Giannitelli S M, Basoli F, Mozetic P, Piva P, Bartuli F N, Luciani F, Arcuri C, Trombetta M, Rainer A, Licoccia S
Department of Engineering, Tissue Engineering Unit, Università Campus Bio-Medico di Roma, Rome, Italy.
Department of Chemical Science and Technology, University of Rome "Tor Vergata", Rome, Italy.
Mater Sci Eng C Mater Biol Appl. 2015 Jun;51:329-35. doi: 10.1016/j.msec.2015.03.002. Epub 2015 Mar 6.
Bone tissue engineering applications demand for biomaterials offering a substrate for cell adhesion, migration, and proliferation, while inferring suitable mechanical properties to the construct. In the present study, polyurethane (PU) foams were synthesized to develop a graded porous material-characterized by a dense shell and a porous core-for the treatment of oro-maxillary bone defects. Foam was synthesized via a one-pot reaction starting from a polyisocyanate and a biocompatible polyester diol, using water as a foaming agent. Different foaming conditions were examined, with the aim of creating a dense/porous functional graded material that would perform at the same time as an osteoconductive scaffold for bone defect regeneration and as a membrane-barrier to gingival tissue ingrowth. The obtained PU was characterized in terms of morphological and mechanical properties. Biocompatibility assessment was performed in combination with bone-marrow-derived human mesenchymal stromal cells (hBMSCs). Our findings confirm that the material is potentially suitable for guided bone regeneration applications.
骨组织工程应用需要生物材料为细胞黏附、迁移和增殖提供底物,同时赋予构建体合适的机械性能。在本研究中,合成了聚氨酯(PU)泡沫,以开发一种梯度多孔材料——其特征为致密外壳和多孔核心——用于治疗口腔上颌骨缺损。泡沫通过一锅法反应合成,以多异氰酸酯和生物相容性聚酯二醇为起始原料,用水作为发泡剂。研究了不同的发泡条件,目的是创建一种致密/多孔功能梯度材料,该材料同时作为骨缺损再生的骨传导支架和牙龈组织向内生长的膜屏障发挥作用。对所得PU的形态和机械性能进行了表征。结合骨髓来源的人间充质基质细胞(hBMSCs)进行了生物相容性评估。我们的研究结果证实,该材料可能适用于引导性骨再生应用。