Fukuda Chihiro, Yahata Chie, Kinoshita Takuya, Watanabe Takafumi, Tsukamoto Hideo, Mochizuki Akira
a Department of Bio-Medical Engineering, School of Engineering , Tokai University , Isehara , Japan.
J Biomater Sci Polym Ed. 2017 Oct;28(14):1572-1587. doi: 10.1080/09205063.2017.1335938. Epub 2017 Jun 5.
It is well known that polyether-based copolymers have good blood compatibility, although many mechanisms have been proposed to explain their favorable performance. Our objective in carrying out the present study was to obtain a better understanding of the effect of the (poly)ether segment on blood compatibility. Therefore, we synthesized poly(propylene glycol) (PPG)-based initiators for atom transfer polymerization, where the number of propylene glycol (PG) units in the PPG (Pn(PG) was varied from 1 to 94. Methyl methacrylate (MMA) was polymerized using the initiators, resulting in the formation of polyMMAs with a PG-based ether part at the polymer terminal. We mainly investigated the effects of Pn(PG) on the surface properties and platelet compatibility of the PPG-polyMMA. X-ray photoelectron spectroscopy and surface contact angle (CA) analysis revealed the exposure of the PG units at the surface of the polymer. The platelet compatibility of the polymers was improved compared with a commercial polyMMA, even when Pn(PG) = 1. These results suggest that PG units have an important influence on favorable blood compatibility, regardless of the Pn(PG) value. We also investigated protein adsorption behavior in terms of the amount and deformation of fibrinogen adsorbed on the polymer surface.
众所周知,聚醚基共聚物具有良好的血液相容性,尽管已经提出了许多机制来解释它们的良好性能。我们进行本研究的目的是更好地了解(聚)醚链段对血液相容性的影响。因此,我们合成了用于原子转移聚合的聚丙二醇(PPG)基引发剂,其中PPG中丙二醇(PG)单元的数量(Pn(PG))从1变化到94。使用这些引发剂使甲基丙烯酸甲酯(MMA)聚合,从而在聚合物末端形成带有基于PG的醚部分的聚甲基丙烯酸甲酯(polyMMA)。我们主要研究了Pn(PG)对PPG-polyMMA的表面性质和血小板相容性的影响。X射线光电子能谱和表面接触角(CA)分析表明PG单元在聚合物表面暴露。即使当Pn(PG) = 1时,与市售聚甲基丙烯酸甲酯相比,聚合物的血小板相容性也得到了改善。这些结果表明,无论Pn(PG)值如何,PG单元对良好的血液相容性都有重要影响。我们还从吸附在聚合物表面的纤维蛋白原的量和变形方面研究了蛋白质吸附行为。