Ghosh Satyabrata, Viana Júlio C, Reis Rui L, Mano João F
3B's Research Group, Biomaterials, Biodegradables and Biomimetics, University of Minho, Campus de Gualtar, Braga, Portugal.
Acta Biomater. 2008 Jul;4(4):887-96. doi: 10.1016/j.actbio.2008.03.001. Epub 2008 Mar 18.
A novel fabrication technique is proposed for the preparation of unidirectionally oriented, porous scaffolds by selective polymer leaching from lamellar structures created by conventional injection molding. The proof of the concept is implemented using a 50/50 wt.% poly(L-lactic acid)/poly(ethylene oxide) (PLLA/PEO) blend. With this composition, the PLLA and PEO blend is biphasic, containing a homogeneous PLLA/PEO phase and a PEO-rich phase. The two phases were structured using injection molding into well-defined alternating layers of homogeneous PLLA/PEO phase and PEO-rich phase. Leaching of water-soluble PEO from the PEO-rich phase produces macropores, and leaching of phase-separated PEO from the initially homogeneous PLLA/PEO phase produces micropores in the lamellae. Thus, scaffolds with a macroporous lamellar architecture with microporous walls can be produced. The lamellae are continuous along the flow direction, and a continuous lamellar thickness of less than 1 microm could be achieved. Porosities of 57-74% and pore sizes of around 50-100 microm can be obtained using this process. The tensile elastic moduli of the porous constructs were between 580 and 800 MPa. We propose that this organic-solvent-free method of preparing lamellar scaffolds with good mechanical properties, and the reproducibility associated with the injection molding technique, holds promise for a wide range of guided tissue engineering applications.
本文提出了一种新颖的制造技术,用于通过从传统注塑成型产生的层状结构中选择性地浸出聚合物来制备单向取向的多孔支架。使用50/50 wt.% 的聚(L-乳酸)/聚(环氧乙烷)(PLLA/PEO)共混物来实现这一概念验证。采用这种组成时,PLLA和PEO共混物是双相的,包含均匀的PLLA/PEO相和富含PEO的相。通过注塑成型将这两个相构建成均匀的PLLA/PEO相和富含PEO相的明确交替层。从富含PEO的相中浸出水溶性PEO会产生大孔,而从最初均匀的PLLA/PEO相中浸出相分离的PEO会在薄片中产生微孔。因此,可以制备出具有微孔壁的大孔层状结构的支架。薄片沿流动方向是连续的,并且可以实现小于1微米的连续层厚度。使用该工艺可获得57-74% 的孔隙率和约50-100微米的孔径。多孔结构的拉伸弹性模量在580至800 MPa之间。我们认为,这种制备具有良好机械性能的层状支架的无有机溶剂方法以及与注塑成型技术相关的可重复性,在广泛的引导组织工程应用中具有前景。