生成复杂组织结构的组织打印参数研究

G. Navarro, I. García, P. Sundaram, N. Diffoot-Carlo
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引用次数: 1

摘要

琼脂糖、MEM IX和HeLa细胞的混合物(被称为Bio-Ink)被创造出来,在交联作为3D打印组织的第一步之前,允许正常的细胞与支架材料(琼脂糖)相互作用。生物墨水是一种成功开发的工程生物结构原位支架材料。Bio-Ink通过调整琼脂糖组成和胶凝时间来进一步调节,以获得最佳的HeLa细胞生长。经过详细研究,在完全交联发生之前,可用于打印这种材料的时间范围被确定为大约300秒,这使其具有3D打印的吸引力。可重复的10毫米厚的打印是成功的,尽管仍然需要更多的系统校准来实现更复杂的打印。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Tissue Printing Parameters for Generating Complex Tissue Constructs
A mixture of agarose, MEM IX and HeLa cells (dubbed Bio-Ink) was created to allow normal cell interaction with the scaffold material (agarose) before crosslinking as an initial step in 3D printing tissue. Bio-Ink was developed successfully as an in situ-scaffolding material for engineering biological structures. Bio-Ink has been further conditioned by adjusting agarose composition and gelling time to obtain optimal HeLa cell growth. After detailed study, the time range available for printing this material, before full crosslinking occurs, was determined to be about 300 s, giving it attractive properties for 3D printing. Repeatable 10 mm thick prints were successful, although more system calibration is still needed to achieve more complex prints.
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