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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Triethyleneglycol dimethacrylate addition improves the 3D-printability and construct properties of a GelMA-nHA composite system towards tissue engineering applications
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Triethyleneglycol dimethacrylate addition improves the 3D-printability and construct properties of a GelMA-nHA composite system towards tissue engineering applications

机译:三乙二醇二甲基丙烯酸酯添加提高了GELMA-NHA复合系统对组织工程应用的3D印刷性和构建性能

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摘要

In tissue engineering, there is a growing interest in the development of 3D printable bone tissue-inspired nanocomposites. However, most such nanocomposites have poor mechanical properties, owing to poor dispersion of the mineral phase (e.g. nano-hydroxyapatite, nHA) within the organic phase (e.g. methacrylated gelatin, GelMA) and low volume fractions of each phase. Triethyleneglycol dimethacrylate (TEGDMA) is commonly added to dental resin-based composites to improve the properties of the dental resin. Here, the effects of substituting a portion of the water phase in a GelMA-nHA composite with TEGDMA were evaluated. TEGDMA improved the dispersion of nHA within the highly-concentrated GelMA-based composite ink, as well as increased the inks shear yield strength and reduced the critical energy for ink cure. As a result, the printability of the composite ink was greatly improved upon TEGDMA inclusion. Lastly, while the swelling of the cast composite in 37 degrees C water increased slightly, the mechanical properties (tensile strength, toughness, and stiffness) of the cast composite increased by at least an order of magnitude upon TEGDMA addition, and all composites demonstrated MSC cytocompatibility after 24 h. Overall, TEGDMA shows promise as an additive to tune properties of the GelMA-nHA system towards use in tissue engineering applications.
机译:在组织工程中,对3D可印刷骨组织鼓励纳米复合材料的开发越来越感兴趣。然而,由于矿物相(例如纳米羟基磷灰石,NHA)在有机相(例如甲基丙烯酸酯化明胶,GELMA)和每相的低体积分数中,大多数此类纳米复合材料具有差的机械性能。三乙二醇二甲基丙烯酸酯(TEGDMA)通常加入到牙科树脂基复合材料中以改善牙科树脂的性质。这里,评价用TEGDMA取代在GELMA-NHA复合材料中的一部分水相的影响。 TEGDMA改善了NHA在高浓缩的牙龈基复合油墨内的分散,以及增加油墨剪切屈服强度并降低了油墨固化的临界能量。结果,在TEGDMA夹杂物上大大提高了复合油墨的可印刷性。最后,虽然在37℃的水中的浇铸复合材料的膨胀略微增加时,铸造复合材料的机械性能(拉伸强度,韧性和刚度)在TEGDMA加成时增加了至少一个数量级,并且所有复合材料都证明了MSC 24小时后的细胞锁定性。总体而言,TEGDMA将承诺作为添加到组织工程应用中使用GELMA-NHA系统的应用。

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