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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Evaluation of electrospinning parameters on the tensile strength and suture retention strength of polycaprolactone nanofibrous scaffolds through surface response methodology
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Evaluation of electrospinning parameters on the tensile strength and suture retention strength of polycaprolactone nanofibrous scaffolds through surface response methodology

机译:通过表面响应方法评价静电纺丝参数对聚己内酯纳米纤维支架的拉伸强度和缝合力滞留强度

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Scaffolds should provide sufficient biomechanical support during tissue regeneration for tissue engineering (TE) applications. Electrospun scaffolds are commonly applied in TE applications due to their tunable physical, chemical, and mechanical properties as well as their similarity to extracellular matrix. Although the mechanical properties of electrospun scaffolds are highly dependent on processing parameters, a limited number of studies have systematically investigated this subject. The present study has investigated the effects of the main electrospinning parameters on tensile and suture retention strength of polycaprolactone (PCL) scaffolds using response surface methodology. Scaffolds morphology and cell-scaffold interaction were also investigated in this study. According to the fitted model, polymer concentration and feed rate have the most significant positive effect on both the tensile and suture retention strength. Whereas applied voltage negatively affected both the tensile and suture retention strength. The effect of distance on tensile strength was not significant while its effect on suture retention was different depending on its values. Changes in biomechanical properties were associated with gross alterations in morphology of the fibers and cell-scaffold interaction. Scaffolds with lowest tensile strength presented a beaded morphology while scaffolds with higher tensile strength presented beadless morphology with worm-like fibers. The increase in tensile strength was correlated with the increase in average diameter of the fibers and pore size. The results of cell culture study showed that fibroblasts stretched and proliferated more on scaffolds with lower tensile strength. The generated model might be helpful when PCL scaffold with desirable tensile and suture retention strength are required. Furthermore, the results suggest that changes in morphology and subsequent cell-scaffold interaction should be considered when these biomechanical properties are optimized.
机译:支架应在组织工程(TE)应用中的组织再生期间提供足够的生物力学载体。由于其可调谐物理,化学物质和机械性能以及与细胞外基质的相似性,Electrom un支架通常在TE应用中应用。尽管电纺支架的机械性能高度依赖于加工参数,但系统地研究了有限数量的研究。本研究研究了主要静电纺丝参数对使用响应表面方法的聚己内酯(PCL)支架的拉伸和缝合滞留强度的影响。在本研究中还研究了支架形态和细胞 - 支架相互作用。根据拟合模型,聚合物浓度和进料速率对拉伸和缝合度保持强度具有最显着的积极作用。虽然施加电压对拉伸和缝合度保持强度负面影响。距离对拉伸强度的效果并不显着,而其对缝线潴留的影响取决于其值。生物力学性质的变化与纤维和细胞支架相互作用的形态的粗糙改变有关。具有最低拉伸强度的支架呈现了串珠形态,而具有更高的拉伸强度的支架呈现蠕虫状纤维的珠光珠。拉伸强度的增加与纤维和孔径的平均直径的增加相关。细胞培养研究的结果表明,成纤维细胞在具有较低拉伸强度的支架上拉伸和增殖。当需要具有所需的拉伸和缝合稳定强度的PCL支架时,所产生的模型可能有所帮助。此外,结果表明,当这些生物力学特性优化时,应考虑形态和随后的细胞支架相互作用的变化。

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