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Vascularization of three-dimensional engineered tissues for regenerative medicine applications

机译:三维工程组织的血管再生医学应用

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摘要

Engineering of three-dimensional (3D) tissues is a promising approach for restoring diseased or dysfunctional myocardium with a functional replacement. However, a major bottleneck in this field is the lack of efficient vascularization strategies, because tissue constructs produced in vitro require a constant flow of oxygen and nutrients to maintain viability and functionality. Compared to angiogenic cell therapy and growth factor treatment, bioengineering approaches such as spatial micropatterning, integration of sacrificial materials, tissue decellularization, and 3D bioprinting enable the generation of more precisely controllable neovessel formation. In this review, we summarize the state-of-the-art approaches to develop 3D tissue engineered constructs with vasculature, and demonstrate how some of these techniques have been applied towards regenerative medicine for treatment of heart failure.
机译:三维(3D)组织的工程设计是一种功能强大的替代品,可用于恢复病变或功能异常的心肌。然而,该领域的主要瓶颈是缺乏有效的血管形成策略,因为体外产生的组织构建体需要恒定的氧气和养分流以维持活力和功能。与血管生成细胞治疗和生长因子治疗相比,诸如空间微图案化,牺牲材料整合,组织脱细胞和3D生物打印等生物工程学方法能够生成更精确可控的新血管形成。在这篇综述中,我们总结了开发具有脉管系统的3D组织工程构造的最新技术,并展示了其中的某些技术如何应用​​于再生医学以治疗心力衰竭。

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