Biomaterials Laboratory, Materials Department, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS 91501-970, Brazil.
Acta Biomater. 2022 Oct 1;151:70-87. doi: 10.1016/j.actbio.2022.08.040. Epub 2022 Aug 24.
Calcium phosphates are promising materials for applications in bone repair and substitution, particularly for their bioactivity and ability to form self-setting cements. Among them, α-tricalcium phosphate (α-TCP) stands out due to its high solubility, its hydration reaction and bioresorbability. The synthesis of α-TCP is particularly complex and the interactions between some of the synthesis parameters are still not completely understood. The variety of methods available to synthesize α-TCP has provided a substantial variance in the properties of α-TCP-based cements and the decision about which method, parameters and starting reagents will be used for the powder's synthesis is determinant of the properties of the resulting material. Therefore, this review paper focuses on α-TCP's synthesis and properties, presenting the synthesis methods currently in use as well as a discussion of how the synthesis parameters and the cement preparation affect the reactivity and mechanical properties of the material, providing a guide for the selection of the most suitable process for each α-TCP application. STATEMENT OF SIGNIFICANCE: α-TCP is a calcium phosphate and it is currently one of the most investigated bioceramics for applications that explore its bioresorbability and the hydration reaction of α-TCP-based cements. Despite the increasing number of publications on the topic, there are still aspects not well understood. This review article aims at contributing to this fascinating subject by offering an update on the state of the art of α-TCP's synthesis methods, while also addressing topics that are not often discussed about this material, such as the preparation of α-TCP-based cements and how its parameters affect the properties of the resulting cements.
钙磷酸盐是应用于骨修复和替代的有前途的材料,特别是因为它们具有生物活性和形成自凝固水泥的能力。其中,α-磷酸三钙 (α-TCP) 因其高溶解度、水合反应和生物可吸收性而脱颖而出。α-TCP 的合成特别复杂,并且一些合成参数之间的相互作用仍然不完全清楚。α-TCP 的各种合成方法提供了基于α-TCP 的水泥的性质的实质性变化,并且关于使用哪种方法、参数和起始试剂来合成粉末的决定决定了所得材料的性质。因此,本综述文章重点介绍了 α-TCP 的合成和性质,介绍了目前使用的合成方法,并讨论了合成参数和水泥制备如何影响材料的反应性和机械性能,为每种α-TCP 应用选择最合适的工艺提供了指导。
α-TCP 是一种钙磷酸盐,它是目前研究最多的生物陶瓷之一,用于探索其生物可吸收性和基于α-TCP 的水泥的水合反应。尽管关于该主题的出版物越来越多,但仍有一些方面尚未得到很好的理解。本文旨在通过提供对 α-TCP 合成方法的最新研究进展的更新,为这个迷人的主题做出贡献,同时还解决了关于这种材料不常讨论的主题,例如基于α-TCP 的水泥的制备以及其参数如何影响水泥的性质。