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A Bioactive Hydrogel and 3D Printed Polycaprolactone System for Bone Tissue Engineering

机译:用于骨组织工程的生物活性水凝胶和3D打印的聚己内酯系统

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摘要

In this study, a hybrid system consisting of 3D printed polycaprolactone (PCL) filled with hydrogel was developed as an application for reconstruction of long bone defects, which are innately difficult to repair due to large missing segments of bone. A 3D printed gyroid scaffold of PCL allowed a larger amount of hydrogel to be loaded within the scaffolds as compared to 3D printed mesh and honeycomb scaffolds of similar volumes and strut thicknesses. The hydrogel was a mixture of alginate, gelatin, and nano-hydroxyapatite, infiltrated with human mesenchymal stem cells (hMSC) to enhance the osteoconductivity and biocompatibility of the system. Adhesion and viability of hMSC in the PCL/hydrogel system confirmed its cytocompatibility. Biomineralization tests in simulated body fluid (SBF) showed the nucleation and growth of apatite crystals, which confirmed the bioactivity of the PCL/hydrogel system. Moreover, dissolution studies, in SBF revealed a sustained dissolution of the hydrogel with time. Overall, the present study provides a new approach in bone tissue engineering to repair bone defects with a bioactive hybrid system consisting of a polymeric scaffold, hydrogel, and hMSC.
机译:在这项研究中,开发了一种混合系统,该系统由填充有水凝胶的3D打印聚己内酯(PCL)组成,可用于重建长骨缺损,由于骨缺损较大,这些缺损本来就很难修复。与具有类似体积和支杆厚度的3D打印网状和蜂窝状支架相比,PCL的3D打印的类固醇支架允许在支架中装载大量水凝胶。水凝胶是藻酸盐,明胶和纳米羟基磷灰石的混合物,浸润了人间充质干细胞(hMSC)以增强系统的骨传导性和生物相容性。 hMSC在PCL /水凝胶系统中的粘附力和生存力证实了其细胞相容性。在模拟体液(SBF)中的生物矿化测试显示出磷灰石晶体的成核和生长,这证实了PCL /水凝胶系统的生物活性。此外,在SBF中的溶出度研究表明水凝胶随时间持续溶出。总体而言,本研究提供了一种由生物活性混合系统修复骨骼缺损的新方法,该系统由聚合物支架,水凝胶和hMSC组成。

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