Department of Plastic Surgery, Peking University Third Hospital, Beijing, China.
Tissue Eng Part B Rev. 2024 Oct;30(5):507-521. doi: 10.1089/ten.teb.2023.0280. Epub 2024 Apr 3.
With the increasing prevalence of bone tissue diseases, three-dimensional (3D) bioprinting applied to bone tissue engineering for treatment has received a lot of interests in recent years. The research and popularization of 3D bioprinting in bone tissue engineering require bioinks with good performance, which is closely related to ideal material and appropriate construction form. Hydroxyapatite (HAp) is the inorganic component of natural bone and has been widely used in bone tissue engineering and other fields due to its good biological and physicochemical properties. Previous studies have prepared different bioinks containing HAp and evaluated their properties in various aspects. Most bioinks showed significant improvement in terms of rheology and biocompatibility; however, not all of them had sufficiently favorable mechanical properties and antimicrobial activity. The deficiencies in properties of bioink and 3D bioprinting technology limited the applications of bioinks containing HAp in clinical trials. This review article summarizes the construction forms of bioinks containing HAp and its modifications in previous studies, as well as the 3D bioprinting techniques adopted to print bioink containing HAp. In addition, this article summarizes the advantages and underlying mechanisms of bioink containing HAp, as well as its limitations, and suggests possible improvement to facilitate the development of bone tissue engineering bioinks containing HAp in the future.
随着骨组织疾病的患病率不断增加,近年来,应用于骨组织工程治疗的三维(3D)生物打印技术受到了广泛关注。骨组织工程中 3D 生物打印的研究和推广需要具有良好性能的生物墨水,这与理想的材料和适当的构建形式密切相关。羟基磷灰石(HAp)是天然骨的无机成分,由于其良好的生物和物理化学性能,已被广泛应用于骨组织工程等领域。先前的研究已经制备了不同的含有 HAp 的生物墨水,并从各个方面评估了它们的性能。大多数生物墨水在流变学和生物相容性方面表现出显著改善;然而,并非所有生物墨水都具有足够优良的机械性能和抗菌活性。生物墨水和 3D 生物打印技术的性能缺陷限制了含有 HAp 的生物墨水在临床试验中的应用。本文综述了以前研究中含有 HAp 的生物墨水的构建形式及其修饰,以及用于打印含有 HAp 的生物墨水的 3D 生物打印技术。此外,本文还总结了含有 HAp 的生物墨水的优点及其潜在机制,以及其局限性,并提出了可能的改进方法,以促进未来含有 HAp 的骨组织工程生物墨水的发展。