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Three-dimensional bioprinting is not only about cell-laden structures

机译:三维生物打印不仅涉及充满细胞的结构

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摘要

In this review, we focused on a few obstacles that hinder three-dimensional (3D) bioprinting process in tissue engineering. One of the obstacles is the bioinks used to deliver cells. Hydrogels are the most widely used bioink materials; however, they are mechanically weak in nature and cannot meet the requirements for supporting structures, especially when the tissues, such as cartilage, require extracellular matrix to be mechanically strong. Secondly and more importantly, tissue regeneration is not only about building all the components in a way that mimics the structures of living tissues, but also about how to make the constructs function normally in the long term. One of the key issues is sufficient nutrient and oxygen supply to the engineered living constructs. The other is to coordinate the interplays between cells, bioactive agents and extracellular matrix in a natural way. This article reviews the approaches to improve the mechanical strength of hydrogels and their suitability for 3D bioprinting; moreover, the key issues of multiple cell lines coprinting with multiple growth factors, vascularization within engineered living constructs etc. were also reviewed.
机译:在这篇综述中,我们集中讨论了一些阻碍组织工程中三维(3D)生物打印过程的障碍。障碍之一是用于传递细胞的生物墨水。水凝胶是使用最广泛的生物墨水材料。然而,它们本质上是机械脆弱的,不能满足支撑结构的要求,尤其是当组织(例如软骨)需要细胞外基质具有机械强度时。其次,也是更重要的是,组织再生不仅涉及以模仿活组织结构的方式构建所有组件,而且还涉及如何使构建体长期正常运行。关键问题之一是向工程化的居住建筑提供足够的营养和氧气。另一个是以自然方式协调细胞,生物活性剂和细胞外基质之间的相互作用。本文概述了提高水凝胶机械强度及其对3D生物打印的适用性的方法;此外,还综述了多种细胞系与多种生长因子共印的关键问题,工程化活体构建物中的血管生成等。

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