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基于3D生物打印技术的多层血管样结构打印的理论与实验研究

Theoretical and Experimental Research on Multi-Layer Vessel-like Structure Printing Based on 3D Bio-Printing Technology.

作者信息

Liu Huanbao, Yang Xianhai, Cheng Xiang, Zhao Guangxi, Zheng Guangming, Li Xuewei, Dong Ruichun

机构信息

College of Mechanical Engineering, Shandong University of Technology, Zibo 255000, China.

出版信息

Micromachines (Basel). 2021 Dec 6;12(12):1517. doi: 10.3390/mi12121517.

Abstract

Cardiovascular disease is the leading cause of death worldwide. Traditional autologous transplantation has become a severe issue due to insufficient donors. Artificial blood vessel is an effective method for the treatment of major vascular diseases, such as heart and peripheral blood vessel diseases. However, the traditional single-material printing technology has been unable to meet the users' demand for product functional complexity, which is not only reflected in the field of industrial manufacturing, but also in the field of functional vessel-like structure regeneration. In order to achieve the printing and forming of multi-layer vessel-like structures, this paper carries out theoretical and experimental research on the printing and forming of a multi-layer vessel-like structure based on multi-material 3D bioprinting technology. Firstly, theoretical analysis has been explored to research the relationship among the different parameters in the process of vessel forming, and further confirm the synchronous relationship among the extrusion rate of material, the tangential speed of the rotating rod, and the movement speed of the platform. Secondly, sodium alginate and gelatin have been used as the experimental materials to manufacture the vessel-like structure, and the corrected parameter of the theoretical analysis is further verified. Finally, the cell-loaded materials have been printed and analyzed, and cell viability is more than 90%, which provides support for the research of multi-layer vessel-like structure printing.

摘要

心血管疾病是全球主要的死亡原因。由于供体不足,传统的自体移植已成为一个严峻的问题。人造血管是治疗主要血管疾病(如心脏和外周血管疾病)的有效方法。然而,传统的单一材料打印技术已无法满足用户对产品功能复杂性的需求,这不仅体现在工业制造领域,也体现在功能性血管样结构再生领域。为了实现多层血管样结构的打印和成型,本文基于多材料3D生物打印技术对多层血管样结构的打印和成型进行了理论和实验研究。首先,进行了理论分析,以研究血管成型过程中不同参数之间的关系,并进一步确定材料的挤出速率、旋转杆的切向速度和平台的移动速度之间的同步关系。其次,以海藻酸钠和明胶为实验材料制造血管样结构,并进一步验证理论分析的修正参数。最后,对负载细胞的材料进行了打印和分析,细胞活力超过90%,为多层血管样结构打印的研究提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c2f/8709219/847551924489/micromachines-12-01517-g001.jpg

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