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Core/Shell Glycine-Polyvinyl Alcohol/Polycaprolactone Nanofibrous Membrane Intended for Guided Bone Regeneration: Development and Characterization

机译:核/壳甘氨酸 - 聚乙烯醇/聚己内酯纳米纤维膜用于引导骨再生:发展和表征

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Glycine (Gly), which is the simplest amino acid, induces the inflammation response and enhances bone mass density, and particularly its β polymorph has superior mechanical and piezoelectric properties. Therefore, electrospinning of Gly with any polymer, including polyvinyl alcohol (PVA), has a great potential in biomedical applications, such as guided bone regeneration (GBR) application. However, their application is limited due to a fast degradation rate and undesirable mechanical and physical properties. Therefore, encapsulation of Gly and PVA fiber within a poly(ε-caprolactone) (PCL) shell provides a slower degradation rate and improves the mechanical, chemical, and physical properties. A membrane intended for GBR application is a barrier membrane used to guide alveolar bone regeneration by preventing fast-proliferating cells from growing into the bone defect site. In the present work, a core/shell nanofibrous membrane, composed of PCL as shell and PVA:Gly as core, was developed utilizing the coaxial electrospinning technique and characterized morphologically, mechanically, physically, chemically, and thermally. Moreover, the characterization results of the core/shell membrane were compared to monolithic electrospun PCL, PVA, and PVA:Gly fibrous membranes. The results showed that the core-shell membrane appears to be a good candidate for GBR application with a nano-scale fiber of 412 ± 82 nm and microscale pore size of 6.803 ± 0.035 μm. Moreover, the wettability of 47.4 ± 2.2° contact angle (C.A) and mechanical properties of 135 ± 3.05 MPa average modulus of elasticity, 4.57 ± 0.04 MPa average ultimate tensile stress (UTS), and 39.43% ± 0.58% average elongation at break are desirable and suitable for GBR application. Furthermore, the X-ray diffraction (XRD) and transmission electron microscopy (TEM) results exhibited the formation of β-Gly.
机译:甘氨酸(GLY),其是最简单的氨基酸,诱导炎症反应并增强骨质量密度,特别是其β多晶型物具有优异的机械和压电性能。因此,用任何聚合物(包括聚乙烯醇(PVA)的聚合物静电纺丝在生物医学应用中具有很大的潜力,例如引导骨再生(GBR)施用。然而,由于快速降解速率和不希望的机械和物理性质,它们的应用受到限制。因此,聚(ε-己内酯)(PCL)壳内的GLY和PVA纤维的封装提供较慢的降解速率并改善机械,化学和物理性质。用于GBR应用的膜是一种阻隔膜,用于通过防止快速增殖的细胞生长到骨缺损部位来引导肺泡骨再生。在本作工作中,利用同轴电纺丝技术开发了由PCL作为壳和PVA的PCL和PVA组成的核/壳纳米纤维膜:用同轴电纺丝技术,在形态学,机械,物理,化学和热的表征。此外,将芯/壳膜的表征结果与单片电纺器PCL,PVA和PVA进行比较:Gly纤维膜。结果表明,核 - 壳膜似乎是GBR应用的良好候选者,纳米级纤维为412±82nm和微尺寸孔径为6.803±0.035μm。此外,润湿性为47.4±2.2°接触角(CA)和机械性能为135±3.05MPa平均弹性模量,4.57±0.04MPa平均终极拉伸应力(UTS),突破的平均伸长率为39.43%±0.58%理想和适用于GBR应用。此外,X射线衍射(XRD)和透射电子显微镜(TEM)结果表现出β-Gly的形成。

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