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Fabrication and Short-Term in Vivo Performance of a Natural Elastic Lamina-Polymeric Hybrid Vascular Graft

机译:天然弹性层-聚合物杂化血管移植物的制备和体内短期性能

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Although Significant :advances have been Made,in the development of artificial Vascular rafts, small diameter grafts still suffer from excessive platelet activation, thrombus formation, smooth muscle cell intimal hyperplasia, and high occurrences of restenosis. Recent discoveries demonstrating the excellent blood-contacting properties of the natural elastic lamina have raised the possibility that an acellular elastic lamina could effectively Serve as a patent blood-contacting surface in engineered vascular grafts. However, the elastic lamina alone lacks the requisite mechanical properties to function as a viable vascular graft. Here, we have screened a wide range of biodegradable and biostable medical-grade polymers for their ability to adhere to the outer surface of the elastic lamina: and allow cellular repopulation following engraftment in the rat abdominal, aorta. We demonstrate a novel method for the fabrication, of elastic lamina-polymeric hybrid small-diameter vascular grafts and identify poly(ether urethane). (PEU 1074A) as ideal for this purpose. In vivo results, demonstrate graft patency over 21 days, with low thrombus formation, mild inflammation, and the general absence of smooth muscle cell hyperplasia on the graft's luminal surface. The results provide a new direction for developing small-diameter vascular grafts that are mass-producible, shelf-stable, and universally compatible due to a lack of immune response and inhibit the in-graft restenosis response that is common to nonautologous materials.
机译:尽管已取得重大进展,但在人造血管筏的开发中,小直径移植物仍遭受过度的血小板活化,血栓形成,平滑肌细胞内膜增生和再狭窄的高发。证明天然弹性薄层具有出色的血液接触特性的最新发现提高了脱细胞弹性薄层可以有效地作为工程化血管移植物中的专利血液接触表面的可能性。但是,仅弹性薄片缺乏必要的机械性能以作为可行的血管移植物。在这里,我们已经筛选出了多种生物可降解和生物稳定的医用级聚合物,因为它们能够粘附在弹性椎板的外表面上:并在植入大鼠腹主动脉后允许细胞重新聚集。我们展示了一种新型的弹性薄片-聚合物杂化小直径血管移植物的制造方法,并确定了聚醚尿烷。 (PEU 1074A)为此目的的理想选择。体内结果显示,移植物在21天之内通畅,血栓形成低,炎症轻,并且在移植物的腔表面上普遍不存在平滑肌细胞增生。该结果为开发小直径的血管移植物提供了新的方向,这些血管移植物由于缺乏免疫反应并可以抑制非自体材料常见的移植后再狭窄反应,因此可大量生产,保存稳定并且普遍兼容。

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