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Preparation and characterization of PLA/PCL/HA composite scaffolds using indirect 3D printing for bone tissue engineering

机译:间接3D打印用于骨组织工程的PLA / PCL / HA复合支架的制备和表征

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3D printing-based technologies can fabricate scaffolds offer great precision to control internal architecture and print complicated structures based upon the defect site. However, the materials used in the direct printing are restricted depending on the printing technology used and the indirect one can overcome this limitation. In the present study, indirect 3D printing approach was used to develop bone scaffolds from polylactic acid/poly-caprolactone/hydroxyapatite (PLA/PCL/HA) composites. Casting of the composite suspensions was done into a dissolvable 3D printed negative mold, in order to achieve simultaneous macro- and micro-porous composites, using freeze drying/particle leaching method. To evaluate morphology, functional groups, and elemental analysis of the scaffolds, scanning electron microscopy (SEM), Fourier transform infrared (FTIR), and energy dispersive spectroscopy (EDS) were respectively used. Scaffolds' porosity was measured with the aid of liquid replacement technique. Also, the mechanical strength of scaffolds was examined by compression test and measuring the compressive modulus Considering the microstructure, porosity and pore size as well as mechanical property, the scaffold composed of PLA/PCL 70/30 w/w and 35% HA was more favorable. The PLA/PCL/HA 70/30-35% scaffold presented a porosity of 77%, an average pore size of 160 mu m, and Young's modulus of 1.35 MPa. Cell adhesion, viability and mineral deposits formation for PLA/PCL/HA scaffolds at PLA/PCL ratios of 70/30, 50/50 and 30/70 and the fixed amount of HA (35%) were also studied in vitro by the means of MG63 cells. The cytotoxicity assessment showed that the cells could be viable and proliferate on the scaffolds. The results indicated that composite scaffold with the PLA/PCL weight ratio of70/30 accomplished more favorable properties in terms of biocompatibility, viability, and osteoinduction property.
机译:基于3D打印的技术可以制造脚手架,从而提供了很高的精度来控制内部架构并根据缺陷部位打印复杂的结构。但是,直接打印中使用的材料受所用打印技术的限制,间接打印可以克服这一限制。在本研究中,间接3D打印方法用于从聚乳酸/聚己内酯/羟基磷灰石(PLA / PCL / HA)复合材料开发骨骼支架。使用冷冻干燥/颗粒浸出法将复合材料悬浮液浇铸到可溶解的3D打印负模中,以实现同时的大孔和微孔复合材料。为了评估支架的形态,官能团和元素分析,分别使用了扫描电子显微镜(SEM),傅里叶变换红外(FTIR)和能量分散光谱(EDS)。支架的孔隙率是通过液体置换技术来测量的。另外,通过压缩试验并测量压缩模量来检查支架的机械强度。考虑到微观结构,孔隙率和孔径以及机械性能,由PLA / PCL 70/30 w / w和35%HA组成的支架更多。有利。 PLA / PCL / HA 70 / 30-35%支架的孔隙率为77%,平均孔径为160μm,杨氏模量为1.35 MPa。还通过体外方法研究了PLA / PCL / HA支架在PLA / PCL比为70 / 30、50 / 50和30/70以及固定量HA(35%)时的细胞粘附力,生存力和矿物质沉积物形成MG63细胞。细胞毒性评估表明,这些细胞可能在支架上存活并增殖。结果表明,PLA / PCL重量比为70/30的复合支架在生物相容性,生存力和骨诱导特性方面表现出更有利的性能。

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