Duval P, Flan B, Burnouf T, Huart J J
Laboratoire de Contrôle Qualité, Centre Régional de Transfusion Sanguine, Lille.
Ann Pharm Fr. 1994;52(1):43-52.
Rheological properties of one of the main fibrin glues, "Biocol-Thrombine Humaine", prepared by the Regional Blood Transfusion Center of Lille (France) were measured with a CSL controlled stress rheometer using cone-plates and parallel plates. The parameters followed were the dynamic viscosity of the fibrinogen concentrate, the gelification time, the breaking point in a destructive test and the development of elasticity of the fibrin clots according to time or frequency. The results showed that the fibrinogen concentrate of "Biocol-Thrombine Humaine" has a flow curve near that of Newtonian flow, and that its dynamic viscosity at 20 degrees C is about 100 mPa.s. The gelification time of the fibrinogen-thrombin mixture is very short (under 10 seconds). The breaking point is high, showing a great strength of the fibrin clots. The development of elasticity after mixing is very quick. It is also independent of the frequency shearing. The validation of these rheological tests provides data supporting their use in the assessment of the physical properties of fibrin glue in place of the currently used test based on the gluing of mouse skin.
由法国里尔地区输血中心制备的一种主要纤维蛋白胶“Biocol - 人凝血酶”的流变学特性,使用CSL控制应力流变仪,通过锥板和平行板进行测量。所遵循的参数包括纤维蛋白原浓缩物的动态粘度、凝胶化时间、破坏性试验中的断裂点以及纤维蛋白凝块弹性随时间或频率的发展情况。结果表明,“Biocol - 人凝血酶”的纤维蛋白原浓缩物具有接近牛顿流体的流动曲线,其在20摄氏度时的动态粘度约为100毫帕斯卡·秒。纤维蛋白原 - 凝血酶混合物的凝胶化时间非常短(不到10秒)。断裂点很高,表明纤维蛋白凝块具有很大的强度。混合后弹性的发展非常迅速。它也与剪切频率无关。这些流变学测试的验证提供了数据,支持它们用于评估纤维蛋白胶的物理性质,以取代目前基于小鼠皮肤粘贴的测试。