From the Department of Biomedical Engineering, School of Medicine and School of Engineering, The University of Alabama at Birmingham (J.Z., W.Z.)
From the Department of Biomedical Engineering, School of Medicine and School of Engineering, The University of Alabama at Birmingham (J.Z., W.Z.).
Circ Res. 2018 Jul 6;123(2):244-265. doi: 10.1161/CIRCRESAHA.118.311213.
Some of the most significant leaps in the history of modern civilization-the development of article in China, the steam engine, which led to the European industrial revolution, and the era of computers-have occurred when science converged with engineering. Recently, the convergence of human pluripotent stem cell technology with biomaterials and bioengineering have launched a new medical innovation: functional human engineered tissue, which promises to revolutionize the treatment of failing organs including most critically, the heart. This compendium covers recent, state-of-the-art developments in the fields of cardiovascular tissue engineering, as well as the needs and challenges associated with the clinical use of these technologies. We have not attempted to provide an exhaustive review in stem cell biology and cardiac cell therapy; many other important and influential reports are certainly merit but already been discussed in several recent reviews. Our scope is limited to the engineered tissues that have been fabricated to repair or replace components of the heart (eg, valves, vessels, contractile tissue) that have been functionally compromised by diseases or developmental abnormalities. In particular, we have focused on using an engineered myocardial tissue to mitigate deficiencies in contractile function.
一些现代文明史上最重要的飞跃——中国的造纸术、导致欧洲工业革命的蒸汽机以及计算机时代的到来——都是在科学与工程融合时发生的。最近,人类多能干细胞技术与生物材料和生物工程的融合,引发了一场新的医学创新:功能性人造工程组织,有望彻底改变衰竭器官的治疗方法,尤其是心脏。本纲要涵盖了心血管组织工程领域的最新、最先进的发展,以及与这些技术的临床应用相关的需求和挑战。我们并没有试图提供干细胞生物学和心脏细胞治疗方面的详尽综述;许多其他重要和有影响力的报告当然值得一提,但已经在最近的几次综述中进行了讨论。我们的范围仅限于为修复或替代因疾病或发育异常而功能受损的心脏(如瓣膜、血管、收缩组织)的组件而制造的工程组织。特别是,我们专注于使用工程化心肌组织来缓解收缩功能缺陷。