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Characterization of Natural Decellularized and Reseeded Porcine Tooth Bud Matrices

机译:天然脱细胞化和猪牙芽矩阵的表征

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摘要

Dental tissue engineering efforts have yet to identify scaffolds that instruct the formation of bioengineered teeth of predetermined size and shape. Here we investigated whether extracellular matrix (ECM) molecules present in natural tooth scaffolds can provide insight on how to achieve this goal. We describe methods to effectively decellularize and demineralize porcine molar tooth buds, while preserving natural ECM protein gradients. Natural tooth ECM composition was assessed using histological and immunohistochemical (IHC) analyses of fibrillar and basement membrane proteins. Our results showed that Collagen I, Fibronectin, Collagen IV, and Laminin gradients were detected in natural tooth tissues, and retained in decellularized samples. Second harmonic generation (SHG) image analysis and 3D reconstructions were used to show that natural tooth tissue exhibited higher collagen fiber density, and less oriented and less organized collagen fibers, as compared to decellularized tooth tissue. We also found that reseeded decellularized tooth scaffolds exhibited distinctive collagen content and organization as compared to decelluarized scaffolds. Our results show that SHG allows for quantitative assessment of ECM features that are not easily characterized using traditional histological analyses. In summary, our results demonstrate the potential for natural decellularized molar tooth ECM to instruct dental cell matrix synthesis, and lay the foundation for future use of biomimetic scaffolds for dental tissue engineering applications.
机译:牙科组织工程努力尚未识别支架,其指示预定尺寸和形状的生物工程齿的形成。在这里,我们研究了天然牙齿脚手架中存在的细胞外基质(ECM)分子是否能够了解如何实现这一目标。我们描述了有效地脱细胞化和脱蛋白摩尔牙齿芽的方法,同时保持天然ECM蛋白梯度。使用组织学和免疫组织化学(IHC)分析来评估天然牙齿ECM组合物的原纤维和基底膜蛋白分析。我们的研究结果表明,在天然牙齿组织中检测到胶原蛋白I,纤连蛋白,胶原蛋白IV和层粘连蛋白梯度,并保留在脱细胞样品中。与脱细胞齿组织相比,二次谐波产生(SHG)图像分析和3D重建表明天然牙齿组织表现出更高的胶原纤维密度,较少的胶原纤维密度和更少的有组织的胶原纤维。我们还发现,与去污点的支架相比,被重定相位的脱细胞齿支架表现出独特的胶原蛋白含量和组织。我们的结果表明,SHG允许使用传统的组织学分析不容易表征ECM特征的定量评估。总之,我们的结果表明了天然脱细胞牙齿ECM指示牙科细胞基质合成的可能性,并为牙科组织工程应用进行了将来使用仿生支架的基础。

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