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新型亮菌素NPC 15669对猪心肌顿抑和预处理梗死面积的影响

Effects of a Novel Leumedin NPC 15669 on Myocardial Stunning and Preconditioned Infarction Size in Swine.

作者信息

Herzog WR, Gurbel PA, Vogel RA, Schlossberg ML, Schneider AI, Serebruany VL

机构信息

Department of Medicine, Division of Cardiology, University of Maryland Medical Center, Baltimore, MD.

出版信息

J Thromb Thrombolysis. 1995;1(2):163-170. doi: 10.1007/BF01062574.

Abstract

Background: NPC is a member of the leumedins and is an inhibitor of leukocyte adhesion to endothelium via blockage of integrin binding. NPC 15669 also may have antiplatelet effects. We tested the efficacy of the novel leukocyte recruitment inhibitor NPC 15669 on myocardial stunning (MS) and preconditioned myocardial infarction (MI). Methods and Results: In an open-chested swine model, NPC 15669 (10 rng NPC/kg loading dose followed by constant infusion at 6 mg/kg/hr) was administered in six animals. Myocardial thickening (MT) was determined by epicardial ultrasound. The left anterior descending artery was occluded for 8 minutes followed by 90 minutes of reperfusion, during which myocardial MT was recorded at regular intervals. We have found that treatment with NPC 15669 increases myocardial contractility and significantly decreases MS time compared to controls (26.7 +/- 4.0 minutes vs. 50.0 +/- 4.3 minutes, p =.0026). In NPC 15669-treated animals we observed a reduction of MI size (23.4 +/- 6.7% of tissue at risk became necrotic compared to 53.0 +/- 6.6% in controls, p =.0102). Conclusions: Our data suggest that NPC 15669 significantly reduces myocardial injury in both the stunning and infarction models.

摘要

背景

NPC是亮菌素家族的成员,是一种通过阻断整合素结合来抑制白细胞与内皮细胞黏附的物质。NPC 15669也可能具有抗血小板作用。我们测试了新型白细胞募集抑制剂NPC 15669对心肌顿抑(MS)和预处理心肌梗死(MI)的疗效。方法与结果:在开胸猪模型中,对6只动物给予NPC 15669(10mg NPC/kg负荷剂量,随后以6mg/kg/小时持续输注)。通过心外膜超声测定心肌增厚(MT)。左前降支动脉闭塞8分钟,然后再灌注90分钟,在此期间定期记录心肌MT。我们发现,与对照组相比,NPC 15669治疗可增加心肌收缩力并显著缩短MS时间(26.7±4.0分钟对50.0±4.3分钟,p = 0.0026)。在接受NPC 15669治疗的动物中,我们观察到梗死面积减小(有风险组织的23.4±6.7%发生坏死,而对照组为53.0±6.6%,p = 0.0102)。结论:我们的数据表明,NPC 15669在顿抑和梗死模型中均能显著减轻心肌损伤。

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