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Micropatterned hydrogels and cell alignment enhance the odontogenic potential of stem cells from apical papilla in-vitro

机译:微图案水凝胶和细胞排列增强了体外培养的根尖乳头干细胞的牙源性潜力

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摘要

Introduction. An understanding of the extracellular matrix characteristics which stimulate and guide stem cell differentiation in the dental pulp is fundamental for the development of enhanced dental regenerative therapies. Our objectives, in this study, were to determine whether stem cells from the apical papilla (SCAP) responded to substrate stiffness, whether hydrogels providing micropatterned topographical cues stimulate SCAP self-alignment, and whether the resulting alignment could influence their differentiation towards an odontogenic lineage in-vitro.Methods. Experiments utilized gelatin methacryloyl (GelMA) hydrogels of increasing concentrations (5, 10 and 15%). We determined their compressive modulus via unconfined compression and analyzed cell spreading via F-actin/DAPI immunostaining. GelMA hydro gels were micropatterned using photolithography, in order to generate microgrooves and ridges of 60 and 120 mu m, onto which SCAP were seeded and analyzed for self-alignment via fluorescence microscopy. Lastly, we analyzed the odontogenic differentiation of SCAP using alkaline phosphatase protein expression (ANOVA/Tukey alpha = 0.05).Results. SCAP appeared to proliferate better on stiffer hydrogels. Both 60 and 120 mu m micropatterned hydrogels guided the self-alignment of SCAP with no significant difference between them. Similarly, both 60 and 120 mu m micropattern aligned cells promoted higher odontogenic differentiation than non-patterned controls.Significance. In summary, both substrate mechanics and geometry have a statistically significant influence on SCAP response, and may assist in the odontogenic differentiation of dental stem cells. These results may point toward the fabrication of cell-guiding scaffolds for regenerative endodontics, and may provide cues regarding the development of the pulp-dentin interface during tooth formation. (C) 2019 Published by Elsevier Inc. on behalf of The Academy of Dental Materials.
机译:介绍。对促进和指导牙髓中干细胞分化的细胞外基质特性的了解,对发展增强的牙齿再生疗法至关重要。在这项研究中,我们的目标是确定来自根尖乳头(SCAP)的干细胞是否对底物僵硬作出反应,提供微图案形貌线索的水凝胶是否刺激SCAP自对准,以及所产生的对准是否会影响它们向牙源性谱系的分化体外方法实验使用浓度增加(5%,10%和15%)的明胶甲基丙烯酰基(GelMA)水凝胶。我们通过无限制压缩确定了它们的压缩模​​量,并通过F-肌动蛋白/ DAPI免疫染色分析了细胞的扩散。使用光刻对GelMA凝胶进行微图案化,以产生60和120μm的微沟槽和脊,在其上接种SCAP并通过荧光显微镜分析自对准。最后,我们使用碱性磷酸酶蛋白表达(ANOVA / Tukey alpha = 0.05)分析了SCAP的牙源性分化。在较硬的水凝胶上,SCAP似乎可以更好地增殖。 60和120μm的微图案水凝胶均能指导SCAP的自对准,两者之间无显着差异。同样,60和120μm的微模式排列的细胞均比未模式的对照促进了更高的牙源性分化。总之,基质力学和几何形状均对SCAP反应具有统计学上的显着影响,并且可能有助于牙齿干细胞的牙源性分化。这些结果可能指向制造用于牙髓再生的细胞指导支架,并可能提供有关在牙齿形成过程中牙髓-牙本质界面发展的线索。 (C)2019由Elsevier Inc.代表牙科材料学院出版。

著录项

  • 来源
    《Dental materials》 |2020年第1期|88-96|共9页
  • 作者

  • 作者单位

    Oregon Hlth & Sci Univ Sch Dent Dept Restorat Dent Div Biomat & Biomech Portland OR 97201 USA;

    Oregon Hlth & Sci Univ Dept Biomed Engn Portland OR 97201 USA;

    Oregon Hlth & Sci Univ Sch Dent Dept Restorat Dent Div Biomat & Biomech Portland OR 97201 USA|Univ Fed Sergipe Dept Pharm Postgrad Program Hlth Sci Aracaju SE Brazil;

    Oregon Hlth & Sci Univ Sch Dent Dept Restorat Dent Div Biomat & Biomech Portland OR 97201 USA|Oregon Hlth & Sci Univ Dept Biomed Engn Portland OR 97201 USA|Oregon Hlth & Sci Univ Ctr Regenerat Med Portland OR 97201 USA|Knight Canc Inst Canc Early Detect Adv Res Portland OR USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    GelMA; Micropatterning; Mechanotransduction; Odontogenic differentiation; Regenerative dentistry;

    机译:GelMA;微图案化;机械转导;牙源性分化;再生牙科;

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