Daculsi G, Bouler J M, LeGeros R Z
Centre de Recherche Interdisciplinaire sur les Tissus Calcifiés et les Biomatériaux, Faculté de Chirurgie Dentaire, Nantes, France.
Int Rev Cytol. 1997;172:129-91. doi: 10.1016/s0074-7696(08)62360-8.
Mineralization and crystal deposition are natural phenomena widely distributed in biological systems from protozoa to mammals. In mammals, normal and pathological calcifications are observed in bones, teeth, and soft tissues or cartilage. We review studies on the adaptive apatite crystal formation in enamel compared with those in other calcified tissues (e.g., dentin, bone, and fish enameloids) and in pathological calcifications, demonstrating the adaptation of these crystals (in terms of crystallinity and orientation) to specific tissues that vary in functions or vary in normal or diseased conditions. The roles of minor elements, such as carbonate, magnesium, fluoride, hydrogen phosphate, pyrophosphate, and strontium ions, on the formation and transformation of biologically relevant calcium phosphates are summarized. Another adaptative process of crystals in biology concerns the recent development of calcium phosphate ceramics and other related biomaterials for bone graft. Bone graft materials are available as alternatives to autogeneous bone for repair, substitution, or augmentation. This paper discusses the adaptive crystal formation in mineralized tissues induced by calcium phosphate and related bone graft biomaterials during bone repair.
矿化和晶体沉积是广泛存在于从原生动物到哺乳动物等生物系统中的自然现象。在哺乳动物中,正常和病理性钙化见于骨骼、牙齿、软组织或软骨。我们综述了与其他钙化组织(如牙本质、骨骼和鱼类釉质)相比,牙釉质中适应性磷灰石晶体形成的研究,以及病理性钙化的研究,展示了这些晶体(在结晶度和取向方面)对功能不同或正常或患病状态不同的特定组织的适应性。总结了微量元素,如碳酸根、镁离子、氟离子、磷酸氢根、焦磷酸根和锶离子,对生物相关磷酸钙形成和转化的作用。生物学中晶体的另一个适应性过程涉及用于骨移植的磷酸钙陶瓷及其他相关生物材料的最新进展。骨移植材料可作为自体骨的替代品用于修复、替代或增强。本文讨论了在骨修复过程中,磷酸钙及相关骨移植生物材料诱导矿化组织中适应性晶体形成的情况。