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三维打印分级多孔仿生羟磷灰石支架:在凸丝上增加凹痕。

3D printing of hierarchical porous biomimetic hydroxyapatite scaffolds: Adding concavities to the convex filaments.

机构信息

Biomaterials, Biomechanics and Tissue Engineering Group, Department of Materials Science and Engineering, Universitat Politècnica de Catalunya (UPC), Av. Eduard Maristany 16, 08019 Barcelona, Spain; Barcelona Research Center in Multiscale Science and Engineering, Universitat Politècnica de Catalunya (UPC), Av. Eduard Maristany 16, 08019 Barcelona, Spain.

Biomaterials, Biomechanics and Tissue Engineering Group, Department of Materials Science and Engineering, Universitat Politècnica de Catalunya (UPC), Av. Eduard Maristany 16, 08019 Barcelona, Spain; Barcelona Research Center in Multiscale Science and Engineering, Universitat Politècnica de Catalunya (UPC), Av. Eduard Maristany 16, 08019 Barcelona, Spain; Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology, Baldiri Reixac 10-12, 08028 Barcelona, Spain.

出版信息

Acta Biomater. 2021 Oct 15;134:744-759. doi: 10.1016/j.actbio.2021.07.071. Epub 2021 Aug 4.

Abstract

Porosity plays a key role on the osteogenic performance of bone scaffolds. Direct Ink Writing (DIW) allows the design of customized synthetic bone grafts with patient-specific architecture and controlled macroporosity. Being an extrusion-based technique, the scaffolds obtained are formed by arrays of cylindrical filaments, and therefore have convex surfaces. This may represent a serious limitation, as the role of surface curvature and more specifically the stimulating role of concave surfaces in osteoinduction and bone growth has been recently highlighted. Hence the need to design strategies that allow the introduction of concave pores in DIW scaffolds. In the current study, we propose to add gelatin microspheres as a sacrificial material in a self-setting calcium phosphate ink. Neither the phase transformation responsible for the hardening of the scaffold nor the formation of characteristic network of needle-like hydroxyapatite crystals was affected by the addition of gelatin microspheres. The partial dissolution of the gelatin resulted in the creation of spherical pores throughout the filaments and exposed on the surface, increasing filament porosity from 0.2 % to 67.9 %. Moreover, the presence of retained gelatin proved to have a significant effect on the mechanical properties, reducing the strength but simultaneously giving the scaffolds an elastic behavior, despite the high content of ceramic as a continuous phase. Notwithstanding the inherent difficulty of in vitro cultures with this highly reactive material an enhancement of MG-63 cell proliferation, as well as better spreading of hMSCs was recorded on the developed scaffolds. STATEMENT OF SIGNIFICANCE: Recent studies have stressed the role that concave surfaces play in tissue regeneration and, more specifically, in osteoinduction and osteogenesis. Direct ink writing enables the production of patient-specific bone grafts with controlled architecture. However, besides many advantages, it has the serious limitation that the surfaces obtained are convex. In this article, for the first time we develop a strategy to introduce concave pores in the printed filaments of biomimetic hydroxyapatite by incorporation and partial dissolution of gelatin microspheres. The retention of part of the gelatin results in a more elastic behavior compared to the brittleness of hydroxyapatite scaffolds, while the needle-shaped nanostructure of biomimetic hydroxyapatite is maintained and gelatin-coated concave pores on the surface of the filaments enhance cell spreading.

摘要

多孔性对骨支架的成骨性能起着关键作用。直接墨水书写(DIW)允许设计具有患者特异性结构和受控大孔的定制合成骨移植物。作为一种基于挤压的技术,获得的支架由圆柱状细丝阵列形成,因此具有凸面。这可能是一个严重的限制,因为表面曲率的作用,特别是凹面在诱导成骨和骨生长中的刺激作用最近得到了强调。因此,需要设计允许在 DIW 支架中引入凹孔的策略。在本研究中,我们提出在自凝固磷酸钙墨水中添加明胶微球作为牺牲材料。明胶微球的添加既不影响支架硬化的相转变,也不影响特征状针状羟基磷灰石晶体网络的形成。明胶的部分溶解导致整个细丝中形成球形孔,并暴露在表面上,使细丝的孔隙率从 0.2%增加到 67.9%。此外,保留的明胶的存在对机械性能有显著影响,降低了强度,但同时使支架具有弹性行为,尽管陶瓷作为连续相的含量很高。尽管这种高反应性材料的体外培养存在固有困难,但在开发的支架上记录到 MG-63 细胞增殖的增强,以及 hMSCs 的更好扩散。意义声明:最近的研究强调了凹面在组织再生中的作用,更具体地说,在诱导成骨和骨生成中的作用。直接墨水书写使具有受控结构的患者特异性骨移植物的生产成为可能。然而,除了许多优点外,它还有一个严重的限制,即获得的表面是凸面的。在本文中,我们首次开发了一种策略,通过加入和部分溶解明胶微球在仿生羟基磷灰石的打印细丝中引入凹孔。部分明胶的保留导致与羟基磷灰石支架的脆性相比,具有更弹性的行为,同时保持仿生羟基磷灰石的针状纳米结构,并在细丝表面上增强细胞扩散的明胶涂覆的凹孔。

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