Advances of calcium phosphate nanoceramics for the osteoinductive potential and mechanistic pathways in maxillofacial bone defect repair

Yifan Gou , Kailong Qi , Yige Wei , Zhipeng Gu , Huixu Xie
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Abstract

Maxillofacial bone defects, arising from congenital malformations, tumors, infections, and traumas, represent a common clinical condition that impairs patients' appearance, speech, and motor functions. Calcium phosphate nanoceramics, which bear a chemical composition similar to autologous bone, demonstrate strong biocompatibility and osteoconductivity, making them an extensively applied material in bone defect repairing. Notably, these nanoceramics exhibit inherent osteoinductive properties ,which can stimulate osteogenesis at non-osseous sites ,without the need for additional cells or growth factors, these aspects further expand their application in bone repair. Nevertheless, the precise osteoinductive mechanism of calcium phosphate nanoceramics remains elusive, and differences in vivo individual persist, thereby academic communities need to resolve the pressing issues that restrict their use. This paper reviews the advancements in research on the properties of calcium phosphate nanoceramics and the factors affecting the biological process of bone formation, aiming to provide new insights for the treatment of maxillofacial bone defects.

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磷酸钙纳米陶瓷在颌面骨缺损修复中的骨诱导潜力和机制途径研究进展
由先天畸形、肿瘤、感染和创伤引起的颌面部骨缺损是一种常见的临床症状,会影响患者的外观、语言和运动功能。磷酸钙纳米陶瓷的化学成分与自体骨相似,具有很强的生物相容性和骨传导性,是一种广泛应用于骨缺损修复的材料。值得注意的是,这些纳米陶瓷具有固有的骨诱导特性,可以刺激非骨质部位的骨生成,而不需要额外的细胞或生长因子,这些方面进一步扩大了它们在骨修复中的应用。尽管如此,磷酸钙纳米陶瓷的精确诱导骨生成机制仍然难以捉摸,体内个体差异依然存在,因此学术界亟需解决制约其应用的迫切问题。本文综述了有关纳米磷酸钙陶瓷特性和骨形成生物过程影响因素的研究进展,旨在为颌面骨缺损的治疗提供新的见解。
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