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Creation of a blood-compatible surface: A novel strategy for suppressing blood activation and coagulation using a nitroxide radical-containing polymer with reactive oxygen species scavenging activity

机译:创造血液相容性表面:使用具有活性氧清除能力的含亚硝基自由基的聚合物抑制血液活化和凝结的新策略

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摘要

Various polymeric materials have been used in medical devices, including blood-contacting artificial organs. Contact between blood and foreign materials causes blood cell activation and adhesion, followed by blood coagulation. Concurrently, the activated blood cells release inflammatory cytokines together with reactive oxygen species (ROS). We have hypothesized that the suppression of ROS generation plays a crucial role in blood activation and coagulation. To confirm this hypothesis, surface-coated polymers containing nitroxide radical compounds (nitroxide radical-containing polymers (NRP)) were designed and developed. The NRP was composed of a hydrophobic poly(chloromethylstyrene) (PCMS) chain to which 2,2,6,6-tetramethylpiperidine-N-oxyl (TEMPO) moieties were conjugated via condensation reaction of the chloromethyl groups in PCMS with the sodium alcoholate group of 4-hydroxy-TEMPO. Blood compatibility was investigated by placing NRP-coated beads in contact with rat whole blood. The amount of ROS generated on PCMS-coated beads used as a control increased significantly with time, while NRP-coated beads suppressed ROS generation. It is interesting to note that the suppression of inflammatory cytokine generation by NRP-coated beads was shown to be significantly higher than that by PCMS-coated beads. Both platelet and leukocyte adhesion to the beads were suppressed with increasing TEMPO incorporation in the polymer. These results confirm that the suppression of ROS by NRP prevents inflammatory cytokine generation, which in turn results in the suppression of blood activation and coagulation on the beads.
机译:各种聚合材料已用于医疗设备,包括接触血液的人造器官。血液和异物之间的接触会引起血细胞活化和粘附,然后引起血液凝结。同时,活化的血细胞与活性氧(ROS)一起释放炎性细胞因子。我们假设,ROS的生成抑制在血液活化和凝血中起着至关重要的作用。为了证实该假设,设计并开发了包含氮氧化物自由基化合物的表面涂层聚合物(含氮氧化物自由基的聚合物(NRP))。 NRP由疏水性聚(氯甲基苯乙烯)(PCMS)链组成,通过PCMS中的氯甲基与乙醇酸钠基团的缩合反应,将2,2,6,6-四甲基哌啶-N-氧基(TEMPO)部分缀合到其中4-羟基-TEMPO。通过将涂有NRP的珠子与大鼠全血接触来研究血液相容性。用作对照的PCMS涂层磁珠上产生的ROS的量随时间显着增加,而NRP涂层磁珠则抑制ROS的产生。有趣的是,NRP包被的磁珠对炎症细胞因子的抑制作用明显高于PCMS包被的磁珠。随着聚合物中TEMPO掺入的增加,血小板和白细胞对小珠的粘附均被抑制。这些结果证实,NRP抑制ROS可以防止炎症性细胞因子的产生,进而导致血液活化和珠子上凝结的抑制。

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