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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Platelet adhesion onto segmented polyurethane surfaces modified by PEO- and sulfonated PEO-containing block copolymer additives.
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Platelet adhesion onto segmented polyurethane surfaces modified by PEO- and sulfonated PEO-containing block copolymer additives.

机译:血小板粘附到经PEO和磺化的含PEO的嵌段共聚物添加剂改性的分段聚氨酯表面上。

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摘要

Polyethylene oxide (PEO) surfaces were prepared by the addition of PEO- and sulfonated PEO-containing amphiphilic block copolymers as surface-modifying additives in a segmented polyurethane (PU). PEO-PPO-PEO triblock copolymers (Pluronics) with different PEO chain lengths (from 2 to 80) were used as additives. The prepared film surfaces were characterized by the measurement of dynamic water contact angles and electron spectroscopy for chemical analysis. It was observed that the PU films containing 10 wt% of PEO additives were surface-saturated with the additives regardless of their PEO chain length, but the PEO chains were more projected from the film surfaces containing the additives with longer PEO chains. The water absorption of the films increased largely with the increasing PEO chain length of the additives. The addition of PEO additives produced film surfaces that were in a gel-like state. The films demonstrated some extraction of the PEO additives. However, the additives with higher molecular weights were entrapped more stably into the PU matrix. The mechanical properties (tensile strength and elongation) of the films were changed by the addition of PEO additives, but the differences were not significant compared to the control PU. The platelet adhesion on the film surfaces decreased with increasing PEO chain length of the additives. The film surface containing additives with long PEO chains (chain length of 80) was particularly effective in preventing platelet adhesion. The effect of negatively charged sulfonate groups on the prevention of platelet adhesion appeared only on the film surfaces containing additives with short PEO chains. For longer PEO chains, the chain mobility effect was more dominant than the negative charge effect on the prevention of platelet adhesion.
机译:通过在链段聚氨酯(PU)中添加PEO和磺化的含PEO的两亲嵌段共聚物作为表面改性添加剂来制备聚环氧乙烷(PEO)表面。使用具有不同PEO链长(2至80)的PEO-PPO-PEO三嵌段共聚物(Pluronics)作为添加剂。通过动态水接触角的测量和用于电子分析的电子光谱对制备的膜表面进行表征。观察到,包含10wt%PEO添加剂的PU膜无论其PEO链长如何都被添加剂表面饱和,但是PEO链从包含具有更长PEO链的添加剂的膜表面更突出。膜的吸水率随着添加剂的PEO链长度的增加而大大增加。 PEO添加剂的加入产生的膜表面呈凝胶状。薄膜显示出一些PEO添加剂的提取。然而,具有较高分子量的添加剂更稳定地被捕获到PU基质中。薄膜的机械性能(拉伸强度和伸长率)通过添加PEO添加剂而改变,但与对照PU相比,差异并不显着。随着添加剂的PEO链长度增加,膜表面上的血小板粘附性降低。包含具有长PEO链(链长为80)的添加剂的薄膜表面在防止血小板粘附方面特别有效。带负电荷的磺酸盐基团对防止血小板粘附的作用仅出现在含有具有短PEO链的添加剂的薄膜表面上。对于更长的PEO链,在防止血小板粘附方面,链迁移性作用比负电荷作用更重要。

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