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Additive manufacturing of poly(methyl methacrylate) space maintainers for improved craniofacial repair

机译:聚甲基丙烯酸甲酯空间保持剂的增材制造,以改善颅面修复

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Developing this resin is the first step in studying the structure-function relationships determining optimized drug release kinetics and tissue integration of PMMA implants via 3D-printed geometry. Core precursor resin components were formulated from the same raw materials that make up clinical bone cement to increase potential for expedited scale-up and translation. Compound leachability studies will be conducted according to guidance from previous studies that have characterized similar release from porous PMMA space maintainers.7 Also, other future studies will be conducted that pursue adding antibiotic capability to this polymer through the use of a previously developed, drug-loaded thermo-gelling material.3 These studies will use well-defined, low-variance porosity values to elucidate any effects on drug release kinetics, informing later investigations on these 3D-printed constructs' potential to function in their desired antibacterial and scar-prevention capacities.
机译:开发这种树脂是研究通过3D打印的几何结构确定PMMA植入物的最佳药物释放动力学和组织整合的结构与功能关系的第一步。核心前体树脂成分由构成临床骨水泥的相同原料配制而成,以增加快速放大和翻译的潜力。化合物的浸出性研究将根据先前研究的指导进行,这些研究的特征是从多孔PMMA空间保持剂中释放出类似物质。7此外,还将进行其他未来研究,力求通过使用先前开发的药物- 3这些研究将使用定义明确的低方差孔隙率值来阐明对药物释放动力学的任何影响,从而为以后对这些3D打印结构在其所需的抗菌和预防疤痕中的功能潜力的研究提供参考能力。

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