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Fabrication of anisotropically aligned nanofibrous scaffolds based on natural/synthetic polymer blends reinforced with cellulose nanocrystals for tendon tissue engineering

机译:基于天然/合成的纤维素纳米晶体增强聚合物共混物的各向异性取向纳米纤维支架的制备,用于肌腱组织工程

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摘要

[Excerpt] Introduction: Tendon disorders and injuries are among the most common musculoskeletal problems and their regeneration after injury remains a significant challenge. Given the prevalent fibrous nature of tendons’ ECM, which exhibits an aligned and hierarchical organization in structures from the nano to the macro scale, uniaxial aligned electrospun nanofibers produced from natural/synthetic polymer blends are among the most successful tendon scaffolds in tissue engineering (TE) strategies[1]. These biomaterials can provide the topographical cues to direct cell adhesion and proliferation, as well as positively affecting cell’s differentiation, phenotype maintenance and matrix deposition. However, the limited mechanical properties of electrospun biomaterials restrict their potential application in this field. In the present study, we propose the use of cellulose nanocrystals (CNCs), the “nature carbon nanotubes”, as a strategy for the reinforcement of electrospun poly­ɛ­caprolactone­chitosan (PCL­C) nanofiber scaffolds without compromising their biological performance and thus expand their potential range of application in tendon TE strategies. (...)
机译:[摘录]简介:肌腱疾病和损伤是最常见的肌肉骨骼问题,受伤后它们的再生仍然是一项重大挑战。鉴于肌腱ECM具有普遍的纤维性质,它在从纳米到宏观的结构中均显示出排列和分层的组织,因此由天然/合成聚合物共混物制成的单轴排列电纺纳米纤维是组织工程(TE)中最成功的腱支架之一)策略[1]。这些生物材料可以提供地形线索来指导细胞粘附和增殖,并积极影响细胞的分化,表型维持和基质沉积。但是,电纺生物材料的有限机械性能限制了它们在该领域的潜在应用。在本研究中,我们建议使用纤维素纳米晶体(CNC),即“自然碳纳米管”,作为增强电纺聚己内酯壳聚糖(PCLC)纳米纤维支架的策略,而不损害其生物学性能,从而扩大其潜在的应用范围在肌腱TE策略中。 (...)

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