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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Designing Poly[(R)-3-hydroxybutyrate]-Based Polyurethane Block Copolymers for Electrospun Nanofiber Scaffolds with Improved Mechanical Properties and Enhanced Mineralization Capability
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Designing Poly[(R)-3-hydroxybutyrate]-Based Polyurethane Block Copolymers for Electrospun Nanofiber Scaffolds with Improved Mechanical Properties and Enhanced Mineralization Capability

机译:设计具有改进的机械性能和增强的矿化能力的静电纺纳米纤维支架的聚[(R)-3-羟基丁酸酯]基聚氨酯嵌段共聚物

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Efforts to mineralize electrospun hydrophobic polyester scaffold often require prior surface modification such as plasma or alkaline treatment, which may affect the mechanical integrity of the resultant scaffold. Here through rational design we developed a series of polyurethane block copolymers containing poly[(R)-3-hydroxybutyrate] (PHB) as hard segment and poly(efhylene glycol) (PEG) as soft segment that could be easily fabricated into mineralizable electrospun scaffold without the need of additional surface treatment. To ensure that the block copolymers do not swell excessively in water, PEG content in the polymers was kept below 50 wt %. To obtain good dry and hydrated state mechanical properties with limited PEG, low-molecular-weight PHB-diol with M_n 1230 and 1790 were used in various molar feed ratios. The macromolecular characteristics of the block copolymers were confirmed by ~1H NMR spectroscopy, gel permeation chromatography (GPC), and thermal gravimetric analyses (TGA). With the incorporation of the hydrophilic PEG segments, the surface and bulk hydrophilicity of the block copolymers were significantly improved. Differential scanning calorimetry (DSC) revealed that the block copolymers had low PHB crystallinity and no PEG crystallinity. This was further confirmed by X-ray diffraction analyses (XRD) in both dry and hydrated states. With short PHB segments and soft PEG coupled together, the block copolymers were no longer brittle. Tensile measurements showed that the block copolymers with higher PEG content or shorter PHB segments were more ductile. Furthermore, their ductility was enhanced in hydrated states with one particular example showing increment in strain at break from 1090 to 1962%. The block copolymers were fabricated into an electrospun fibrous scaffold that was easily mineralized by simple incubation in simulated body fluid. The materials have good potential for bone regeneration application and may be extended to other applications by simply coating them with other biologically active substances.
机译:使电纺疏水聚酯支架矿化的努力通常需要事先进行表面改性,例如等离子体或碱处理,这可能会影响所得支架的机械完整性。在这里,通过合理的设计,我们开发了一系列聚氨酯嵌段共聚物,其中包含以聚[[R] -3-羟基丁酸酯](PHB)作为硬链段和以聚(乙二醇)(PEG)作为软链段的聚氨酯嵌段共聚物,可以轻松地制成可矿化的电纺支架无需额外的表面处理。为了确保嵌段共聚物在水中不会过度溶胀,将聚合物中的PEG含量保持在50重量%以下。为了在有限的PEG的条件下获得良好的干燥和水合状态机械性能,使用M_n 1230和1790的低分子量PHB-二醇以各种摩尔进料比使用。通过〜1H NMR光谱,凝胶渗透色谱(GPC)和热重分析(TGA)确认了嵌段共聚物的大分子特性。随着亲水性PEG链段的引入,嵌段共聚物的表面和本体亲水性得到显着改善。差示扫描量热法(DSC)显示该嵌段共聚物具有低PHB结晶度且没有PEG结晶度。干燥和水合状态下的X射线衍射分析(XRD)进一步证实了这一点。通过短PHB链段和软PEG偶联在一起,嵌段共聚物不再变脆。拉伸测量表明,具有较高PEG含量或较短PHB链段的嵌段共聚物具有更高的延展性。此外,它们的延展性在水合状态下得到增强,其中一个特定的例子表明断裂应变从1090%增加到1962%。将该嵌段共聚物制成电纺纤维支架,通过在模拟体液中进行简单孵育即可使其容易矿化。该材料具有良好的骨再生应用潜力,可以通过简单地用其他生物活性物质包被来扩展到其他应用。

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