首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Technical Note: Preparation of a PEG-grafted phospholipid Langmuir-Blodgett monolayer for blood-compatible material
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Technical Note: Preparation of a PEG-grafted phospholipid Langmuir-Blodgett monolayer for blood-compatible material

机译:技术说明:用于血液相容性材料的PEG接枝磷脂Langmuir-Blodgett单层的制备

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In order to develop a versatile model for blood-compatible materials, we studied morphology and platelet adhesion of a dipalmitoyl-phosphatidylcholine (DPPC) / dipalmitoyl-phosphatidylethano1amine-polyethylene glycol (PEG lipid) mixed monolayer. This monolayer, which mimics the cell membrane structure, consists of two heterogeneous layers, that is, a PEG layer lying on top of a phospholipid monolayer. The DPPC/PEG lipid mixed monolayer was prepared using the Langmuir-Blodgett (LB) Technique. The monolayer was transferred onto a silanized glass substrate by the down-stroke mode, at a surface pressure of 25 mN/m. The transfer efficiency achieved unity at all times. The morphologies of PEG chains on the phospholipid monolayer in water, in a dried state, and in a hydrated state were evaluated using H-A isotherm, ellipsometry, and atomic force microscopy (AEM), respectively. When the concentration of PEG lipid was below 1 mol percent, the PEG chains could cover the DPPC surface completely in water, but not in the dried state. On the other hand, the PEG chains could cover the phospholipid surface completely in a dried state, as well as in water, when the PEG lipid concentration was above 3 mol percent. These PEG chains, showing a brush-type conformation in water, were highly packed and had a bulky structure at the surface in the dried state as well as in the hydrated state. A bulky and extended PEG layer, above 3 mol percent concentration, was greatly effective in the prevention of platelet adhesion.
机译:为了建立适用于血液的材料的通用模型,我们研究了二棕榈酰磷脂酰胆碱(DPPC)/二棕榈酰磷脂酰氨基1胺-聚乙二醇(PEG脂质)混合单层的形态和血小板粘附性。模仿细胞膜结构的单层由两个异质层组成,即位于磷脂单层顶部的PEG层。使用Langmuir-Blodgett(LB)技术制备DPPC / PEG脂质混合单层。在25mN / m的表面压力下通过向下冲程模式将单层转移到硅烷化的玻璃基板上。传输效率始终保持统一。分别使用H-A等温线,椭圆偏振法和原子力显微镜(AEM)评估了水中,干燥状态和水合状态下磷脂单分子层上PEG链的形态。当PEG脂质的浓度低于1mol%时,PEG链可以在水中完全覆盖DPPC表面,但是在干燥状态下不能。另一方面,当PEG脂质浓度高于3摩尔%时,PEG链可以在干燥状态以及在水中完全覆盖磷脂表面。这些在水中呈刷状构象的PEG链高度堆积,并且在干燥状态和水合状态下表面均具有大体积结构。浓度大于3mol%的膨松PEG层在防止血小板粘附方面非常有效。

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