Zhu Junmin, Marchant Roger E
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Biomacromolecules. 2006 Apr;7(4):1036-41. doi: 10.1021/bm050611p.
Here, we report on the synthesis of dendritic saccharide surfactant polymers as antifouling interface materials to reduce platelet adhesion. An acetal-protected poly(amidoamine) (PAMAM) dendron (5, G = 2) was first synthesized by using aminoacetaldehyde dimethyl acetal (1) as the starting material to provide a monovalent focal structure with dimethyl acetal-protected aldehyde functionality. Maltose dendron (M4, 6) was obtained by reacting the peripheral amine groups of acetal-dendron (5) with maltonolactone. The dendritic surfactant polymers (9) were then synthesized via a two-step method by sequential addition of maltose dendron and hexanal to react with the amine groups on the poly(vinylamine) (PVAm) backbone. Surface activity of the amphiphilic glycopolymers at the air/water interface was demonstrated by reduction in water surface tension. Adsorption of the amphiphilic glycopolymers at the solid/water interface was examined on octadecyltrichlorosilane (OTS)-coated coverslips by water contact angle measurements. A nanoscale understanding of surface-induced self-assembly of the dendritic surfactant polymer on highly oriented pyrolytic graphite (HOPG) was gained using AFM operated in fluid tapping mode. A lateral ordering of adsorbing surfactant polymer was visualized with a pattern in strands 60 degrees out of alignment. The static platelet adhesion tests show that the hexyl side chains can facilitate adsorption of the surfactant polymers onto hydrophobic substrates, while the maltose dendron side chains can provide a dense canopy of protective glycocalyx-like layer as an antifouling interface to reduce platelet adhesion.
在此,我们报道了树枝状糖类表面活性剂聚合物作为防污界面材料以减少血小板黏附的合成方法。首先,以氨基乙醛二甲基缩醛(1)为起始原料合成了一种缩醛保护的聚(酰胺胺)(PAMAM)树枝状分子(5,G = 2),以提供具有二甲基缩醛保护醛官能团的单价核心结构。通过使缩醛树枝状分子(5)的外围胺基与麦芽糖醇内酯反应得到麦芽糖树枝状分子(M4,6)。然后通过两步法依次加入麦芽糖树枝状分子和己醛与聚乙烯胺(PVAm)主链上的胺基反应,合成了树枝状表面活性剂聚合物(9)。两亲性糖聚合物在空气/水界面的表面活性通过水表面张力的降低得以证明。通过水接触角测量在十八烷基三氯硅烷(OTS)涂层盖玻片上研究了两亲性糖聚合物在固/水界面的吸附。使用在流体敲击模式下操作的原子力显微镜(AFM)对树枝状表面活性剂聚合物在高度取向热解石墨(HOPG)上的表面诱导自组装进行了纳米级理解。观察到吸附的表面活性剂聚合物的横向有序排列呈现出60度错位的条纹图案。静态血小板黏附试验表明,己基侧链可促进表面活性剂聚合物在疏水基质上的吸附,而麦芽糖树枝状分子侧链可提供致密的类糖萼保护层作为防污界面以减少血小板黏附。