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中性粒细胞在含磷酸胆碱的聚氨酯上的黏附

Neutrophil adhesion on phosphorylcholine-containing polyurethanes.

作者信息

Yung L Y, Cooper S L

机构信息

Department of Chemical Engineering, University of Delaware, Newark 19716, USA.

出版信息

Biomaterials. 1998 Jan-Feb;19(1-3):31-40. doi: 10.1016/s0142-9612(97)00220-2.

Abstract

Polyurethanes have been synthesized using glycerophosphorylcholine (GPC) as a chain extender. By altering the ratio of GPC to butanediol (BD), a series of polymers was obtained composed of different contents of phosphorylcholine. Bulk and surface characterization of the polymers was carried out. Differential scanning calorimetry and dynamic mechanical analysis showed that the polymer with the highest phosphorylcholine content (PU-GPC-20) had the lowest soft segment Tg and the highest tensile strength and Young's modulus among the polymers studied. This is due to the high degree of microphase separation in PU-GPC-20 as a result of by ionic aggregation and hydrogen bonding from the zwitterionic phosphorylcholine moiety. PU-GPC-20 contained approximately 20 wt%, of glycerophosphorylcholine. Dynamic contact angle analysis showed that these polymers, especially the ones with high phosphorylcholine content, rearranged themselves to minimize their interfacial tension upon contacting an aqueous environment. Under shear rates of from 20 to 120 s(-1), neutrophils did not adhere to PU-GPC-20. Under similar conditions neutrophil adhesion was observed only at 20 s(-1) on PU-GPC-10, PU-GPC-5 and on the control polyurethane (PU-base). Cell spreading was observed on the control polyurethane but not on any of the other surfaces. The incorporation of phosphorylcholine into the polyurethane backbone effectively reduced neutrophil adhesion and thus potentially could result in lower inflammatory and foreign body responses.

摘要

已使用甘油磷酰胆碱(GPC)作为扩链剂合成了聚氨酯。通过改变GPC与丁二醇(BD)的比例,获得了一系列由不同含量的磷酰胆碱组成的聚合物。对这些聚合物进行了本体和表面表征。差示扫描量热法和动态力学分析表明,在所研究的聚合物中,磷酰胆碱含量最高的聚合物(PU-GPC-20)具有最低的软段玻璃化转变温度、最高的拉伸强度和杨氏模量。这是由于PU-GPC-20中由于两性离子磷酰胆碱部分的离子聚集和氢键作用而具有高度的微相分离。PU-GPC-20含有约20 wt%的甘油磷酰胆碱。动态接触角分析表明,这些聚合物,尤其是磷酰胆碱含量高的聚合物,在接触水性环境时会重新排列以最小化其界面张力。在20至120 s(-1)的剪切速率下,中性粒细胞不粘附于PU-GPC-20。在类似条件下,仅在20 s(-1)时在PU-GPC-10、PU-GPC-5和对照聚氨酯(PU-base)上观察到中性粒细胞粘附。在对照聚氨酯上观察到细胞铺展,但在其他任何表面上均未观察到。将磷酰胆碱引入聚氨酯主链有效地减少了中性粒细胞的粘附,因此有可能导致更低的炎症和异物反应。

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