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基于支架的小直径血管工程的多层方法:综述。

Multi-layer approaches to scaffold-based small diameter vessel engineering: A review.

机构信息

University of Florida, Department of Materials Science and Engineering, 100 Rhines Hall, Gainesville, Fl 32611, United States of America; University of Florida, Institute for Cell Science and Tissue Engineering, 300 Weil Hall, Gainesville, Fl 32611, United States of America.

University of Florida, Department of Materials Science and Engineering, 100 Rhines Hall, Gainesville, Fl 32611, United States of America.

出版信息

Mater Sci Eng C Mater Biol Appl. 2019 Apr;97:896-912. doi: 10.1016/j.msec.2018.12.067. Epub 2018 Dec 21.

Abstract

Cardiovascular disease is one of the leading causes of death in the world. A characteristic symptom of cardiovascular disease is occlusion of vessels. Once vascular occlusion occurs there is a critical need to re-establish flow to prevent ischemia in the downstream tissues. In the most advanced cases, flow is re-established by creating a secondary flow path around the blockage, bypass grafting. For large diameter applications, synthetic conduits are successfully implanted, however in small diameter applications re-occlusion occurs and there is a critical need for new vascular grafts. There are many strategies and approaches that are being employed to design an effective and successful vascular graft. However, to date, there are no clinically available small diameter vascular grafts that are consistently successful in vivo long term (>7 years). As an effort to develop a successful graft there are several tissue engineering approaches: cell sheets, synthetic and natural biomaterial platforms, and decellularized extracellular matrices that are being investigated. While each area has its advantages, scaffold-based approaches are among the most widely studied. Scaffold based approaches are extensively studied due to tailorability and the availability of synthetic and natural polymers. Within the area of scaffold-based approaches, biomimicry has become an increasingly studied area, and structural biomimicry is one of the many approaches. The focus of this review paper is to analyze scaffold-based approaches. Particularly the advantages and disadvantages of using multi-layer scaffold-based approaches to engineer conduits for small diameter applications.

摘要

心血管疾病是世界上主要的死亡原因之一。心血管疾病的一个特征性症状是血管阻塞。一旦发生血管阻塞,就需要紧急重新建立血流以防止下游组织缺血。在最严重的情况下,通过在阻塞物周围建立第二条血流通道(旁路移植)来重新建立血流。对于大直径的应用,合成导管已经成功植入,但在小直径的应用中,再次发生阻塞,因此迫切需要新的血管移植物。目前有许多策略和方法被用于设计有效的血管移植物。然而,迄今为止,临床上尚无一致成功的小直径血管移植物(>7 年)。为了开发成功的移植物,人们采用了几种组织工程方法:细胞片、合成和天然生物材料平台以及脱细胞细胞外基质。虽然每个领域都有其优势,但基于支架的方法是研究最多的方法之一。基于支架的方法被广泛研究,是因为其具有可定制性以及合成和天然聚合物的可用性。在基于支架的方法领域中,仿生学已经成为一个越来越受到关注的领域,而结构仿生学就是其中的一个方法。本综述文章的重点是分析基于支架的方法。特别是分析使用多层基于支架的方法来为小直径应用工程导管的优缺点。

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