BioX Centre, School of Biosciences and Bioengineering, Indian Institute of Technology Mandi, Himachal Pradesh 175075, India.
School of Chemical Sciences and Advanced Materials Research Centre, Indian Institute of Technology Mandi, Himachal Pradesh 175075, India.
Carbohydr Polym. 2022 Nov 15;296:119964. doi: 10.1016/j.carbpol.2022.119964. Epub 2022 Aug 5.
3D printed hydrogels have emerged as a novel tissue engineering and regeneration platform due to their ability to provide a suitable environment for cell growth. To obtain a well-defined scaffold with good post-printing shape fidelity, a proper hydrogel ink formulation plays a crucial role. In this regard, alginate has received booming interest owing to its biocompatibility, biodegradability, easy functionalization, and fast gelling behavior. Hence, this review highlights the significance of alginate-based hydrogel inks for fabricating 3D printed scaffolds for bone and cartilage regeneration. Herein, we discuss the fundamentals of direct extrusion 3D bioprinting method and provide a comprehensive overview of various alginate-based hydrogel ink formulations that have been used so far. We also summarize the requirements of hydrogel inks and 3D printed scaffolds to achieve similarity to the native tissue environment. Finally, we discuss the challenges, and research directions relevant for future clinical translation.
3D 打印水凝胶因其能够为细胞生长提供合适的环境而成为一种新型的组织工程和再生平台。为了获得具有良好后打印形状保真度的明确定义的支架,适当的水凝胶墨水配方起着至关重要的作用。在这方面,由于其生物相容性、可生物降解性、易于功能化和快速胶凝行为,海藻酸盐受到了广泛的关注。因此,本综述强调了基于海藻酸盐的水凝胶墨水在制造用于骨和软骨再生的 3D 打印支架方面的重要性。在这里,我们讨论了直接挤出 3D 生物打印方法的基础,并全面概述了迄今为止使用的各种基于海藻酸盐的水凝胶墨水配方。我们还总结了水凝胶墨水和 3D 打印支架的要求,以实现与天然组织环境的相似性。最后,我们讨论了相关的挑战和研究方向,以实现未来的临床转化。