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新型富含蛋白质的生物活性生物墨水可刺激三维生物打印体积结构中的细胞增殖和反应。

Novel Protein-Rich Bioactive Bioink Stimulates Cellular Proliferation and Response in 3D Bioprinted Volumetric Constructs.

作者信息

Liu Suihong, Kilian David, Bernhardt Anne, Wirsig Katharina, von Witzleben Max, Duin Sarah, Lode Anja, Hu Qingxi, Gelinsky Michael

机构信息

Centre for Translational Bone, Joint and Soft Tissue Research, Faculty of Medicine and University Hospital Carl Gustav Carus, Technische Universität Dresden, 01307, Dresden, Germany.

Rapid Manufacturing Engineering Center, School of Mechatronic Engineering and Automation, Shanghai University, Shanghai, 200444, China.

出版信息

Adv Healthc Mater. 2025 Apr;14(10):e2404470. doi: 10.1002/adhm.202404470. Epub 2025 Feb 25.

Abstract

3D extrusion bioprinting, a promising and widely adopted technology in the emerging field of biofabrication, has gained considerable attention for its ability to fabricate hierarchically structured, native-mimicking tissue substitutes with precisely defined cell distributions. Despite notable advancements, the limited availability of suitably bioactive bioinks remains a major challenge, hindering the construction of volumetric tissue substitutes effectively mimicking biological functionality. Therefore, this work proposes a protein-rich, low-cost, bioactive bioink: abundantly available eggwhite powder (EWP) is leveraged to functionalize an alginate-methylcellulose (AlgMC) hydrogel matrix and enhance cellular response. The developed EWP-supplemented bioinks not only maintain favorable printability and high shape fidelity but also exhibit remarkable bioactivity. Notably, incorporating EWP into AlgMC-based bioinks enhances shear-thinning features, thereby improving the viability of encapsulated cells within the bioprinted constructs. The versatility and biofunctionality of EWP in bioprinted constructs are demonstrated using three distinct cell types, encompassing sources such as a stem cell line, human soft skin, and stiff bone tissues. Furthermore, the promising and wide applicability of the EWP-supplemented bioink for biofabrication is demonstrated exemplarily in core-shell and multi-channel bioprinting strategies as a proof-of-concept for functional tissue construction. These findings underscore the significant and versatile potential of this novel bioink in biofabrication and biomedical applications.

摘要

3D挤出式生物打印是生物制造这一新兴领域中一项很有前景且被广泛采用的技术,因其能够制造具有精确界定细胞分布的分层结构、模仿天然组织的替代物而备受关注。尽管取得了显著进展,但合适的生物活性生物墨水供应有限仍然是一个主要挑战,阻碍了有效模仿生物功能的体积组织替代物的构建。因此,这项工作提出了一种富含蛋白质、低成本的生物活性生物墨水:利用大量可得的蛋清粉(EWP)对藻酸盐-甲基纤维素(AlgMC)水凝胶基质进行功能化,并增强细胞反应。所开发的添加EWP的生物墨水不仅保持了良好的可打印性和高形状保真度,还表现出显著的生物活性。值得注意的是,将EWP掺入基于AlgMC的生物墨水中可增强剪切变稀特性,从而提高生物打印构建物中封装细胞的活力。使用三种不同的细胞类型,包括干细胞系、人类柔软皮肤和坚硬骨组织等来源,证明了EWP在生物打印构建物中的多功能性和生物功能性。此外,作为功能组织构建概念验证,在核壳和多通道生物打印策略中示例性地证明了添加EWP的生物墨水在生物制造方面具有广阔的应用前景。这些发现强调了这种新型生物墨水在生物制造和生物医学应用中的巨大和多功能潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43f0/12004440/39ce8ce98a07/ADHM-14-0-g007.jpg

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