首页> 外文期刊>Journal of Micromechanics and Microengineering >Bioprinting of a mechanically enhanced three-dimensional dual cell-laden construct for osteochondral tissue engineering using a multi-head tissue/organ building system
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Bioprinting of a mechanically enhanced three-dimensional dual cell-laden construct for osteochondral tissue engineering using a multi-head tissue/organ building system

机译:使用多头组织/器官构建系统对用于软骨组织工程的机械增强三维双细胞结构进行机械印刷

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The aim of this study was to build a mechanically enhanced three-dimensional (3D) bioprinted construct containing two different cell types for osteochondral tissue regeneration. Recently, the production of 3D cell-laden structures using various scaffold-free cell printing technologies has opened up new possibilities. However, ideal 3D complex tissues or organs have not yet been printed because gel-state hydrogels have been used as the principal material and are unable to maintain the desired 3D structure due to their poor mechanical strength. In this study, thermoplastic biomaterial polycaprolactone (PCL), which shows relatively high mechanical properties as compared with hydrogel, was used as a framework for enhancing the mechanical stability of the bioprinted construct. Two different alginate solutions were then infused into the previously prepared framework consisting of PCL to create the 3D construct for osteochondral printing. For this work, a multi-head tissue/organ building system (MtoBS), which was particularly designed to dispense thermoplastic biomaterial and hydrogel having completely different rheology properties, was newly developed and used to bioprint osteochondral tissue. It was confirmed that the line width, position and volume control of PCL and alginate solutions were adjustable in the MtoBS. Most importantly, dual cell-laden 3D constructs consisting of osteoblasts and chondrocytes were successfully fabricated. Further, the separately dispensed osteoblasts and chondrocytes not only retained their initial position and viability, but also proliferated up to 7 days after being dispensed.
机译:这项研究的目的是建立一种机械增强的三维(3D)生物打印构造,其中包含两种不同类型的细胞用于骨软骨组织再生。近来,使用各种无支架细胞打印技术的3D细胞结构的生产开辟了新的可能性。但是,理想的3D复杂组织或器官尚未打印出来,因为凝胶态水凝胶已被用作主要材料,并且由于其较差的机械强度而无法保持所需的3D结构。在这项研究中,与水凝胶相比具有较高机械性能的热塑性生物材料聚己内酯(PCL)被用作增强生物印刷构造物机械稳定性的框架。然后将两种不同的藻酸盐溶液注入到先前准备的由PCL组成的框架中,以创建用于骨软骨打印的3D构建体。对于这项工作,新开发了一种多头组织/器官构建系统(MtoBS),该系统专门设计用于分配具有完全不同流变特性的热塑性生物材料和水凝胶,并用于对骨软骨组织进行生物打印。证实了在MtoBS中PCL和藻酸盐溶液的线宽,位置和体积控制是可调节的。最重要的是,成功地制造了由成骨细胞和软骨细胞组成的充满双细胞的3D构建体。此外,分开分配的成骨细胞和软骨细胞不仅保留了它们的初始位置和活力,而且在分配后最多可扩散至7天。

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