by T Lymphocytes in Human Abdominal Aortic Aneurysms Circulation, January 12, 1999; 99(1): 96 - 104. [Abstract] [Full Text] [PDF] |
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M. M. Kockx Apoptosis in the Atherosclerotic Plaque : Quantitative and Qualitative Aspects Arterioscler. Thromb. Vasc. Biol., October 1, 1998; 18(10): 1519 - 1522. [Abstract] [Full Text] [PDF] |
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Z. Mallat, A. Tedgui, M. M. Kockx, and M. W.M. Knaapen Am. J. Pathol., October 1, 1998; 153(4): 1320 - 1321. [Full Text] [PDF] |
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W. Martinet, M. W. M. Knaapen, G. R. Y. De Meyer, A. G. Herman, and M. M. Kockx Oxidative DNA Damage and Repair in Experimental Atherosclerosis Are Reversed by Dietary Lipid Lowering Circ. Res., April 13, 2001; 88(7): 733 - 739. [Abstract] [Full Text] [PDF] |
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