首页> 美国卫生研究院文献>International Journal of Biomaterials >Magnesium Oxide Nanoparticles Reinforced Electrospun Alginate-Based Nanofibrous Scaffolds with Improved Physical Properties
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Magnesium Oxide Nanoparticles Reinforced Electrospun Alginate-Based Nanofibrous Scaffolds with Improved Physical Properties

机译:氧化镁纳米颗粒增强电纺藻酸盐基纳米纤维支架具有改善的物理性能

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摘要

Mechanically robust alginate-based nanofibrous scaffolds were successfully fabricated by electrospinning method to mimic the natural extracellular matrix structure which benefits development and regeneration of tissues. Alginate-based nanofibres were electrospun from an alginate/poly(vinyl alcohol) (PVA) polyelectrolyte complex. SEM images revealed the spinnability of the complex composite nanofibrous scaffolds, showing randomly oriented, ultrafine, and virtually defects-free alginate-based/MgO nanofibrous scaffolds. Here, it is shown that an alginate/PVA complex scaffold, blended with near-spherical MgO nanoparticles (⌀ 45 nm) at a predetermined concentration (10% (w/w)), is electrospinnable to produce a complex composite nanofibrous scaffold with enhanced mechanical stability. For the comparison purpose, chemically cross-linked electrospun alginate-based scaffolds were also fabricated. Tensile test to rupture revealed the significant differences in the tensile strength and elastic modulus among the alginate scaffolds, alginate/MgO scaffolds, and cross-linked alginate scaffolds (P < 0.05). In contrast to cross-linked alginate scaffolds, alginate/MgO scaffolds yielded the highest tensile strength and elastic modulus while preserving the interfibre porosity of the scaffolds. According to the thermogravimetric analysis, MgO reinforced alginate nanofibrous scaffolds exhibited improved thermal stability. These novel alginate-based/MgO scaffolds are economical and versatile and may be further optimised for use as extracellular matrix substitutes for repair and regeneration of tissues.
机译:通过电纺方法成功地制备了机械坚固的基于藻酸盐的纳米纤维支架,以模仿天然的细胞外基质结构,从而有利于组织的发育和再生。从藻酸盐/聚(乙烯醇)(PVA)聚电解质复合物电纺基于藻酸盐的纳米纤维。 SEM图像显示了复杂的复合纳米纤维支架的可纺性,显示出随机取向,超细且几乎无缺陷的藻酸盐基/ MgO纳米纤维支架。在此显示,藻酸盐/ PVA复合支架可以电纺成预定浓度(10%(w / w))的近球形MgO纳米颗粒(⌀45 nm),可制成复合增强的复合纳米纤维支架机械稳定性。为了进行比较,还制备了化学交联的电纺藻酸盐基支架。断裂拉伸试验表明,藻酸盐支架,藻酸盐/ MgO支架和交联的藻酸盐支架之间的拉伸强度和弹性模量存在显着差异(P <0.05)。与交联的藻酸盐支架相反,藻酸盐/ MgO支架产生最高的抗张强度和弹性模量,同时保留了支架的纤维间孔隙率。根据热重分析,MgO增强藻酸盐纳米纤维支架表现出改善的热稳定性。这些新颖的基于藻酸盐的/ MgO支架既经济又通用,可以进一步优化以用作细胞外基质替代物,以修复和再生组织。

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