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一种重组弹性蛋白模拟涂层的ePTFE假体对狒狒动静脉分流急性血栓形成的影响。

The effect of a recombinant elastin-mimetic coating of an ePTFE prosthesis on acute thrombogenicity in a baboon arteriovenous shunt.

作者信息

Jordan Sumanas W, Haller Carolyn A, Sallach Rory E, Apkarian Robert P, Hanson Stephen R, Chaikof Elliot L

机构信息

Department of Surgery, Emory University, Atlanta, GA 30332, USA.

出版信息

Biomaterials. 2007 Feb;28(6):1191-7. doi: 10.1016/j.biomaterials.2006.09.048. Epub 2006 Nov 7.

Abstract

A recombinant elastin-mimetic triblock protein polymer with an inverse transition temperature (approximately 20 degrees C) was used to impregnate small-diameter (4 mm i.d.) expanded polytetrafluoroethylene (ePTFE) vascular grafts. Scanning electron microscopy confirmed that initial elastin impregnation of the graft followed by further multilayer coating with elastin films filled in the fibril and node structure of the luminal surface of the ePTFE graft and was macroscopically smooth. Elastin protein polymer impregnation reduced the advancing contact angle of the luminal surface to 43 degrees, which was comparable to the advancing contact angle of 47 degrees for a cast elastin film. Attenuated total reflection infrared spectroscopy and Coomassie blue staining revealed little discernable change in the protein surface film after 24 h of shear at 500 s(-1) and 37 degrees C. Excellent short-term blood-contacting properties as determined by minimal fibrin and platelet deposition were demonstrated using a baboon extracorporeal femoral arteriovenous shunt model. The results of this study demonstrate the applicability of an elastin-mimetic triblock protein polymer as a non-thrombogenic coating or as a component of a tissue-engineered composite.

摘要

一种具有逆转变温度(约20摄氏度)的重组弹性蛋白模拟三嵌段蛋白聚合物被用于浸渍小直径(内径4毫米)的膨体聚四氟乙烯(ePTFE)血管移植物。扫描电子显微镜证实,移植物最初用弹性蛋白浸渍,随后用弹性蛋白膜进行进一步的多层涂层,填充了ePTFE移植物管腔表面的原纤维和结节结构,宏观上表面光滑。弹性蛋白蛋白聚合物浸渍使管腔表面的前进接触角降低到43度,这与浇铸弹性蛋白膜47度的前进接触角相当。衰减全反射红外光谱和考马斯亮蓝染色显示,在500 s(-1) 和37摄氏度下剪切24小时后,蛋白质表面膜几乎没有明显变化。使用狒狒体外股动脉静脉分流模型证明,通过最小的纤维蛋白和血小板沉积确定其具有优异的短期血液接触性能。本研究结果证明了弹性蛋白模拟三嵌段蛋白聚合物作为非血栓形成涂层或组织工程复合材料成分的适用性。

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