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基于结冷胶的生物墨水的流变学特性关联:细胞密度影响的研究

Correlating Rheological Properties of a Gellan Gum-Based Bioink: A Study of the Impact of Cell Density.

作者信息

Martorana Annalisa, Pitarresi Giovanna, Palumbo Fabio Salvatore, Barberi Giuseppe, Fiorica Calogero, Giammona Gaetano

机构信息

Dipartimento di Scienze e Tecnologie Biologiche Chimiche e Farmaceutiche (STEBICEF), Università degli Studi di Palermo, Via Archirafi 32, 90123 Palermo, Italy.

出版信息

Polymers (Basel). 2022 Apr 30;14(9):1844. doi: 10.3390/polym14091844.

Abstract

Here, for the production of a bioink-based gellan gum, an amino derivative of this polysaccharide was mixed with a mono-functionalized aldehyde polyethyleneglycol in order to improve viscoelastic macroscopic properties and the potential processability by means of bioprinting techniques as confirmed by the printing tests. The dynamic Schiff base linkage between amino and aldehyde groups temporally modulates the rheological properties and allows a reduction of the applied pressure during extrusion followed by the recovery of gellan gum strength. Rheological properties, often related to printing resolution, were extensively investigated confirming pseudoplastic behavior and thermotropic and ionotropic responses. The success of bioprinting is related to different parameters. Among them, cell density must be carefully selected, and in order to quantify their role on printability, murine preostoblastic cells (MC3T3-E1) and human colon tumor cells (HCT-116) were chosen as cell line models. Here, we investigated the effect of their density on the bioink's rheological properties, showing a more significant difference between cell densities for MC3T3-E1 compared to HCT-116. The results suggest the necessity of not neglecting this aspect and carrying out preliminary studies to choose the best cell densities to have the maximum viability and consequently to set the printing parameters.

摘要

在此,为了生产基于生物墨水的结冷胶,将这种多糖的氨基衍生物与单官能化醛基聚乙二醇混合,以改善粘弹性宏观性质以及通过生物打印技术实现潜在的可加工性,打印测试证实了这一点。氨基和醛基之间的动态席夫碱键暂时调节流变性质,并允许在挤出过程中降低施加的压力,随后恢复结冷胶强度。流变性质通常与打印分辨率相关,对此进行了广泛研究,证实了假塑性行为以及热致和离子致响应。生物打印的成功与不同参数有关。其中,必须仔细选择细胞密度,为了量化它们对可打印性的作用,选择小鼠前成骨细胞(MC3T3-E1)和人结肠肿瘤细胞(HCT-116)作为细胞系模型。在此,我们研究了它们的密度对生物墨水流变性质的影响,结果表明与HCT-116相比,MC3T3-E1细胞密度之间的差异更为显著。结果表明不能忽视这一方面,有必要进行初步研究以选择最佳细胞密度,从而实现最大活力并进而设定打印参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f69/9102283/e3e38a108c59/polymers-14-01844-g001.jpg

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