Morra Marco, Giavaresi Gianluca, Sartori Maria, Ferrari Andrea, Parrilli Annapaola, Bollati Daniele, Baena Ruggero Rodriguez Y, Cassinelli Clara, Fini Milena
Nobil Bio Ricerche Srl, Via Valcastellana 26, 14037, Portacomaro, AT, Italy.
J Mater Sci Mater Med. 2015 Apr;26(4):159. doi: 10.1007/s10856-015-5483-6. Epub 2015 Mar 19.
The paper presents results of physico-chemical and biological investigations of a surface-engineered synthetic bone filler. Surface analysis confirms that the ceramic phosphate granules present a collagen nanolayer to the surrounding environment. Cell cultures tests show that, in agreement with literature reports, surface-immobilized collagen molecular cues can stimulate progression along the osteogenic pathway of undifferentiated human mesenchymal cells. Finally, in vivo test in a rabbit model of critical bone defects shows statistically significant increase of bone volume and mineral apposition rate between the biomimetic bone filler and collagen-free control. All together, obtained data confirm that biomolecular surface engineering can upgrade the properties of implant device, by promoting more specific and targeted implant-host cells interactions.
本文展示了一种表面工程化合成骨填充材料的物理化学和生物学研究结果。表面分析证实,陶瓷磷酸盐颗粒向周围环境呈现出一层胶原纳米层。细胞培养测试表明,与文献报道一致,表面固定的胶原分子线索可刺激未分化的人间充质细胞沿着成骨途径进展。最后,在兔临界骨缺损模型中的体内测试表明,与无胶原对照相比,仿生骨填充材料的骨体积和矿物质沉积率有统计学上的显著增加。总之,所获得的数据证实,生物分子表面工程可通过促进更具特异性和靶向性的植入物与宿主细胞相互作用来提升植入装置的性能。