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Autoregulation of thromboinflammation on biomaterial surfaces by a multicomponent therapeutic coating

机译:通过多组分治疗涂层自动调节生物材料表面的血栓炎症

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摘要

Activation of the thrombotic and complement systems is the main recognition and effector mechanisms in the multiple adverse biological responses triggered when biomaterials or therapeutic cells come into blood contact. We have created a surface which is auto-protective to human innate immunity by combining three fundamentally different strategies, all developed by us previously, which have been shown to induce substantial, but incomplete hemocompatibility when used separately. In summary, we have conjugated a factor H-binding peptide; and an ADP-degrading enzyme; using a PEG linker on both material and cellular surfaces. When exposed to human whole blood, factor H was specifically recruited to the modified surfaces and inhibited complement attack. In addition, activation of platelets and coagulation was efficiently attenuated, by degrading ADP. Thus, by inhibiting thromboinflammation using a multicomponent approach, we have created a hybrid surface with the potential to greatly reduce incompatibility reactions involving biomaterials and transplantation.
机译:血栓和补体系统的激活是生物材料或治疗细胞与血液接触时触发的多种不良生物反应中的主要识别和效应机制。通过结合我们先前开发的三种根本不同的策略,我们创造了一种对人类先天免疫具有自动保护作用的表面,当单独使用时,这些策略已显示出可诱导实质性但不完全的血液相容性。总而言之,我们已经缀合了因子H结合肽。和ADP降解酶;在材料和细胞表面均使用PEG接头。当暴露于人类全血时,H因子被专门募集到修饰的表面并抑制补体攻击。另外,通过降解ADP,有效地减弱了血小板的活化和凝血。因此,通过使用多组分方法抑制血栓炎症,我们创造了一种杂合表面,具有极大地减少涉及生物材料和移植的不相容反应的潜力。

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