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The Tissue-Engineered Vascular Graft—Past Present and Future

机译:组织工程化的血管移植物的过去现在和未来

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摘要

Cardiovascular disease is the leading cause of death worldwide, with this trend predicted to continue for the foreseeable future. Common disorders are associated with the stenosis or occlusion of blood vessels. The preferred treatment for the long-term revascularization of occluded vessels is surgery utilizing vascular grafts, such as coronary artery bypass grafting and peripheral artery bypass grafting. Currently, autologous vessels such as the saphenous vein and internal thoracic artery represent the gold standard grafts for small-diameter vessels (<6 mm), outperforming synthetic alternatives. However, these vessels are of limited availability, require invasive harvest, and are often unsuitable for use. To address this, the development of a tissue-engineered vascular graft (TEVG) has been rigorously pursued. This article reviews the current state of the art of TEVGs. The various approaches being explored to generate TEVGs are described, including scaffold-based methods (using synthetic and natural polymers), the use of decellularized natural matrices, and tissue self-assembly processes, with the results of various in vivo studies, including clinical trials, highlighted. A discussion of the key areas for further investigation, including graft cell source, mechanical properties, hemodynamics, integration, and assessment in animal models, is then presented.
机译:心血管疾病是全球范围内主要的死亡原因,并且在可预见的将来,这种趋势还将持续。常见疾病与血管狭窄或闭塞有关。对于闭塞血管进行长期血运重建的首选治疗方法是使用血管移植物的手术,例如冠状动脉旁路移植术和周围动脉旁路移植术。目前,自体血管,如大隐静脉和胸内动脉,代表了小直径血管(<6mm)的金标准移植物,其性能优于人工合成血管。然而,这些容器的可用性有限,需要侵入性收获,并且通常不适合使用。为了解决这个问题,已经严格地进行了组织工程的血管移植物(TEVG)的开发。本文回顾了TEVG的最新技术。描述了探索产生TEVG的各种方法,包括基于支架的方法(使用合成和天然聚合物),使用脱细胞的天然基质以及组织自组装过程,以及各种体内研究的结果,包括临床试验,突出显示。然后介绍了进一步研究的关键领域,包括移植细胞来源,力学性能,血液动力学,整合和动物模型评估。

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