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二维喷墨生物打印机的设计与实现

Design and implementation of a two-dimensional inkjet bioprinter.

作者信息

Pepper Matthew E, Parzel Cheryl A, Burg Timothy, Boland Thomas, Burg Karen J L, Groff Richard E

机构信息

Department of Electrical and Computer Engineering and the Institute for Biological Interfaces of Engineering, Clemson University, Clemson, SC 29634-0915, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:6001-5. doi: 10.1109/IEMBS.2009.5332513.

Abstract

Tissue engineering has the potential to improve the current methods for replacing organs and tissues and for investigating cellular process within the scope of a tissue test system. Bioprinting technology can aid in the difficult task of arranging live mammalian cells and biomaterials in viable structures for tissue engineering purposes. This paper describes a system, based on HP26 series print cartridge technology, capable of precisely depositing multiple cell types in precise patterns. The paper discusses the research, design, and implementation of the printing system, which permits control of droplet firing parameters, including firing energy, speed, and spacing. The results demonstrate the system's fine patterning ability of viable cells, including two-dimensional patterned co-cultures of two cell types. The system has been specifically designed with the flexibility to be extended to print more than two cell types and/or materials simultaneously and to layer printed patterns to form three-dimensional constructs. With these features, the printing system will serve as the foundation for a biofabrication system capable of three-dimensional cell co-cultures, i.e. tissue test systems.

摘要

组织工程有潜力改进当前用于替换器官和组织以及在组织测试系统范围内研究细胞过程的方法。生物打印技术有助于完成将活的哺乳动物细胞和生物材料排列成用于组织工程目的的可行结构这一艰巨任务。本文描述了一种基于惠普26系列墨盒技术的系统,该系统能够以精确的图案精确沉积多种细胞类型。本文讨论了打印系统的研究、设计和实现,该系统允许控制液滴喷射参数,包括喷射能量、速度和间距。结果证明了该系统对活细胞的精细图案化能力,包括两种细胞类型的二维图案化共培养。该系统经过专门设计,具有灵活性,可扩展为同时打印两种以上的细胞类型和/或材料,并将打印图案分层以形成三维结构。凭借这些特性,该打印系统将成为能够进行三维细胞共培养的生物制造系统(即组织测试系统)的基础。

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