Tampieri Anna, Tavoni Marta, Vicidomini Teresa, Inam Hina, Restivo Elisa, Visai Livia, Romeo Umberto, Sprio Simone
Institute of Science, Technology and Sustainability for Ceramics, Italian National Research Council (ISSMC-CNR), Faenza, Italy.
Department of Oral and Maxillofacial Sciences, Sapienza University of Rome, Rome, Italy.
J Mater Sci Mater Med. 2025 Apr 8;36(1):31. doi: 10.1007/s10856-025-06879-2.
Bone regeneration in oral surgery remains a challenge, due to the features of the oral environment, characterized by the presence of saliva and extensive interaction with external pathogens. Recent advances in this field highlighted that biomimetic apatites in which Ca is replaced by Fe/Fe ions are promising candidates to guide bone regeneration with on demand activation control. In this study the Fe-doped apatite nanoparticles (FeHA) were developed and compared with magnetite nanoparticles, as new magnetic bio-activator, to be embedded in apatitic injectable paste/cement. Upon self-hardening, the new injectable cement generates a mechanically competent 3D superparamagnetic scaffold, endowed with remote activation by using static magnetic fields. We investigated the alkaline phosphatase expression and activity, as well as the behaviour of cells, when seeded onto the scaffold. The results show the ability of the cement to stimulate cell colonization and differentiation and how, when magnetized, they can further boost such phenomena. The proposed devices, in association with a magnetic aligner, can represent a new approach in oral surgery, able to tune the bone remodelling on demand, when the regenerative potential is impaired by physiological conditions such as aging or chronic diseases.
由于口腔环境的特点,即存在唾液且与外部病原体广泛相互作用,口腔外科中的骨再生仍然是一项挑战。该领域的最新进展表明,其中钙被铁/铁离子取代的仿生磷灰石是有望通过按需激活控制来引导骨再生的候选材料。在本研究中,开发了铁掺杂磷灰石纳米颗粒(FeHA),并将其与磁铁矿纳米颗粒作为新型磁性生物激活剂进行比较,以嵌入磷灰石可注射糊剂/骨水泥中。自硬化后,新型可注射骨水泥生成具有机械强度的三维超顺磁支架,通过使用静磁场实现远程激活。我们研究了接种到支架上时碱性磷酸酶的表达和活性以及细胞的行为。结果显示了骨水泥刺激细胞定植和分化的能力,以及磁化后它们如何进一步促进这些现象。所提出的装置与磁性矫治器相结合,可以代表口腔外科中的一种新方法,当再生潜力因衰老或慢性疾病等生理状况而受损时,能够按需调节骨重塑。