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首页> 外文期刊>Materials >Polyvinylpyrrolidone-Based Bio-Ink Improves Cell Viability and Homogeneity during Drop-On-Demand Printing
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Polyvinylpyrrolidone-Based Bio-Ink Improves Cell Viability and Homogeneity during Drop-On-Demand Printing

机译:基于聚乙烯吡咯烷酮的生物墨水在按需印刷期间改善了细胞活力和均匀性

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摘要

Drop-on-demand (DOD) bioprinting has attracted huge attention for numerous biological applications due to its precise control over material volume and deposition pattern in a contactless printing approach. 3D bioprinting is still an emerging field and more work is required to improve the viability and homogeneity of printed cells during the printing process. Here, a general purpose bio-ink was developed using polyvinylpyrrolidone (PVP) macromolecules. Different PVP-based bio-inks (0%–3% w/v) were prepared and evaluated for their printability; the short-term and long-term viability of the printed cells were first investigated. The Z value of a bio-ink determines its printability; it is the inverse of the Ohnesorge number (Oh), which is the ratio between the Reynolds number and a square root of the Weber number, and is independent of the bio-ink velocity. The viability of printed cells is dependent on the Z values of the bio-inks; the results indicated that the cells can be printed without any significant impairment using a bio-ink with a threshold Z value of ≤9.30 (2% and 2.5% w/v). Next, the cell output was evaluated over a period of 30 min. The results indicated that PVP molecules mitigate the cell adhesion and sedimentation during the printing process; the 2.5% w/v PVP bio-ink demonstrated the most consistent cell output over a period of 30 min. Hence, PVP macromolecules can play a critical role in improving the cell viability and homogeneity during the bioprinting process.
机译:由于其精确控制物质体积和沉积图案以非接触式印刷方法的精确控制,触滴需求(DOD)生物印刷品引起了巨大的注意。 3D BioPlinting仍然是一个新兴领域,需要更多的工作来改善印刷过程中印刷细胞的活力和均匀性。这里,使用聚乙烯吡咯烷酮(PVP)大分子开发通用生物油墨。制备不同的基于PVP的生物油墨(0%-3%w / v)并评估其可印刷性;首先研究了印刷细胞的短期和长期活力。生物墨的z值确定其可印刷性;它是Ohnesorge(OH)的倒数,这是雷诺数和韦伯号的平方根之间的比率,并且与生物墨水速度无关。印刷细胞的可行性取决于生物油墨的Z值;结果表明,可以使用具有阈值Z值≤9.30(2%和2.5 / v)的生物墨水而没有任何显着损伤的细胞。接下来,在30分钟内评估细胞输出。结果表明,PVP分子在印刷过程中减轻了细胞粘附和沉降; 2.5%W / V PVP生物墨水在30分钟内显示出最一致的电池输出。因此,PVP大分子可以在生物印刷过程中改善细胞活力和均匀性时发挥关键作用。

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