Department of Chemistry, University of York, Heslington, YO10 5DD, UK.
J Mater Chem B. 2020 Sep 23;8(36):8171-8188. doi: 10.1039/d0tb01005g.
3D-Bioprinting has seen a rapid expansion in the last few years, with an increasing number of reported bioinks. Alginate is a natural biopolymer that forms hydrogels by ionic cross-linking with calcium ions. Due to its biocompatibility and ease of gelation, it is an ideal ingredient for bioinks. This review focuses on recent advances on bioink formulations based on the combination of alginate with other polysaccharides. In particular, the molecular weight of the alginate and its loading level have an impact on the material's performance, as well as the loading of the divalent metal salt and its solubility, which affects the cross-linking of the gel. Alginate is often combined with other polysaccharides that can sigificantly modify the properties of the gel, and can optimise alginate for use in different biological applications. It is also possible to combine alginate with sacrificial polymers, which can temporarily reinforce the 3D printed construct, but then be removed at a later stage. Other additives can be formulated into the gels to enhance performance, including nanomaterials that tune rheological properties, peptides to encourage cell adhesion, or growth factors to direct stem cell differentiation. The ease of formulating multiple components into alginate gels gives them considerable potential for further development. In summary, this review will facilitate the identification of different alginate-polysaccharide bioink formulations and their optimal applications, and help inform the design of second generation bioinks, allowing this relatively simple gel system to achieve more sophisticated control over biological processes.
3D 生物打印在过去几年中迅速发展,越来越多的报道涉及生物墨水。海藻酸盐是一种天然生物聚合物,通过与钙离子的离子交联形成水凝胶。由于其生物相容性和易于凝胶化,它是生物墨水的理想成分。本综述重点介绍了基于海藻酸盐与其他多糖结合的生物墨水配方的最新进展。特别是,海藻酸盐的分子量及其负载水平对材料性能有影响,以及二价金属盐的负载及其溶解度,这会影响凝胶的交联。海藻酸盐通常与其他多糖结合使用,这些多糖可以显著改变凝胶的性质,并优化海藻酸盐在不同生物应用中的使用。也可以将海藻酸盐与牺牲性聚合物结合使用,这些聚合物可以暂时增强 3D 打印结构,但随后在稍后阶段去除。其他添加剂可以被配方成凝胶以增强性能,包括调节流变性质的纳米材料、促进细胞黏附的肽或指导干细胞分化的生长因子。将多种成分轻松地配方成海藻酸盐凝胶赋予了它们进一步发展的巨大潜力。总之,本综述将有助于识别不同的海藻酸盐-多糖生物墨水配方及其最佳应用,并有助于设计第二代生物墨水,使这个相对简单的凝胶系统能够对生物过程实现更复杂的控制。