Suppr超能文献

大鼠肠系膜血管中的激光诱导血栓及抗血栓药物

Laser-induced thrombi in rat mesenteric vessels and antithrombotic drugs.

作者信息

Weichert W, Pauliks V, Breddin H K

出版信息

Haemostasis. 1983;13(1):61-71. doi: 10.1159/000214704.

Abstract

A method to induce microthrombi in small mesenteric arteries (phi 15-25 microns) has been developed to study platelet reactions and to investigate antithrombotic drugs. A high power water immersion interference contrast system, based on a Leitz Orthoplan microscope, was used. In Nembutal-anesthetized male Wistar rats and in fawn hooded bleeder rats, vascular lesions were produced with a Hadron-512-Ruby-bio-laser or with a Coherent CR-2 supergraphite ion laser (Argon laser). The ruby laser produced intravascular precipitates consisting of proteins and erythrocytes which usually stuck to the vessel wall and on which platelets immediately adhered, transformed with pseudopode formation and formed loose aggregates. The Argon laser induced vascular damage, usually without intravascular heat precipitates which also led to platelet adhesion, transformation and aggregation. Fibrin threads rarely formed in the early platelet thrombi. Thrombus formation was significantly reduced in this model by dipyridamole (10 mg/kg orally), by Ditazole (50 mg/kg orally), heparin (100 IU/kg i.v.), Molsidomine (50 mg/kg orally), Nafazatrom (Bay G 6575, 10 mg/kg i.v. and orally), Ticlopidine (100 and 200 mg/kg orally) and Tioxaprofen (EMD 26644, 10 mg/kg orally). Thrombus formation was also significantly reduced in fawn hooded bleeder rats.

摘要

已开发出一种在小肠系膜动脉(直径15 - 25微米)中诱导微血栓形成的方法,用于研究血小板反应和研究抗血栓药物。使用了基于徕卡正置显微镜的高倍水浸干涉对比系统。在戊巴比妥麻醉的雄性Wistar大鼠和淡褐色带帽出血大鼠中,用强子512 - 红宝石生物激光或相干CR - 2超石墨离子激光(氩激光)产生血管损伤。红宝石激光产生由蛋白质和红细胞组成的血管内沉淀物,这些沉淀物通常附着在血管壁上,血小板立即粘附其上,通过伪足形成进行转化并形成松散聚集体。氩激光诱导血管损伤,通常不会产生血管内热沉淀物,但也会导致血小板粘附、转化和聚集。在早期血小板血栓中很少形成纤维蛋白丝。在该模型中,双嘧达莫(口服10毫克/千克)、地他唑(口服50毫克/千克)、肝素(静脉注射100国际单位/千克)、吗多明(口服50毫克/千克)、萘呋胺酯(Bay G 6575,静脉注射和口服10毫克/千克)、噻氯匹定(口服100和200毫克/千克)和替诺昔康(EMD 26644,口服10毫克/千克)可显著减少血栓形成。在淡褐色带帽出血大鼠中血栓形成也显著减少。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验