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Applications of Alginate-Based Bioinks in 3D Bioprinting

机译:基于藻酸盐的生物墨水在3D生物打印中的应用

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摘要

Three-dimensional (3D) bioprinting is on the cusp of permitting the direct fabrication of artificial living tissue. Multicellular building blocks (bioinks) are dispensed layer by layer and scaled for the target construct. However, only a few materials are able to fulfill the considerable requirements for suitable bioink formulation, a critical component of efficient 3D bioprinting. Alginate, a naturally occurring polysaccharide, is clearly the most commonly employed material in current bioinks. Here, we discuss the benefits and disadvantages of the use of alginate in 3D bioprinting by summarizing the most recent studies that used alginate for printing vascular tissue, bone and cartilage. In addition, other breakthroughs in the use of alginate in bioprinting are discussed, including strategies to improve its structural and degradation characteristics. In this review, we organize the available literature in order to inspire and accelerate novel alginate-based bioink formulations with enhanced properties for future applications in basic research, drug screening and regenerative medicine.
机译:三维(3D)生物打印正处于风口浪尖,可以直接制造人造活体组织。多细胞构建块(生物墨水)逐层分配,并按目标构建体缩放。但是,只有少数几种材料能够满足合适的生物墨水配方(高效3D生物打印的关键组成部分)的相当大的要求。藻酸盐(一种天然存在的多糖)显然是当前生物墨水中最常用的材料。在这里,我们通过总结使用藻酸盐打印血管组织,骨骼和软骨的最新研究来讨论在3D生物打印中使用藻酸盐的利弊。此外,还讨论了在生物打印中使用藻酸盐的其他突破,包括改善其结构和降解特性的策略。在这篇综述中,我们整理了可用的文献,以激发和加速新型的基于藻酸盐的生物油墨配方,这些配方具有增强的性能,可用于基础研究,药物筛选和再生医学的未来应用。

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