首页> 外文OA文献 >Thermo-Mechanical Properties of Poly ε-Caprolactone/Poly L-Lactic Acid Blends: Addition of Nalidixic Acid and Polyethylene Glycol Additives Journal of the Mechanical Behavior of Biomedical Materials
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Thermo-Mechanical Properties of Poly ε-Caprolactone/Poly L-Lactic Acid Blends: Addition of Nalidixic Acid and Polyethylene Glycol Additives Journal of the Mechanical Behavior of Biomedical Materials

机译:聚ε-己内酯/聚L-乳酸共混物的热机械性能:萘啶酸和聚乙二醇添加剂的添加生物医学材料力学行为杂志

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摘要

The search for ideal biomaterials is still on-going for tissue regeneration. In this study, blends of Poly ε-caprolactone (PCL) with Poly l-lactic acid (PLLA), Nalidixic Acid (NA) and Polyethylene glycol (PEG) were prepared. Mechanical and thermal properties of the blends were investigated by tensile and flexural analysis, DSC, TGA, WXRD, MFI, BET, SEM and hot stage optical microscopy. Results showed that the loading of PLLA caused a significant decrease in tensile strength and almost total eradication of the elongation at break of PCL matrix, especially after PEG and NA addition. Increased stiffness was also noted with additional NA, PEG and PLLA, resulting in an increase in the flexural modulus of the blends. Isothermal degradation indicated that bulk PCL, PLLA and the blends were thermally stable at 200°C for the duration of 2h making extrusion of the blends at this temperature viable. Morphological study showed that increasing the PLLA content and addition of the very low viscosity PEG and powder NA decreased the Melt Flow Indexer and increased the viscosity. At the higher temperature the PLLA begins to soften and eventually melts allowing for increased flow and, coupling this with, the natural increase in MFI caused by temperature is enhanced further. The PEG and NA addition increased dramatically the pore volume which is important for cell growth and flow transport of nutrients and metabolic waste.
机译:寻找理想的生物材料的组织再生仍在进行中。在这项研究中,制备了聚ε-己内酯(PCL)与聚1-乳酸(PLLA),萘啶酸(NA)和聚乙二醇(PEG)的共混物。通过拉伸和弯曲分析,DSC,TGA,WXRD,MFI,BET,SEM和热台光学显微镜研究了共混物的机械和热性能。结果表明,PLLA的加载导致拉伸强度显着降低,PCL基质断裂伸长率几乎完全消除,尤其是在加入PEG和NA后。附加的NA,PEG和PLLA也增加了刚度,导致共混物的挠曲模量增加。等温降解表明,本体PCL,PLLA和共混物在200°C下热稳定2h,使共混物在此温度下可行。形态学研究表明,增加PLLA含量以及添加极低粘度的PEG和粉末NA会降低熔体流动指数并增加粘度。在较高的温度下,PLLA开始软化并最终熔化,从而允许增加的流量,与此相结合,温度引起的MFI自然增加会进一步增强。 PEG和NA的添加显着增加了孔的体积,这对于细胞生长以及营养物质和代谢废物的流动运输非常重要。

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