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首页> 外文期刊>The international journal of artificial organs >Bioengineered vascular scaffolds: The state of the art
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Bioengineered vascular scaffolds: The state of the art

机译:生物工程化的血管支架:最新技术

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摘要

To date, there is increasing clinical need for vascular substitutes due to accidents, malformations, and ischemic diseases. Over the years, many approaches have been developed to solve this problem, starting from autologous native vessels to artificial vascular grafts; unfortunately, none of these have provided the perfect vascular substitute. All have been burdened by various complications, including infection, thrombogenicity, calcification, foreign body reaction, lack of growth potential, late stenosis and occlusion from intimal hyperplasia, and pseudoaneurysm formation. In the last few years, vascular tissue engineering has emerged as one of the most promising approaches for producing mechanically competent vascular substitutes. Nanotechnologies have contributed their part, allowing extraordinarily biostable and biocompatible materials to be developed. Specifically, the use of electrospinning to manufacture conduits able to guarantee a stable flow of biological fluids and guide the formation of a new vessel has revolutionized the concept of the vascular substitute. The electrospinning technique allows extracellular matrix (ECM) to be mimicked with high fidelity, reproducing its porosity and complexity, and providing an environment suitable for cell growth. In the future, a better knowledge of ECM and the manufacture of new materials will allow us to "create" functional biological vessels - the base required to develop organ substitutes and eventually solve the problem of organ failure.
机译:迄今为止,由于事故,畸形和缺血性疾病,对血管替代品的临床需求不断增加。多年来,已经开发了许多方法来解决这个问题,从自体天然血管到人工血管移植,一直到现在。不幸的是,这些都没有提供完美的血管替代品。所有这些都受到各种并发症的困扰,包括感染,血栓形成,钙化,异物反应,缺乏生长潜力,晚期狭窄和内膜增生闭塞以及假性动脉瘤形成。在过去的几年中,血管组织工程学已经成为生产机械有效的血管替代物的最有前途的方法之一。纳米技术已经做出了自己的贡献,从而可以开发出生物稳定和生物相容的材料。具体而言,使用电纺丝制造能够保证生物流体稳定流动并引导新血管形成的导管,彻底改变了血管替代物的概念。电纺技术可以高保真地模拟细胞外基质(ECM),再现其孔隙率和复杂性,并提供适合细胞生长的环境。将来,对ECM和新材料的制造有了更深入的了解,这将使我们能够“创造”功能性生物血管,这是开发器官替代物并最终解决器官衰竭问题的基础。

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