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具有图案化血管或蛋白质释放的组织在平台上诱导血管趋化性。

Tissues with Patterned Vessels or Protein Release Induce Vascular Chemotaxis in an Platform.

机构信息

Center for Biomedical Engineering, School of Engineering, Brown University, Providence, Rhode Island, USA.

出版信息

Tissue Eng Part A. 2021 Oct;27(19-20):1290-1304. doi: 10.1089/ten.TEA.2020.0269. Epub 2021 Mar 2.

Abstract

Engineered tissues designed for translational applications in regenerative medicine require vascular networks to deliver oxygen and nutrients rapidly to the implanted cells. A limiting factor of translation is the rapid and successful inosculation, or connection, of host and implanted vascular networks and subsequent perfusion of the implant. An approach gaining favor in vascular tissue engineering is to provide instructive cues from the engineered tissue to enhance host vascular penetration and connection with the implant. Here, we use a novel platform based on the aortic ring assay to evaluate the impact of patterned, endothelialized vessels or growth factor release from engineered constructs on preinosculative vascular cell outgrowth from surrogate host tissue in a controlled, defined environment, and introduce robust tools for evaluating vascular morphogenesis and chemotaxis. We demonstrate the creation of engineered vessels at the arteriole scale, which develop basement membrane, exhibit tight junctions, and actively sprout into the surrounding bulk hydrogel. Vessel-containing constructs are co-cultured adjacent to rodent aortic rings, and the resulting heterocellular outgrowth is quantified. Cells originating from the aortic ring migrate preferentially toward constructs containing engineered vessels with 1.5-fold faster outgrowth kinetics, 2.5-fold increased cellular density, and 1.6-fold greater network formation versus control (no endothelial cells and growth factor-reduced culture medium). Growth factor release from constructs with nonendothelialized channels and in reduced factor medium equivalently stimulates sustained vascular outgrowth distance, cellular density, and network formation, akin to engineered vessels in endothelial growth medium 2 (EGM-2) medium. In conclusion, we show that three-dimensional endothelialized patterned vessels or growth factor release stimulate a robust, host-derived vascular cell chemotactic response at early time points critical for instructive angiogenic cues. Further, we developed robust, unbiased tools to quantify metrics of vascular morphogenesis and preinosculative heterocellular outgrowth from rat aortic rings and demonstrated the utility of our complex, controlled environment, heterocellular platform. Impact statement Using a novel platform, we show that engineered constructs with patterned vessels or angiogenic growth factor release, two methods of instructing host revascularization responses, equivalently improve early host-derived vascular outgrowth. Our platform leverages the aortic ring assay in a tissue engineering context to study preinosculative vascular cell chemotaxis from surrogate host vascular cells in response to paracrine cues from co-cultured engineered tissues using robust, open-source quantification tools. Our accessible and flexible platform enables translationally focused studies in revascularization using implantable therapeutics containing prepatterned vessels with greater environmental control than studies to advance vascular tissue engineering.

摘要

为了在再生医学中实现转化应用,用于设计的工程组织需要血管网络来快速向植入细胞输送氧气和营养物质。转化的一个限制因素是宿主和植入血管网络的快速和成功吻合(或连接),以及随后对植入物的灌注。血管组织工程中一种受到青睐的方法是提供来自工程组织的指导线索,以增强宿主血管的穿透性并与植入物连接。在这里,我们使用一种基于主动脉环测定的新型平台,来评估图案化的内皮化血管或工程构建体中生长因子释放对替代宿主组织中预吻合血管细胞外生的影响,从而在受控的、明确的环境中进行评估,并引入强大的工具来评估血管形态发生和趋化性。我们展示了在小动脉规模上创建工程血管的方法,这些血管形成了基底膜,表现出紧密连接,并主动向周围的整体水凝胶中发芽。含有血管的构建体与啮齿动物主动脉环相邻共培养,然后定量分析由此产生的异细胞外生。来自主动脉环的细胞优先迁移到含有工程血管的构建体中,其外生动力学快 1.5 倍,细胞密度增加 2.5 倍,网络形成增加 1.6 倍,与对照(无内皮细胞和生长因子减少的培养基)相比。非内皮化通道和减少因子培养基中生长因子的释放同样会刺激持续的血管外生距离、细胞密度和网络形成,类似于内皮生长培养基 2(EGM-2)培养基中的工程血管。总之,我们表明,三维内皮化图案化血管或生长因子释放会刺激早期关键的指令性血管生成线索,引发强大的、宿主来源的血管细胞趋化反应。此外,我们开发了强大的、无偏的工具来量化大鼠主动脉环的血管形态发生和预吻合异细胞外生的度量标准,并展示了我们复杂的、受控环境异细胞平台的实用性。影响描述使用一种新型平台,我们表明,具有图案化血管或血管生成生长因子释放的工程构建体,这两种指示宿主再血管化反应的方法,同样可以改善早期宿主来源的血管外生。我们的平台利用主动脉环测定在组织工程背景下,使用稳健的开源定量工具,从共培养的工程组织中研究替代宿主血管细胞对旁分泌线索的预吻合血管细胞趋化性。我们易于访问和灵活的平台能够进行以再血管化为重点的研究,使用含有预先图案化血管的可植入治疗剂,与血管组织工程相比具有更大的环境控制。

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