This study explores the potential utilization of walstromite (BaCa2Si3O9) as a foundational material for creating new bioceramics in the form of scaffolds through 3D printing technology. To achieve this objective, this study investigates the chemical–mineralogical, morphological, and structural characteristics, as well as the biological properties, of walstromite-based bioceramics. The precursor mixture for walstromite synthesis is prepared through the sol–gel method, utilizing pure reagents. The resulting dried gelatinous precipitate is analyzed through complex thermal analysis, leading to the determination of the optimal calcination temperature. Subsequently, the calcined powder is characterized via X-ray diffraction and scanning electron microscopy, indicating the presence of calcium and barium silicates, as well as monocalcium silicate. This powder is then employed in additive 3D printing, resulting in ceramic scaffolds. The specific ceramic properties of the scaffold, such as apparent density, absorption, open porosity, and compressive strength, are assessed and fall within practical use limits. X-ray diffraction analysis confirms the formation of walstromite as a single phase in the ceramic scaffold. In vitro studies involving immersion in simulated body fluid (SBF) for 7 and 14 days, as well as contact with osteoblast-like cells, reveal the scaffold’s ability to form a phosphate layer on its surface and its biocompatibility. This study concludes that the walstromite-based ceramic scaffold exhibits promising characteristics for potential applications in bone regeneration and tissue engineering.
展开▼
机译:本研究探讨了 walstromite (BaCa2Si3O9) 作为基础材料的潜在利用,通过 3D 打印技术以支架形式制造新的生物陶瓷。为了实现这一目标,本研究调查了华石基生物陶瓷的化学矿物学、形态学和结构特性以及生物学特性。用于华石合成的前驱体混合物是通过溶胶-凝胶法,使用纯试剂制备的。通过复杂的热分析分析得到的干燥凝胶状沉淀物,从而确定最佳煅烧温度。随后,通过 X 射线衍射和扫描电子显微镜对煅烧粉末进行表征,表明存在钙和硅酸钡以及硅酸一钙。然后将这种粉末用于增材 3D 打印,从而制造出陶瓷支架。脚手架的特定陶瓷特性,如表观密度、吸收、开孔率和抗压强度,都经过评估,并在实际使用范围内。X 射线衍射分析证实了 Walstromite 在陶瓷支架中形成为单相。涉及浸入模拟体液 (SBF) 中 7 天和 14 天以及与成骨细胞样细胞接触的体外研究揭示了支架在其表面形成磷酸盐层的能力及其生物相容性。本研究得出结论,基于 Walstromite 的陶瓷支架在骨再生和组织工程中表现出有前途的特性。
展开▼