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用于软骨生物打印应用的硫酸藻酸盐-纳米纤维素生物墨水

Alginate Sulfate-Nanocellulose Bioinks for Cartilage Bioprinting Applications.

作者信息

Müller Michael, Öztürk Ece, Arlov Øystein, Gatenholm Paul, Zenobi-Wong Marcy

机构信息

Cartilage Engineering + Regeneration Laboratory, Department of Health Sciences & Technology, ETH Zürich, Otto-Stern-Weg 7, HPL J22, 8093, Zurich, Switzerland.

Department of Biotechnology, Norwegian University of Science and Technology, Sem Sælands vei 6/8, 7034, Trondheim, Norway.

出版信息

Ann Biomed Eng. 2017 Jan;45(1):210-223. doi: 10.1007/s10439-016-1704-5. Epub 2016 Aug 8.

Abstract

One of the challenges of bioprinting is to identify bioinks which support cell growth, tissue maturation, and ultimately the formation of functional grafts for use in regenerative medicine. The influence of this new biofabrication technology on biology of living cells, however, is still being evaluated. Recently we have identified a mitogenic hydrogel system based on alginate sulfate which potently supports chondrocyte phenotype, but is not printable due to its rheological properties (no yield point). To convert alginate sulfate to a printable bioink, it was combined with nanocellulose, which has been shown to possess very good printability. The alginate sulfate/nanocellulose ink showed good printing properties and the non-printed bioink material promoted cell spreading, proliferation, and collagen II synthesis by the encapsulated cells. When the bioink was printed, the biological performance of the cells was highly dependent on the nozzle geometry. Cell spreading properties were maintained with the lowest extrusion pressure and shear stress. However, extruding the alginate sulfate/nanocellulose bioink and chondrocytes significantly compromised cell proliferation, particularly when using small diameter nozzles and valves.

摘要

生物打印面临的挑战之一是识别能够支持细胞生长、组织成熟并最终形成用于再生医学的功能性移植物的生物墨水。然而,这种新的生物制造技术对活细胞生物学的影响仍在评估之中。最近,我们发现了一种基于硫酸藻酸盐的促有丝分裂水凝胶系统,它能有效支持软骨细胞表型,但由于其流变学特性(无屈服点)而无法打印。为了将硫酸藻酸盐转化为可打印的生物墨水,我们将其与纳米纤维素相结合,纳米纤维素已被证明具有非常好的可打印性。硫酸藻酸盐/纳米纤维素墨水表现出良好的打印性能,未打印的生物墨水材料促进了封装细胞的铺展、增殖和胶原蛋白II的合成。当生物墨水被打印时,细胞的生物学性能高度依赖于喷嘴的几何形状。在最低的挤出压力和剪切应力下,细胞铺展特性得以维持。然而,挤出硫酸藻酸盐/纳米纤维素生物墨水和软骨细胞会显著损害细胞增殖,尤其是在使用小直径喷嘴和阀门时。

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