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Engineering tissue‐specific blood vessels

机译:工程组织特异性血管

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摘要

Vascular diversity among organs has recently become widely recognized. Several studies using mouse and human fetal tissues revealed distinct characteristics of organ‐specific vasculature in molecular and functional levels. Thorough understanding of vascular heterogeneities in human adult tissues is significant for developing novel strategies for targeted drug delivery and tissue regeneration. Recent advancements in microfabrication techniques, biomaterials, and differentiation protocols allowed for incorporation of microvasculature into engineered organs. Such vascularized organ models represent physiologically relevant platforms that may offer innovative tools for dissecting the effects of the organ microenvironment on vascular development and expand our present knowledge on organ‐specific human vasculature. In this article, we provide an overview of the current structural and molecular evidence on microvascular diversity, bioengineering methods used to recapitulate the microenvironmental cues, and recent vascularized three‐dimensional organ models from the perspective of tissue‐specific vasculature.
机译:器官之间的血管多样性最近已得到广泛认可。使用小鼠和人类胎儿组织的多项研究表明,在分子和功能水平上器官特异性脉管系统具有明显的特征。对成人组织中血管异质性的透彻了解对于开发靶向药物递送和组织再生的新策略具有重要意义。微加工技术,生物材料和分化方案的最新进展使微脉管系统可以整合到工程器官中。此类血管化的器官模型代表了生理相关的平台,可提供新颖的工具来剖析器官微环境对血管发育的影响,并扩展我们目前在器官特异性人类血管系统方面的知识。在本文中,我们将从组织特异性脉管系统的角度概述微血管多样性的当前结构和分子证据,用于概括微环境线索的生物工程方法以及最近的血管化三维器官模型。

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