Berezhna Lydia G, Ivanov Alexander E, Leistner André, Lehmann Anke, Viloria-Cols Maria, Jungvid Hans
Protista Biotechnology AB, Bjuv, SE-26722, Sweden.
Polymerics GmbH, Berlin, D-12681, Germany.
Prog Biomater. 2013 Feb 21;2(1):4. doi: 10.1186/2194-0517-2-4.
Macroporous monolithic composites with embedded divinylbenzene-styrene (DVB-ST) polymeric particles were prepared by cryogelation techniques using poly(vinyl alcohol) or agarose solutions. Scanning electron microscopy images showed multiple interconnected pores with an average diameter in the range of 4 to 180 μm and quite homogeneous distribution of DVB-ST particles in the composites. Biocompatibility of the composites was assessed by estimation of the C5a fragment of complement in the blood serum and concentration of fibrinogen in the blood plasma which contacted the composites. A time-dependent generation of C5a fragment indicated weak activation of the complement system. At the same time, the difference in fibrinogen concentration, one of the most important proteins in the coagulation system of the blood, between the pristine blood plasma and the plasma, circulated through the monolithic columns, was insignificant.
采用聚乙烯醇或琼脂糖溶液,通过冷冻凝胶化技术制备了嵌入二乙烯基苯 - 苯乙烯(DVB - ST)聚合物颗粒的大孔整体复合材料。扫描电子显微镜图像显示,复合材料中有多个相互连通的孔,平均直径在4至180μm范围内,且DVB - ST颗粒在复合材料中分布相当均匀。通过评估与复合材料接触的血清中补体C5a片段和血浆中纤维蛋白原的浓度,来评价复合材料的生物相容性。C5a片段随时间的生成表明补体系统的激活较弱。同时,血液凝固系统中最重要的蛋白质之一——纤维蛋白原,在原始血浆和通过整体柱循环的血浆之间的浓度差异不显著。