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Click chemistry approach for fabricating PVA/gelatin nanofibers for the differentiation of ADSCs to keratinocytes

机译:单击化学方法制造PVA /明胶纳米纤维,以将ADSC分化为角质形成细胞

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摘要

Every year, millions of people suffer from dermal wounds caused by heat, fire, chemicals, electricity, ultraviolet radiation or disease. Tissue engineering and nanotechnology have enabled the engineering of nano-structured materials to meet the current challenges in skin treatments owing to such rising occurrences of accidental damages, skin diseases and defects. The abundance and accessibility of adipose derived stem cells (ADSCs) may prove to be novel cell therapeutics for skin regeneration. The nanofibrous PVA/gelatin/azide scaffolds were then fabricated by electrospinning using water as solvent and allowed to undergo click reaction. The scaffolds were characterized by SEM, contact angle and FTIR. The cell-scaffold interactions were analyzed by cell proliferation and the results observed that the rate of cell proliferation was significantly increased (P ≤ 0.05) on PV A/gelatin/ azide scaffolds compared to PV A/gelatin nanofibers. In the present study, manipulating the biochemical cues by the addition of an induction medium, in combination with environmental and physical factors of the culture substrate by functionalizing with click moieties, we were able to drive ADSCs into epidermal lineage with the development of epidermis-like structures, was further confirmed by the expression of early and intermediate epidermal differentiation markers like keratin and filaggrin. This study not only provides an insight into the design of a site-specific niche-like microenvironment for stem cell lineage commitment, but also sheds light on the therapeutic application of an alternative cell source-ADSCs, for wound healing and skin tissue reconstitution.
机译:每年,成千上万人遭受由热,火,化学药品,电,紫外线辐射或疾病引起的皮肤伤口。组织工程和纳米技术已经使纳米结构材料的工程技术能够应对皮肤治疗方面的当前挑战,这是由于意外伤害,皮肤疾病和缺陷的发生率不断上升。脂肪干细胞(ADSCs)的丰富性和可及性可被证明是皮肤再生的新型细胞疗法。然后通过使用水作为溶剂进行电纺丝来制备纳米纤维PVA /明胶/叠氮化物支架,并使其发生点击反应。通过SEM,接触角和FTIR对支架进行表征。通过细胞增殖分析细胞-支架相互作用,结果观察到,与PV A /明胶纳米纤维相比,PV A /明胶/叠氮化物支架的细胞增殖速率显着增加(P≤0.05)。在本研究中,通过添加诱导培养基来操纵生化线索,并通过点击部分功能化,结合培养基质的环境和物理因素,我们能够随着表皮样的发展而驱动ADSC进入表皮谱系。早期和中期的表皮分化标记物如角蛋白和丝聚蛋白的表达进一步证实了其结构。这项研究不仅为干细胞谱系承诺的特定位置的利基样微环境的设计提供了见识,而且为伤口愈合和皮肤组织重建的替代细胞来源ADSC的治疗应用提供了启示。

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  • 来源
    《Journal of materials science》 |2013年第12期|2863-2871|共9页
  • 作者单位

    Healthcare and Energy Materials Laboratory, Nanoscience and Nanotechnology Initiative, Faculty of Engineering, National University of Singapore, Block E3, #05-12, 2 Engineering Drive 3, Singapore 117576, Singapore ,Department of Mechanical Engineering, National University of Singapore, Singapore 117576, Singapore;

    Healthcare and Energy Materials Laboratory, Nanoscience and Nanotechnology Initiative, Faculty of Engineering, National University of Singapore, Block E3, #05-12, 2 Engineering Drive 3, Singapore 117576, Singapore;

    Healthcare and Energy Materials Laboratory, Nanoscience and Nanotechnology Initiative, Faculty of Engineering, National University of Singapore, Block E3, #05-12, 2 Engineering Drive 3, Singapore 117576, Singapore;

    Healthcare and Energy Materials Laboratory, Nanoscience and Nanotechnology Initiative, Faculty of Engineering, National University of Singapore, Block E3, #05-12, 2 Engineering Drive 3, Singapore 117576, Singapore;

    Department of Materials Engineering, Monash University, Melbourne, VIC, Australia;

    Healthcare and Energy Materials Laboratory, Nanoscience and Nanotechnology Initiative, Faculty of Engineering, National University of Singapore, Block E3, #05-12, 2 Engineering Drive 3, Singapore 117576, Singapore ,Department of Mechanical Engineering, National University of Singapore, Singapore 117576, Singapore;

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