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Vascular tissue engineering: biodegradable scaffold platforms to promote angiogenesis

机译:血管组织工程:可生物降解的支架平台可促进血管生成

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摘要

The ability to understand and regulate human vasculature development and differentiation has the potential to benefit patients suffering from a variety of ailments, including cardiovascular disease, peripheral vascular disease, ischemia, and burn wounds. Current clinical treatments for vascular-related diseases commonly use the grafting from patients of autologous vessels, which are limited and often damaged due to disease. Considerable progress is being made through a tissue engineering strategy in the vascular field. Tissue engineering takes a multidisciplinary approach seeking to repair, improve, or replace biological tissue function in a controlled and predictable manner. To address the clinical need to perfuse and repair damaged, ischemic tissue, one approach of vascular engineering aims to understand and promote the growth and differentiation of vascular networks. Vascular tissue engineered constructs enable the close study of vascular network assembly and vessel interactions with the surrounding microenvironment. Scaffold platforms provide a method to control network development through the biophysical regulation of different scaffold properties, such as composition, mechanics, dimensionality, and so forth. Following a short description of vascular physiology and blood vessel biomechanics, the key principles in vascular tissue engineering are discussed. This review focuses on various biodegradable scaffold platforms and demonstrates how they are being used to regulate, promote, and understand angiogenesis and vascular network formation.
机译:了解和调节人类脉管系统发育和分化的能力有可能使患有各种疾病的患者受益,其中包括心血管疾病,外周血管疾病,局部缺血和烧伤。当前用于血管相关疾病的临床治疗通常使用自体血管患者的移植物,该移植物有限并且常常由于疾病而受损。通过组织工程策略在血管领域正在取得可观的进展。组织工程学采取多学科的方法来寻求以受控和可预测的方式修复,改善或替代生物组织功能。为了满足灌注和修复受损的缺血组织的临床需求,血管工程的一种方法旨在理解和促进血管网络的生长和分化。血管组织工程构建体使得能够密切研究血管网络组装以及血管与周围微环境的相互作用。支架平台提供了一种通过对不同支架特性(例如组成,力学,尺寸等)进行生物物理调节来控制网络发展的方法。在简短描述血管生理学和血管生物力学之后,讨论了血管组织工程学的关键原理。这篇综述着重于各种可生物降解的支架平台,并展示了它们如何被用于调节,促进和理解血管生成和血管网络的形成。

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