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体外评价骨髓凝块对选择性激光熔化三维打印多孔钛支架微观结构修饰、细胞传递和增殖的影响。

In vitro evaluation of marrow clot enrichment on microstructure decoration, cell delivery and proliferation of porous titanium scaffolds by selective laser melting three-dimensional printing.

机构信息

Department of Orthopaedic surgery, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.

Key Lab of Biomaterial and Additive Manufacturing Research, Institute of Digital Medicine, Nanjing Medical University, Nanjing, China.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Aug;106(6):2245-2253. doi: 10.1002/jbm.b.34032. Epub 2017 Oct 30.

Abstract

Titanium alloy is a clinically approved material for bone substitution. Although three-dimensional printing (3DP) fabrication technique can build up porous Ti scaffolds with the designed shape and microstructure, the biomechanical performance of 3DP Ti scaffolds still need to be improved to increase the reliability of osseointegration capacity. To address this issue, rabbit bone marrow clot (MC) is used to modify 3DP Ti scaffolds by stem cell delivery and microenvironment decoration inside the pores of these scaffolds. Moreover, 3DP Ti scaffolds were built up using selective laser melting, and 3DP MC-Ti scaffolds were constructed through the enrichment of MC with Ti scaffolds in vitro. Results demonstrated that the obtained 3DP Ti scaffolds in current study has an average modulus of elasticity (ME) at 1294.48 MPa with average yield strength of 33.154 MPa. For MC-Ti scaffolds, MC enrichment obstructs the pores of 3DP scaffolds due to the large amount of fibrin and erythrocytes and leads to a decrease in ratio of live cells at 1-week culture. Cell proliferation and osteogenic differentiation performance of MC-Ti scaffolds were promoted with porous recanalization in the later 3 weeks. After 2 weeks in vitro culture, fivefold of cell number in MC-Ti scaffolds were observed than bone marrow-derived mesenchymal stem cell-seeded Ti scaffolds. Compared to Ti scaffolds, fourfold of deoxyribonucleic acid content, type I collagen-α1, osteocalcin, and alkaline phosphatase expression in MC-Ti scaffolds were observed after 4 weeks in vitro culture. Results suggested that the combination with MC is a highly efficient method that improves the biological performance of Ti scaffolds. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 2245-2253, 2018.

摘要

钛合金是一种临床认可的骨替代材料。尽管三维打印(3DP)制造技术可以制造出具有设计形状和微观结构的多孔 Ti 支架,但 3DP Ti 支架的生物力学性能仍需提高,以提高其骨整合能力的可靠性。为了解决这个问题,采用骨髓凝块(MC)通过干细胞输送和微环境修饰来修饰 3DP Ti 支架。此外,使用选择性激光熔化制造 3DP Ti 支架,并通过体外将 MC 与 Ti 支架富集来构建 3DP MC-Ti 支架。结果表明,本研究中获得的 3DP Ti 支架的平均弹性模量(ME)为 1294.48 MPa,平均屈服强度为 33.154 MPa。对于 MC-Ti 支架,由于大量的纤维蛋白和红细胞,MC 的富集会阻塞 3DP 支架的孔隙,导致培养 1 周时活细胞的比例下降。在随后的 3 周内,MC-Ti 支架的多孔再通促进了细胞增殖和成骨分化性能。体外培养 2 周后,观察到 MC-Ti 支架中的细胞数量是骨髓间充质干细胞接种 Ti 支架的 5 倍。与 Ti 支架相比,在体外培养 4 周后,MC-Ti 支架中的脱氧核糖核酸含量、I 型胶原-α1、骨钙素和碱性磷酸酶表达分别增加了 4 倍。结果表明,与 MC 结合是一种提高 Ti 支架生物学性能的高效方法。©2017 年 Wiley 期刊,生物医学材料研究部分 B:应用生物材料,106B:2245-2253,2018。

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