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Mechanical, material, and biological study of a PCL/bioactive glass bone scaffold: Importance of viscoelasticity

机译:PCL /生物活性玻璃骨支架的力学,材料和生物学研究:粘弹性的重要性

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Microsphere sintering method was used to fabricate bone tissue engineering scaffolds made of polycaprolactone (PCL)/bioactive glass 58S5Z (58S modified with 5 wt% Zinc). First, the effect of PCL/58S5Z ratio on the mechanical properties (elastic modulus and yield strength) was investigated. It was found that samples with 5 wt% 58S5Z (named 5%BG) had the highest elastic modulus and yield strength among all samples, i.e., with 0, 5, 10, and 20 wt% bioactive glass. Then, considering the importance of viscoelastic properties of bone, the viscoelastic behavior of 0%BG (scaffold with only PCL) and 5%BG samples was determined by performing compressive stress relaxation test and subsequently a Generalized Maxwell model was developed. Findings indicated a similar amount and pattern of predicted storage and loss moduli and loss factor of the composite scaffolds to those of the bone. In the next step, the analysis of biological behavior of the scaffolds using MTT assay, DAPI and Alizarin red staining demonstrated that 5%BG scaffolds had higher in vitro cell viability and bone formation compared to 0% BG ones. Furthermore, in vivo study employing H&E staining of the scaffolds implanted in rats' calvarium for 50 days, confirmed the earlier findings and showed that 5%BG-filled defects had higher and more uniform bone formation compared to both 0%BG-filled and empty defects.
机译:微球烧结法用于制造由聚己内酯(PCL)/生物活性玻璃58S5Z(用5 wt%的锌改性的58S)制成的骨组织工程支架。首先,研究了PCL / 58S5Z比对机械性能(弹性模量和屈服强度)的影响。已发现在所有样品中,即具有0、5、10和20wt%的生物活性玻璃,具有5wt%的58S5Z(称为5%BG)的样品具有最高的弹性模量和屈服强度。然后,考虑到骨的粘弹性质的重要性,通过进行压缩应力松弛试验来确定0%BG(仅具有PCL的脚手架)和5%BG样品的粘弹性行为,随后建立了广义Maxwell模型。研究结果表明,复合材料支架的预期存储量,模量和损耗因子与骨骼相似。在下一步中,使用MTT分析,DAPI和茜素红染色分析支架的生物学行为,表明5%BG支架比0%BG支架具有更高的体外细胞活力和骨形成。此外,体内研究对大鼠颅骨中植入的支架进行了H&E染色50天,证实了较早的发现,并表明与0%BG填充和空置相比,5%BG填充的缺损具有更高且更均匀的骨形成缺陷。

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