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首页> 外文期刊>Clinical hemorheology and microcirculation >Hemocompatibility of soft hydrophobic poly(n-butyl acrylate) networks with elastic moduli adapted to the elasticity of human arteries.
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Hemocompatibility of soft hydrophobic poly(n-butyl acrylate) networks with elastic moduli adapted to the elasticity of human arteries.

机译:具有适应人体动脉弹性的弹性模量的疏水性柔软的聚丙烯酸正丁酯网络的血液相容性。

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摘要

Small calibre vascular prostheses (<6 mm) still lack medium and long term patency. Inelasticity of the prosthesis is one of the characteristics, which is involved in the mechanisms of failure (e.g. the development of neointimal hyperplasia at the distal anastomosis). Here we report about covalently crosslinked poly(n-butyl acrylate) networks (cPnBA) with adjustable elastic moduli, which can be tailored to values of human arteries (between 100 and 1000 kPa). Motivated by the potential application of such polymer networks as cardiovascular prosthesis, adhesion, activation and thrombus formation of human platelets on cPnBA networks were evaluated. All cPnBA-samples displayed a high thrombogenicity compared to the control (silicone). Significantly less platelets adhered on the surface of the soft cPnBA04 than on cPnBA73. All cPnBA samples displayed a higher number of platelet aggregates and a lower number of inactivated platelets in comparison to the control. While the elastic modulus of cPnBA networks could be successfully adjusted to that of human arteries, the tested polymers did not show an optimal hemocompatibility. Future studies aim at improving the biofunctionality by surface modification of these polymer networks.
机译:小口径的人工血管(<6 mm)仍缺乏中长期通畅。假体的无弹性是其特征之一,其涉及失败的机制(例如远端吻合处新内膜增生的发展)。在这里,我们报告了具有可调节弹性模量的共价交联聚(丙烯酸正丁酯)网络(cPnBA),可以根据人体动脉的值进行调整(介于100和1000 kPa之间)。通过诸如心血管修复物的聚合物网络的潜在应用的动机,评估了人血小板在cPnBA网络上的粘附,活化和血栓形成。与对照(有机硅)相比,所有cPnBA样品均显示出较高的血栓形成性。与cPnBA73相比,软cPnBA04上粘附的血小板明显更少。与对照相比,所有cPnBA样品均显示出更高数量的血小板聚集体和更低数量的灭活血小板。尽管可以成功地将cPnBA网络的弹性模量调整为人类动脉的弹性模量,但测试的聚合物并未显示出最佳的血液相容性。未来的研究旨在通过对这些聚合物网络进行表面改性来改善生物功能。

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