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Mussel-inspired polydopamine-mediated surface modification of freeze-cast poly (ε-caprolactone) scaffolds for bone tissue engineering applications

机译:贻贝启发的聚德莫胺介导的骨组织工程应用的冷冻铸造聚(ε-己内酯)支架的表面改性

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摘要

There are many methods used to fabricate the scaffolds for tissue regeneration, among which freeze casting has attracted a great deal of attention due to the capability to create a unidirectional structure. In this study, polycaprolactone (PCL) scaffolds were fabricated by freezecasting technology in order to create porous microstructure with oriented open-pore channels. To induce biomineralization, and to improve hydrophilicity and cell interactions, mussel-inspired polydopamine (PDA) was coated on the surface of the freeze-cast PCL constructs. Then, the synergistic effects of oriented microstructure and deposited layer on efficient reconstruction of injured bone were studied. Microscopic observations demonstrated that, the coated layer did not show any special change in lamellar microstructure of the scaffolds. Water-scaffold interactions were evaluated by contact angle measurements, and they demonstrated strong enhancement in the hydrophilicity of the polymeric scaffolds after PDA coating. Biodegradation ratio and water uptake evaluation confirmed an increase in the measured values after PDA precipitation. The biomineralization of the PDA-coated scaffolds was characterized by field-emission scanning electron microscopy (FE-SEM), energy dispersive X-ray (EDX) and X-ray diffraction (XRD). Obtained results confirmed biomineralization of the constructs after a 28-day immersion in a simulated body fluid (SBF) solution. Mechanical analysis demonstrated higher compressive strength after PDA coating. L929 fibroblast cell viability and attachment illustrated that PDA-coated PCL scaffolds are able to support cell adhesion and proliferation. The increased secretion of alkaline phosphatase (ALP) after culturing osteosarcoma cell lines (MG-63) revealed the initial capability of scaffolds to induce bone regeneration. Therefore, the PDA-coated scaffolds introduce a promising approach for bone tissue engineering application.
机译:有许多用于制造用于组织再生的支架的方法,其中冻铸造引起了由于产生单向结构的能力而引起了大量的关注。在该研究中,通过自由浸出技术制造多己内酯(PCL)支架,以产生具有取向开孔通道的多孔微观结构。为了诱导生物蛋白质,并改善亲水性和细胞相互作用,胶片激发的聚德米胺(PDA)涂覆在冷冻铸造PCL构建体的表面上。然后,研究了导向微观结构和沉积层对受伤骨骼有效重建的协同作用。显微镜观察证明,涂层没有显示支架的层状微观结构的任何特殊变化。通过接触角测量评估水上支架相互作用,并且在PDA涂层之后,它们证明了聚合物支架的亲水性的强大增强。生物降解率和水吸收评估证实PDA沉淀后测量值的增加。通过现场排放扫描电子显微镜(Fe-SEM),能量分散X射线(EDX)和X射线衍射(XRD)的特征在于PDA涂覆的支架的生物丙粒化。得到的结果证实了在模拟体液(SBF)溶液中28天浸渍后的构建体的生物蛋白化。机械分析显示PDA涂层后的抗压强度较高。 L929成纤维细胞活力和附着图示出PDA涂覆的PCL支架能够支持细胞粘附和增殖。培养骨肉瘤细胞系(Mg-63)后碱性磷酸酶(ALP)的分泌揭示了支架诱导骨再生的初始能力。因此,PDA涂覆的支架引入了骨组织工程应用的有希望的方法。

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