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3D Printed PVA–PAA Hydrogel Loaded-Polycaprolactone Scaffold for the Delivery of Hydrophilic In-Situ Formed Sodium Indomethacin

机译:3D打印的PVA-PAA水凝胶负载的聚己内酯支架用于亲水性原位形成吲哚美辛钠的递送

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摘要

3D printed polycaprolactone (PCL)-blended scaffolds have been designed, prepared, and evaluated in vitro in this study prior to the incorporation of a polyvinyl alcohol–polyacrylic acid (PVA–PAA) hydrogel for the delivery of in situ-formed sodium indomethacin. The prepared PCL–PVA–PAA scaffold is proposed as a potential structural support system for load-bearing tissue damage where inflammation is prevalent. Uniaxial strain testing of the PCL-blended scaffolds were undertaken to determine the scaffold’s resistance to strain in addition to its thermal, structural, and porosimetric properties. The viscoelastic properties of the incorporated PVA–PAA hydrogel has also been determined, as well as the drug release profile of the PCL–PVA–PAA scaffold. Results of these analyses noted the structural strength, thermal stability, and porosimetric properties of the scaffold, as well as the ability of the PCL–PVA–PAA scaffold to deliver sodium indomethacin in simulated physiological conditions of pH and temperature. The results of this study therefore highlight the successful design, fabrication, and in vitro evaluation of a 3D printed polymeric strain-resistant supportive platform for the delivery of sodium indomethacin.
机译:在掺入聚乙烯醇-聚丙烯酸(PVA-PAA)水凝胶以递送原位形成吲哚美辛钠之前,已设计,制备和评估了3D打印的聚己内酯(PCL)混合支架。建议将准备好的PCL–PVA–PAA支架作为潜在的结构支撑系统,以应对炎症普遍的承重组织损伤。进行了PCL混合支架的单轴应变测试,以确定支架的热,结构和孔隙率特性,以及应变能力。还确定了掺入的PVA-PAA水凝胶的粘弹性特性,以及PCL-PVA-PAA支架的药物释放曲线。这些分析的结果表明,该支架的结构强度,热稳定性和孔隙率特性以及在模拟的pH和温度生理条件下PCL–PVA–PAA支架递送吲哚美辛钠的能力。因此,这项研究的结果突出了3D打印聚合物抗应变支持平台对吲哚美辛钠递送的成功设计,制造和体外评估。

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