State Key Laboratory of Metastable Materials Science and Technology, Hebei Key Laboratory of Applied Chemistry, Hebei Key Laboratory of Nanobiotechnology, Hebei Key Laboratory of Heavy Metal Deep-Remediation in Water and Resource Reuse, Yanshan University, Qinhuangdao 066004, China.
State Key Laboratory of Metastable Materials Science and Technology, Hebei Key Laboratory of Applied Chemistry, Hebei Key Laboratory of Nanobiotechnology, Hebei Key Laboratory of Heavy Metal Deep-Remediation in Water and Resource Reuse, Yanshan University, Qinhuangdao 066004, China.
Int J Biol Macromol. 2024 Nov;279(Pt 3):135227. doi: 10.1016/j.ijbiomac.2024.135227. Epub 2024 Aug 30.
Bone implantation is one of the recognized and effective means of treating bone defects, but osteoporosis and bone tumor-related bone abnormalities have a series of problems such as susceptibility to infection, difficulty in healing, and poor therapeutic effect, which poses a great challenge to clinical medicine. Three-dimensional things may be printed using 3D printing. Researchers can feed materials through the printer layer by layer to create the desired shape for a 3D structure. It is widely employed in the healing of bone defects, and it is an improved form of additive manufacturing technology with prospective future applications. This review's objective is to provide an overview of the findings reports pertaining to 3D printing biopolymers in recent years, provide an overview of biopolymer materials and their composites with black phosphorus for 3D printing bone implants, and the characterization methods of composite materials are also summarized. In addition, summarizes 3D printing methods based on ink printing and laser printing, pointing out their special features and advantages, and provide a combination strategy of photothermal therapy and bone regeneration materials for black phosphorus-based materials. Finally, the associations between bone implant materials and immune cells, the bio-environment, as well as the 3D printing bone implants prospects are outlined.
骨植入是治疗骨缺损的公认有效手段之一,但骨质疏松症和骨肿瘤相关的骨异常存在易感染、愈合困难和治疗效果差等一系列问题,这对临床医学提出了巨大挑战。可以使用 3D 打印来打印三维物体。研究人员可以通过打印机逐层进料,为 3D 结构创建所需的形状。它广泛应用于骨缺损的愈合中,是一种改进的增材制造技术,具有广阔的应用前景。本综述的目的是概述近年来关于 3D 打印生物聚合物的研究结果报告,概述用于 3D 打印骨植入物的生物聚合物材料及其与黑磷的复合材料,以及复合材料的表征方法。此外,总结了基于喷墨打印和激光打印的 3D 打印方法,指出了它们的特点和优势,并为基于黑磷的材料提供了光热治疗和骨再生材料的组合策略。最后,概述了骨植入材料与免疫细胞、生物环境以及 3D 打印骨植入物的前景之间的联系。