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Nonthrombogenic, Biodegradable Elastomeric Polyurethanes with Variable Sulfobetaine Content

机译:具有可变磺基甜菜碱含量的非血栓性,可生物降解的弹性聚氨酯

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For applications where degradable polymers are likely to have extended blood contact, it is often important for these materials to exhibit high levels of thromboresistance. This can be achieved with surface modification approaches, but such modifications may be transient with degradation. Alternatively, polymer design can be altered such that the bulk polymer is thromboresistant and this is maintained with degradation. Toward this end a series of biodegradable, elastic polyurethanes (PESBUUs) containing different zwitterionic sulfobetaine (SB) content were synthesized from a polycaprolactone-diol (PCL-diol):SB-diol mixture (100:0, 75:25, 50:50, 25:75 and 0:100) reacted with diisocyanatobutane and chain extended with putrescine. The chemical structure, tensile mechanical properties, thermal properties, hydrophilicity, biodegradability, fibrinogen adsorption and thrombogenicity of the resulting polymers was characterized. With increased SB content some weakening in tensile properties occurred in wet conditions and enzymatic degradation also decreased. However, at higher zwitterionic molar ratios (50% and 75%) wet tensile strength exceeded 15 MPa and breaking strain was >500%. Markedly reduced thrombotic deposition was observed both before and after substantial degradation for both of these PESBUUs and they could be processed by electrospinning into a vascular conduit format with appropriate compliance properties. The mechanical and degradation properties as well as the acute in vitro thrombogenicity assessment suggest that these tunable polyurethanes could provide options appropriate for use in blood contacting applications where a degradable, elastomeric component with enduring thromboresistance is desired.
机译:对于可降解聚合物可能与血液长时间接触的应用,这些材料通常表现出高水平的抗血栓形成性通常很重要。这可以通过表面改性方法来实现,但是这种改性可能会随着降解而短暂发生。可替代地,可以改变聚合物设计,使得本体聚合物是抗血栓形成的,并且保持降解。为此,从聚己内酯-二醇(PCL-二醇):SB-二醇混合物(100:0、75:25、50:50)合成了一系列含有不同两性离子磺基甜菜碱(SB)含量的可生物降解的弹性聚氨酯(PESBUU)。 ,25:75和0:100)与二异氰酸根合丁烷反应,并与腐胺延长链。表征了所得聚合物的化学结构,拉伸机械性能,热性能,亲水性,生物降解性,纤维蛋白原吸附和血栓形成性。随着SB含量的增加,在潮湿条件下拉伸性能会有所减弱,酶促降解也会降低。但是,在较高的两性离子摩尔比(50%和75%)下,湿拉伸强度超过15 MPa,断裂应变> 500%。对于这两种PESBUU,在大幅降解之前和之后均观察到血栓沉积明显减少,可以通过静电纺丝成具有适当顺应性的血管导管形式对其进行处理。机械和降解性能以及急性体外血栓形成性评估表明,这些可调节的聚氨酯可以提供适用于血液接触应用的选择,在这些应用中,需要可降解的弹性体组分并具有持久的抗血栓形成性。

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