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Three-dimensional printing and in vitro evaluation of poly(3- hydroxybutyrate) scaffolds functionalized with osteogenic growth peptide for tissue engineering

机译:成骨生长肽功能化的聚(3-羟基丁酸酯)支架的三维印刷和体外评估

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摘要

Poly(3-hydroxybutyrate) (PHB) is a biodegradable and thermoprocessable biopolymer, making it a promising candidate for applications in tissue engineering. In the present study a structural characterization and in vitro evaluation were performed on PHB scaffolds produced by additive manufacturing via selective laser sintering (SLS), followed by post-printing functionalization with osteogenic growth peptide (OGP) and its C-terminal sequence OGP(10–14). The PHB scaffolds were characterized, including their morphology, porosity, thermal and mechanical properties, moreover OGP release. The results showed that SLS technology allowed the sintering of the PHB scaffolds with a hierarchical structure with interconnected pores and intrinsic porosity (porosity of 55.8 ± 0.7% and pore size in the 500–700 μm range), and good mechanical properties. Furthermore, the SLS technology did not change thermal properties of PHB polymer. The OGP release profile showed that PHB scaffold promoted a controlled release above 72 h. In vitro assays using rat bone marrow stem cells showed good cell viability/proliferation in all the PHB scaffolds. Additionally, SEM images suggested advanced morphological differentiation in the groups containing osteogenic growth peptide. The overall results demonstrated that PHB biopolymer is potential candidate for 3D printing via SLS technology, moreover the OGP-containing PHB scaffolds showed ability to sustain cell growth to support tissue formation thereby might be considered for tissue-engineering applications.
机译:聚(3-羟基丁酸酯)(PHB)是一种可生物降解和热加工的生物聚合物,使其成为在组织工程中应用的有希望的候选者。在本研究中,对通过增材制造通过选择性激光烧结(SLS),随后用成骨生长肽(OGP)及其C端序列OGP(10)进行印刷后功能化的PHB支架进行了结构表征和体外评估。 –14)。对PHB支架进行了表征,包括其形态,孔隙率,热和机械性能以及OGP释放。结果表明,SLS技术可以烧结具有相互连接的孔和固有孔隙率(孔隙率为55.8±0.7%,孔径在500-700μm范围内)的分层结构的PHB支架。此外,SLS技术不会改变PHB聚合物的热性能。 OGP释放曲线表明,PHB支架促进了72 h以上的控释。使用大鼠骨髓干细胞进行的体外测定显示,所有PHB支架均具有良好的细胞活力/增殖能力。另外,SEM图像表明在包含成骨生长肽的组中的高级形态学分化。总体结果表明,PHB生物聚合物是通过SLS技术进行3D打印的潜在候选者,此外,含OGP的PHB支架具有维持细胞生长以支持组织形成的能力,因此可考虑用于组织工程应用。

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