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采用高分辨率静电喷射印刷技术制造微血管构建体。

Fabrication of microvascular constructs using high resolution electrohydrodynamic inkjet printing.

机构信息

Department of Materials, The University of Manchester, Manchester M13 9PL, United Kingdom.

Division of Cell Matrix Biology and Regenerative Medicine, The University of Manchester, Manchester M13 9PL, United Kingdom.

出版信息

Biofabrication. 2021 Apr 2;13(3). doi: 10.1088/1758-5090/abd158.

Abstract

Fabrication of the intricate anatomy of vasculature within engineered tissue remains one of the key challenges facing the field of tissue engineering. We report the use of electrohydrodynamic (EHD) inkjet printing to create hydrogel-based microvascular tissues with hierarchical and branching channels, whose minimum feature size of 30m approaches the physical scale of native capillary blood vessels. The principle relies on the use of complementary thermoreversible gelling properties of Pluronic F127 (PF-127) and gelatin methacryloyl, which served as sacrificial templates and permanent matrices respectively. Human dermal fibroblasts and human umbilical vein endothelial cells were successfully co-cultured within the engineered microvascular tissue constructs for up to 21 days, and attained high cell viability. Tissue specific morphology was maintained on perfusion. The ability to create cellularised, vascularised proto-tissues with high spatial resolution using EHD inkjet printing, provides a new strategy for developing advanced vascular models with the potential to impact upon an extensive range of biomedical applications.

摘要

在工程组织内制造复杂的脉管系统结构仍然是组织工程领域面临的关键挑战之一。我们报告了使用电动力学(EHD)喷墨打印来创建具有层次和分支通道的水凝胶基微血管组织,其最小特征尺寸为 30m,接近天然毛细血管的物理尺度。该原理依赖于使用泊洛沙姆 F127(PF-127)和明胶甲基丙烯酰的互补热可逆胶凝特性,它们分别用作牺牲模板和永久基质。人真皮成纤维细胞和人脐静脉内皮细胞在工程化的微血管组织构建体中成功共培养长达 21 天,并获得了高细胞活力。在灌注时保持组织特异性形态。使用 EHD 喷墨打印以高空间分辨率创建细胞化、血管化原组织的能力为开发具有广泛潜在应用的先进血管模型提供了新策略。

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