Albumin coatings resistant to shear-induced desorption.

S D Riccitelli, R G Schlatterer, J A Hendrix, G B Williams, R C Eberhart
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Abstract

Using an immunoferritin-transmission electron microscopic technique, we studied the effects of C18 alkylation and fluid shear on the distribution of albumin absorbed to a segmented polyether polyurethane. Samples were exposed to 25 mg/dl albumin solution at 0, 100 or 1500 s-1 wall shear rate for 1 min. Others underwent static incubation with albumin solution for 20 mins, followed by exposure to phosphate buffered saline at 0, 100 or 1500 s-1 for 1 min. Significant increases in uniformity and density of the albumin adsorbate were observed for all C18 alkylated surfaces, at all wall shear rates. C18 alkylation also significantly decreased the rate of shear-induced desorption of albumin. Results suggest that C18 treatment may promote the rapid development and retention of an endogenous albumin layer for blood contacting materials.

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抗剪切脱附的白蛋白涂层。
采用免疫铁蛋白透射电镜技术,研究了C18烷基化和流体剪切对聚醚聚氨酯吸附白蛋白分布的影响。将样品以0,100或1500 s-1的壁剪切速率暴露于25mg /dl白蛋白溶液中1分钟。其他样品在白蛋白溶液中静态培养20分钟,然后以0,100或1500 s-1的壁剪切速率暴露于磷酸盐缓冲盐水中1分钟。所有C18烷基化表面在所有壁剪切速率下观察到白蛋白吸附物的均匀性和密度显著增加。C18烷基化也显著降低了剪切解吸白蛋白的速率。提示C18处理可促进血液接触材料内源性白蛋白层的快速发育和保留。
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