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微球包埋作为一种调节生物墨水生物学性能的策略。

Microsphere incorporation as a strategy to tune the biological performance of bioinks.

作者信息

Bonany Mar, Del-Mazo-Barbara Laura, Espanol Montserrat, Ginebra Maria-Pau

机构信息

Biomaterials, Biomechanics and Tissue Engineering Group, Department of Materials Science and Engineering, Universitat Politècnica de Catalunya (UPC), Barcelona, Spain.

Barcelona Research Centre in Multiscale Science and Engineering, UPC, Barcelona, Spain.

出版信息

J Tissue Eng. 2022 Sep 29;13:20417314221119895. doi: 10.1177/20417314221119895. eCollection 2022 Jan-Dec.

Abstract

Although alginate is widely used as a matrix in the formulation of cell-laden inks, this polymer often requires laborious processing strategies due to its lack of cell adhesion moieties. The main objective of the present work was to explore the incorporation of microspheres into alginate-based bioinks as a simple and tuneable way to solve the cell adhesion problems, while adding extra biological functionality and improving their mechanical properties. To this end, three types of microspheres with different mineral contents (i.e. gelatine with 0% of hydroxyapatite, gelatine with 25 wt% of hydroxyapatite nanoparticles and 100 wt% of calcium -deficient hydroxyapatite) were synthesised and incorporated into the formulation of cell-laden inks. The results showed that the addition of microspheres generally improved the rheological properties of the ink, favoured cell proliferation and positively affected osteogenic cell differentiation. Furthermore, this differentiation was found to be influenced by the type of microsphere and the ability of the cells to migrate towards them, which was highly dependent on the stiffness of the bioink. In this regard, Ca supplementation in the cell culture medium had a pronounced effect on the relaxation of the stiffness of these cell-loaded inks, influencing the overall cell performance. In conclusion, we have developed a powerful and tuneable strategy for the fabrication of alginate-based bioinks with enhanced biological characteristics by incorporating microspheres into the initial ink formulation.

摘要

尽管藻酸盐在制备含细胞墨水时被广泛用作基质,但由于其缺乏细胞粘附部分,这种聚合物通常需要繁琐的加工策略。本研究的主要目的是探索将微球掺入藻酸盐基生物墨水中,作为一种简单且可调节的方法来解决细胞粘附问题,同时增加额外的生物学功能并改善其机械性能。为此,合成了三种具有不同矿物质含量的微球(即含0%羟基磷灰石的明胶、含25 wt%羟基磷灰石纳米颗粒的明胶和100 wt%缺钙羟基磷灰石),并将其掺入含细胞墨水的配方中。结果表明,微球的添加总体上改善了墨水的流变性能,有利于细胞增殖,并对成骨细胞分化产生积极影响。此外,发现这种分化受微球类型以及细胞向微球迁移能力的影响,而这高度依赖于生物墨水的硬度。在这方面,细胞培养基中的钙补充对这些加载细胞的墨水的硬度松弛有显著影响,从而影响整体细胞性能。总之,我们通过将微球掺入初始墨水配方中,开发了一种强大且可调节的策略来制备具有增强生物学特性的藻酸盐基生物墨水。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/461f/9527984/e9409e747dfa/10.1177_20417314221119895-fig1.jpg

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