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Tailoring of processing parameters for sintering microsphere-based scaffolds with dense-phase carbon dioxide

机译:剪裁加工参数用于烧结基于微球的支架具有致密相二氧化碳

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摘要

Microsphere-based polymeric tissue-engineered scaffolds offer the advantage of shape-specific constructs with excellent spatiotemporal control and interconnected porous structures. The use of these highly versatile scaffolds requires a method to sinter the discrete microspheres together into a cohesive network, typically with the use of heat or organic solvents. We previously introduced subcritical CO2 as a sintering method for microsphere-based scaffolds; here we further explored the effect of processing parameters. Gaseous or subcritical CO2 was used for making the scaffolds, and various pressures, ratios of lactic acid to glycolic acid in poly(lactic acid-co-glycolic acid), and amounts of NaCl particles were explored. By changing these parameters, scaffolds with different mechanical properties and morphologies were prepared. The preferred range of applied subcritical CO2 was 15–25 bar. Scaffolds prepared at 25 bar with lower lactic acid ratios and without NaCl particles had a higher stiffness, while the constructs made at 15 bar, lower glycolic acid content, and with salt granules had lower elastic moduli. Human umbilical cord mesenchymal stromal cells (hUCMSCs) seeded on the scaffolds demonstrated that cells penetrate the scaffolds and remain viable. Overall, the study demonstrated the dependence of the optimal CO2 sintering parameters on the polymer and conditions, and identified desirable CO2 processing parameters to employ in the sintering of microsphere-based scaffolds as a more benign alternative to heat-sintering or solvent-based sintering methods.
机译:基于微球的聚合物组织工程支架提供了具有良好时空控制和互连多孔结构的形状特定构造的优势。这些高度通用的支架的使用需要一种通常通过加热或有机溶剂将不连续的微球烧结成粘结网络的方法。我们以前曾引入亚临界CO2作为基于微球的支架的烧结方法。在这里,我们进一步探讨了加工参数的影响。使用气态或亚临界CO2制备支架,并探索了各种压力,聚乳酸-乙醇酸共聚物中乳酸与乙醇酸的比例以及NaCl颗粒的数量。通过改变这些参数,制备了具有不同机械性能和形态的支架。施加的亚临界CO2的优选范围是15–25 bar。在25 bar下制备的具有较低乳酸比率且不含NaCl颗粒的支架具有较高的刚度,而在15 bar下制备的乙醇酸含量较低且带有盐颗粒的构建体的弹性模量较低。接种在支架上的人脐带间充质基质细胞(hUCMSC)证明细胞穿透支架并保持活力。总的来说,该研究证明了最佳的CO2烧结参数对聚合物和条件的依赖性,并确定了理想的CO2加工参数,可用于微球基支架的烧结,作为热烧结或溶剂基烧结方法的更良性替代方案。

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