Identical atherosclerotic lesions in identical twins.
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Biomedical subjects
Publications and source records attributed to J M Abukhalil.
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BACKGROUND: Thrombin-mediated vascular smooth muscle cell proliferation has been implicated in coronary restenosis. Attempts to inhibit this mitogenic activity have recently focused on non-physiologic direct thrombin inhibitors, whereas endogenous thrombin inhibitors such as antithrombin III (ATIII) have received little attention. ATIII is the main physiologic inhibitor of thrombin and may thus be a potential therapeutic agent for prevention of restenosis. METHODS: Human ATIII (125 U/kg) and heparin (200 U/kg) were administered to 12 atherosclerotic swine 30 min prior to inducing restenosis by oversized stent (left anterior descending and right coronary arteries; stent-to-artery ratio approximately 1.2) and balloon injury (circumflex; balloon artery ratio approximately 1.2). Eleven control swine received only heparin every 6 h for 24 h and were subjected to similar stent and balloon injury. Quantitative coronary angiography [change in minimal lumen diameter (delta MLD)] and morphometric analysis [percentage area stenosis (PAS)] were performed 4 weeks later. RESULTS: ATIII activity (mean +/- SD) of treated swine increased from a baseline of 103 +/- 10% to a peak of 266 +/- 48%, whereas trough levels were maintained at 259 +/- 55% for 72 h by drug infusions every 6 h. The delta MLD, the primary angiographic endpoint in the balloon injured vessel was -0.57 +/- 0.33 mm in heparin group versus -0.26 +/- 0.27 mm in the ATIII group (P < or = 0.03). For stented vessels the delta MLD was -0.61 +/- 0.33 mm in the heparin group versus -0.41 +/- 0.37 mm in the ATIII group (P < or = 0.06). The PAS for the balloon injured vessels was 30 +/- 12% in the heparin group versus 19 +/- 14 in the ATIII group (P < or = 0.06). In stented vessels the PAS was 45 +/- 16% in the heparin group versus 38 +/- 16% in the ATIII group (P < or = 0.1). CONCLUSION: Supraphysiologic ATIII levels in combination with heparin inhibits the reduction in MLD in coronary arteries subjected to oversized balloon injury and demonstrates a beneficial trend in arteries subjected to oversized stent injury. These data provide cautious optimism for further investigation with ATIII to prevent coronary restenosis.
Side branch occlusion may occur in the course of percutaneous transluminal coronary angioplasty (PTCA), particularly if complicated by site dissection. Concern that the additional placement of a stent may further jeopardize side branches is logical. Consequently, this study analyzed pre-PTCA, post-PTCA, poststent, and 6-month follow-up angiograms of 100 consecutive patients in whom 103 Gianturco-Roubin stents were implanted for acute or threatened closure after PTCA. Side branches were defined as major (> 50% of the stented vessel diameter) and minor (< 50%). Minor branches, often < 1 mm in diameter, were assessed only for patency. One hundred eight major branches, of which 33 were diseased (> 50% stenosis), and 129 minor branches were analyzed. Seven major branches (6%), all of which were diseased before PTCA, and 23 minor branches (18%) were lost after PTCA. Immediately after stent insertion, only 1 additional major and 1 minor branch were lost, whereas 2 of 7 major (29%) and 9 of 23 minor (39%) branches reappeared. At follow-up angiography, 7 major branches (6%) were more stenosed and 6 (6%) were improved compared with the angiogram before PTCA. Only 2 major (2%) and 5 minor (4%) branches remained occluded. Additionally, 2 major and 1 minor branch, which were patent after PTCA and stenting, were occluded at follow-up as a result of total occlusion of the stented segment.(ABSTRACT TRUNCATED AT 250 WORDS)
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Over the last few years, there has been a growing interest in digital processing of coronary angiograms to derive precise quantitative measurements on the severity of coronary stenoses. A reliable computer assisted, fully automated edge-detection technique has been developed to assess absolute coronary arterial dimensions from 35 mm cineangiograms. A region of interest to be analyzed is optically magnified and video-digitized prior to the automated contour detection. Contour positions are corrected for pin-cushion distortion.