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Robocasting of ceramic glass scaffolds: Sol-gel glass, new horizons

机译:陶瓷玻璃脚手架的抢劫:溶胶 - 凝胶玻璃,新的视野

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This article reports the first robocasting of a sol-gel based glass ceramic scaffold. Sol-gel bioactive glass powders usually exhibit high volume fractions of meso- and micro-porosities, bad for colloidal processing as this adsorbs significant portion of the dispersing medium, affecting dispersion and flow. We circumvent these practical difficulties, to achieve pastes with particle size distributions, high solids loading and appropriate rheological properties for extrusion through fine nozzles for robocasting. Scaffolds with different macro-pore sizes (300-500 mu m) with solid loadings up to 40 vol.% were robocast. The sintered (800 degrees C, 2 h) scaffolds exhibited compressive strength of 2.5-4.8 MPa, formed hydroxyapatite after 72 h in SBF, and had no cytotoxicity and a considerable MG63 cells viability rate. These features make the scaffolds promising candidates for tissue engineering applications and worthy for further in vivo investigations.
机译:本文报道了一种基于溶胶基玻璃陶瓷支架的首次抢劫。 溶胶 - 凝胶生物活性玻璃粉末通常表现出高体积的中间孔隙,对胶体加工不良,因为这是分散介质的重要部分,影响分散和流动。 我们规避了这些实际困难,实现了粒度分布的糊状物,高固体载荷和适当的流变性能,以通过微喷射挤出用于抢劫。 具有不同宏观孔径的支架(300-500 mu m),固体载荷高达40体积%。%是robocast。 烧结(800℃,2小时)支架在SBF的72小时后表现出2.5-4.8MPa的压缩强度,形成的羟基磷灰石,没有细胞毒性和相当大的MG63细胞活力率。 这些特征使脚手架使组织工程应用的候选人有助于进一步体内调查。

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