Department of Biomedical Sciences, University of Illinois College of Medicine at Rockford, Rockford, IL, USA; Pharmaceutical Chemistry Department, Marathwada Mitramandal's College of Pharmacy, Thergaon, Pune, Maharashtra, India.
Department of Biomedical Sciences, University of Illinois College of Medicine at Rockford, Rockford, IL, USA.
Bone. 2023 Jun;171:116746. doi: 10.1016/j.bone.2023.116746. Epub 2023 Mar 23.
In tissue engineering, the fate of a particular organ/tissue regeneration and repair mainly depends on three pillars - 3D architecture, cells used, and stimulus provided. 3D cell supportive structure development is one of the crucial pillars necessary for defining organ/tissue geometry and shape. In recent years, the advancements in 3D bio-printing (additive manufacturing) made it possible to develop very precise 3D architectures with the help of industrial software like Computer-Aided Design (CAD). The main requirement for the 3D printing process is the bio-ink, which can act as a source for cell support, proliferation, drug (growth factors, stimulators) delivery, and organ/tissue shape. The selection of the bio-ink depends upon the type of 3D tissue of interest. Printing tissues like bone and cartilage is always challenging because it is difficult to find printable biomaterial that can act as bio-ink and mimic the strength of the natural bone and cartilage tissues. This review describes different biomaterials used to develop bio-inks with different processing variables and cell-seeding densities for bone and cartilage 3D printing applications. The review also discusses the advantages, limitations, and cell bio-ink compatibility in each biomaterial section. The emphasis is given to bio-inks reported for 3D printing cartilage and bone and their applications in orthopedics and orthodontists. The critical/important performance and the architectural morphology requirements of desired bone and cartilage bio-inks were compiled in summary.
在组织工程学中,特定器官/组织的再生和修复的命运主要取决于三个支柱——3D 架构、使用的细胞和提供的刺激。3D 细胞支持结构的发展是定义器官/组织几何形状和形状的关键支柱之一。近年来,3D 生物打印(增材制造)的进步使得在计算机辅助设计 (CAD) 等工业软件的帮助下开发非常精确的 3D 结构成为可能。3D 打印过程的主要要求是生物墨水,它可以作为细胞支持、增殖、药物(生长因子、刺激剂)输送和器官/组织形状的来源。生物墨水的选择取决于感兴趣的 3D 组织类型。打印骨骼和软骨等组织一直具有挑战性,因为很难找到可打印的生物材料作为生物墨水,以模拟天然骨骼和软骨组织的强度。本综述描述了用于开发具有不同加工变量和细胞接种密度的生物墨水的不同生物材料,用于骨骼和软骨 3D 打印应用。本综述还讨论了每个生物材料部分的优点、局限性和细胞生物墨水相容性。重点介绍了用于 3D 打印软骨和骨骼的生物墨水及其在矫形和正畸中的应用。总结了所需的骨骼和软骨生物墨水的关键/重要性能和结构形态要求。