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Biomimetic Design for a Dual Concentric Porous Titanium Scaffold with Appropriate Compressive Strength and Cells Affinity

机译:具有适当抗压强度和细胞亲和力的双同心多孔钛支架的仿生设计

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摘要

In repairing or replacing damaged bones, a dual concentric porous titanium scaffold (P-Ti ) has emerged as a promising bio-mimic design. Herein, various P-Ti were made and sintered with relatively dense (x = 10, 20, or 30% porosity) and loose (y = 45, 55, or 65 porosity) structures. Firstly, NaCl was used as the pore-forming additive and followed by a hydrothermal removal method. The compressive strength of the as-formed P-Ti and surface morphology, nanomechanical property, and cells’ affinity on the cross-sectioned surface of P-Ti (CP-Ti ) were then characterized. The results demonstrate that the compressive strength of P-Ti , P-Ti , or P-Ti exhibits a relatively mild decline (e.g., in the range of 181 and 97 MPa, higher than the required value of 70 MPa) and suitable porosities for the intended structure. Nano-hardness on the solid surface of CP-Ti shows roughly consistent with that of CP-Ti (i.e., ~8.78 GPa), thus, the porous structure of CP-Ti remains mostly unaffected by the addition of NaCl and subsequent sintering process. Most of the surfaces of CP-Ti exhibit high fibroblast (L929) cell affinity with low cell mortality. Notably, in the hFOB 1.19 cell adhesion and proliferation test, CP-Ti and CP-Ti reveal high cell viability, most probably relating with the assembly of dual porosities with interconnected pores. Overall, the sample P-Ti provides a relatively load-bearable design with high cell affinity and is thus promising as a three-dimensional bio-scaffold.
机译:在修复或更换受损的骨骼中,双方同心多孔钛支架(P-TI)已成为有希望的生物模拟设计。在此,制备各种P-Ti并用相对致密的(x = 10,20或30%孔隙率)和松散(Y = 45,55或65个孔隙率)结构烧结。首先,使用NaCl作为孔形成添加剂,然后用水热除去方法。然后表征了在P-Ti(Cp-Ti)的横截面上的AS形成的P-Ti和表面形态,纳米力学和细胞的抗压强度。结果表明,P-Ti,P-Ti或P-Ti的抗压强度表现出相对温和的下降(例如,在181和97MPa的范围内,高于所需的70MPa的所需值)和适当的孔隙率预期的结构。 CP-Ti的固体表面上的纳米硬度呈大致一致,与Cp-Ti(即〜8.78GPa)大致一致,因此CP-Ti的多孔结构仍然不会通过添加NaCl和随后的烧结过程而不受影响。 CP-Ti的大多数表面表现出具有低细胞死亡率的高成纤维细胞(L929)细胞亲和力。值得注意的是,在HFOB 1.19细胞粘附和增殖试验中,CP-TI和CP-TI揭示了高细胞活力,最大可能与具有相互连接的孔的双孔孔组装有关。总的来说,样品P-Ti提供了具有高细胞亲和力的相对负载可耐受的设计,因此是具有三维生物支架的高度相对的。

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