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A 3D Bioprinted Pseudo-Bone Drug Delivery Scaffold for Bone Tissue Engineering

机译:用于骨组织工程的3D生物制药伪骨药物输送支架

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A 3D bioprinted pseudo-bone drug delivery scaffold was fabricated to display matrix strength, matrix resilience, as well as porous morphology of healthy human bone. Computer-aided design (CAD) software was employed for developing the 3D bioprinted scaffold. Further optimization of the scaffold was undertaken using MATLAB ? software and artificial neural networks (ANN). Polymers employed for formulating the 3D scaffold comprised of polypropylene fumarate (PPF), free radical polymerized polyethylene glycol- polycaprolactone (PEG-PCL-PEG), and pluronic (PF127). Simvastatin was incorporated into the 3D bioprinted scaffolds to further promote bone healing and repair properties. The 3D bioprinted scaffold was characterized for its chemical, morphological, mechanical, and in vitro release kinetics for evaluation of its behavior for application as an implantable scaffold at the site of bone fracture. The ANN-optimized 3D bioprinted scaffold displayed significant properties as a controlled release platform, demonstrating drug release over 20 days. The 3D bioprinted scaffold further displayed formation as a pseudo-bone matrix, using a human clavicle bone model, induced with a butterfly fracture. The strength of the pseudo-bone matrix, evaluated for its matrix hardness (MH) and matrix resilience (MR), was evaluated to be as strong as original bone, having a 99% MH and 98% MR property, to healthy human clavicle bones.
机译:制造了3D生物印刷伪骨药物递送支架以显示基质强度,基质弹性,以及健康人骨的多孔形态。计算机辅助设计(CAD)软件用于开发3D生物印刷脚手架。使用matlab进行支架的进一步优化?软件和人工神经网络(ANN)。用于配制由聚丙烯富马酸丁酸酯(PPF),自由基聚合的聚乙二醇 - 多碳酮(PEG-PCL-PEG)和PLURONIC(PF127)组成的3D支架的聚合物。辛伐他汀掺入3D生物印刷的支架中,以进一步促进骨愈合和修复性质。 3D生物印刷的支架的特征在于其化学,形态,机械和体外释放动力学,用于评估其在骨骨折部位的植入支架中的应用。 ANN优化的3D BioPrinted脚手架显示为受控释放平台的显着性质,展示了20天内的药物释放。使用人锁骨骨模型,将3D生物印刷支架进一步显示为伪骨基质,用蝶形骨折诱导。评价其基质硬度(MH)和基质弹性(MR)评价伪骨基质的强度,并评价为原始骨骼,具有99%MH和98%的MR属性,对健康的人锁骨骨骼。

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