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Surface wettability and platelet adhesion studies on Langmuir-Blodgett films

机译:Langmuir-Blodgett膜的表面润湿性和血小板粘附性研究

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Because Langmuir-Blodgett (LB) deposition technique is known to be capable of preparing highly ordered monomolecular films with densely packed structure, LB technique is used to prepare films of DPPC, DMPC, cholesterol, octadecylamine (ODA), and stearic acid, with thickness of one molecular layer. The film surfaces were characterized by dynamic contact angle measurement and the interaction between blood and these materials were investigated. The properties of LB films were also compared with the results obtained on continuous films prepared by solution dipping. The results show that the contact angles of water on LB films of the five compounds decreases as the following order: ODA > DMPC approximate to DPPC > stearic acid > cholesterol. The hydrophobic property reflects the highest organization of ODA molecules on the substrate, which is related to its interaction between the molecule and substrate. The advancing contact angle of ODA is equivalent to that of a methyl-terminated SAM, but its receding contact angle is smaller which implies the exposing of hydrophilic pole or glass substrate on LB film. The irregular orientation of molecules on LB film increases with decreasing of contact angle and is especially significant on LB film of cholesterol which has highest hydrophilic property. The plate adhesion experiments on the continuous films show that the hemocompatibility of the five materials decreases as the order: DPPC approximate to DMPC > ODA > cholesterol > stearic acid approximate to glass. This result implies that the lipid has highest blood compatibility, and then -NH2, and then -OH functionality. On the contrary, the glass surface, -COOH and -CH3 functionalities have high reactivity to platelet. Due to the possibility of glass exposure on LB films, as estimated from the surface wettability, the LB films have higher platelet reactivity, especially for the cholesterol, compared with the continuous films. Because the interaction of the LB film to the substrate is physical force, the deposited molecules may be peeled off from the substrate by dipping in Hepes-Tyrodes buffer solution. As a consequence, the LB films after equilibrating with Hepes-Tyrodes buffer solution have high platelet reactivity as that on glass surface. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 44]
机译:因为已知Langmuir-Blodgett(LB)沉积技术能够制备具有致密堆积结构的高度有序的单分子薄膜,所以LB技术用于制备厚度较厚的DPPC,DMPC,胆固醇,十八烷基胺(ODA)和硬脂酸薄膜一个分子层。通过动态接触角测量表征膜表面,并研究血液与这些材料之间的相互作用。还将LB膜的性能与通过溶液浸渍制备的连续膜获得的结果进行了比较。结果表明,水在五种化合物的LB膜上的接触角按以下顺序减小:ODA> DMPC近似于DPPC>硬脂酸>胆固醇。疏水性反映了ODA分子在底物上的最高结构,这与其在分子和底物之间的相互作用有关。 ODA的前进接触角与甲基封端的SAM相等,但其后退接触角较小,这意味着亲水性电极或玻璃基板会暴露在LB膜上。 LB膜上分子的不规则取向随着接触角的减小而增加,在亲水性最高的胆固醇LB膜上尤为重要。连续膜上的板粘附实验表明,五种材料的血液相容性按以下顺序降低:DPPC近似于DMPC> ODA>胆固醇>硬脂酸近似于玻璃。该结果暗示脂质具有最高的血液相容性,然后是-NH 2,然后是-OH。相反,玻璃表面,-COOH和-CH3官能团对血小板具有高反应性。从表面润湿性估计,由于玻璃可能暴露在LB膜上,因此与连续膜相比,LB膜具有更高的血小板反应性,尤其是胆固醇。因为LB膜与底物的相互作用是物理力,所以可以通过浸入Hepes-Tyrodes缓冲溶液中将沉积的分子从底物上剥离下来。结果,用Hepes-Tyrodes缓冲溶液平衡后的LB膜具有与玻璃表面一样高的血小板反应性。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:44]

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