Brückner Theresa, Fuchs Andreas, Wistlich Laura, Hoess Andreas, Nies Berthold, Gbureck Uwe
Department for Functional Materials in Medicine and Dentistry, University Hospital Würzburg, Pleicherwall 2, 97070 Würzburg, Germany.
Department of Oral & Maxillofacial Plastic Surgery, University Hospital Würzburg, Pleicherwall 2, 97070 Würzburg, Germany.
Materials (Basel). 2019 Mar 12;12(5):834. doi: 10.3390/ma12050834.
Polycaprolactone (PCL) fiber mats with defined pore architecture were shown to provide sufficient support for a premixed calcium phosphate cement (CPC) paste to serve as a flat and flexible composite material for the potential application in 2-dimensional, curved cranial defects. Fiber mats were fabricated by either melt electrospinning writing (MEW) or solution electrospinning (SES) with a patterned collector. While MEW processed fiber mats led to a deterioration of the cement bending strength by approximately 50%, due to a low fiber volume content in conjunction with a weak fiber-matrix interface, fiber mats obtained by solution electrospinning resulted in a mechanical reinforcement of the cement matrix in terms of both bending strength and absorbed fracture energy. This was attributed to a higher fiber volume content and a large contact area between nanosized fibers and cement matrix. Hydrophilization of the PCL scaffolds prior to lamination further improved composite strength and preserved the comparably higher fracture energy of 1.5 to 2.0 mJ/mm². The laminate composite approach from this study was successful in demonstrating the limitations and design options of such novel composite materials. However, fiber-cement compatibility remains an issue to be addressed, since a high degree of hydrophilicity does not necessarily provoke a stronger interface.
具有特定孔隙结构的聚己内酯(PCL)纤维垫被证明能为预混磷酸钙骨水泥(CPC)糊剂提供足够支撑,使其成为一种扁平且灵活的复合材料,有望应用于二维、弯曲的颅骨缺损修复。纤维垫通过熔体静电纺丝书写(MEW)或使用图案化收集器的溶液静电纺丝(SES)制备。虽然MEW处理的纤维垫由于纤维体积含量低以及纤维 - 基体界面薄弱,导致骨水泥弯曲强度下降约50%,但溶液静电纺丝制备的纤维垫在弯曲强度和吸收的断裂能方面均使骨水泥基体得到机械增强。这归因于更高的纤维体积含量以及纳米纤维与骨水泥基体之间的大接触面积。在层压之前对PCL支架进行亲水化处理进一步提高了复合材料强度,并保持了1.5至2.0 mJ/mm²的相对较高断裂能。本研究中的层压复合方法成功地展示了此类新型复合材料的局限性和设计选择。然而,纤维 - 骨水泥相容性仍然是一个有待解决的问题,因为高度亲水性不一定会引发更强的界面。