Müller Werner E G, Tolba Emad, Schröder Heinz C, Diehl-Seifert Bärbel, Link Thorben, Wang Xiaohong
ERC Advanced Investigator Grant Research Group at Institute for Physiological Chemistry, University Medical Center of the Johannes Gutenberg University, Mainz, Germany.
Biotechnol J. 2014 Oct;9(10):1312-21. doi: 10.1002/biot.201400277. Epub 2014 Aug 21.
Bioprinting/3D cell printing procedures for the preparation of scaffolds/implants have the potential to revolutionize regenerative medicine. Besides biocompatibility and biodegradability, the hardness of the scaffold material is of critical importance to allow sufficient mechanical protection and, to the same extent, allow migration, cell-cell, and cell-substrate contact formation of the matrix-embedded cells. In the present study, we present a strategy to encase a bioprinted, cell-containing, and soft scaffold with an electrospun mat. The electrospun poly(ϵ-caprolactone) (PCL) nanofibers mats, containing tetraethyl orthosilicate (TEOS), were subsequently incubated with silicatein. Silicatein synthesizes polymeric biosilica by polycondensation of ortho-silicate that is formed from prehydrolyzed TEOS. Biosilica provides a morphogenetically active matrix for the growth and mineralization of osteoblast-related SaOS-2 cells in vitro. Analysis of the microstructure of the 300-700 nm thick PCL/TEOS nanofibers, incubated with silicatein and prehydrolyzed TEOS, displayed biosilica deposits on the mats formed by the nanofibers. We conclude and propose that electrospun PCL nanofibers mats, coated with biosilica, may represent a morphogenetically active and protective cover for bioprinted cell/tissue-like units with a suitable mechanical stability, even if the cells are embedded in a softer matrix.
用于制备支架/植入物的生物打印/3D细胞打印程序有可能彻底改变再生医学。除了生物相容性和生物降解性外,支架材料的硬度对于提供足够的机械保护以及在相同程度上允许基质包埋细胞的迁移、细胞间和细胞与基质接触的形成至关重要。在本研究中,我们提出了一种用静电纺丝垫包裹生物打印的、含细胞的软支架的策略。将含有正硅酸四乙酯(TEOS)的静电纺聚(ε-己内酯)(PCL)纳米纤维垫随后与硅酸酶一起孵育。硅酸酶通过由预水解的TEOS形成的原硅酸的缩聚反应合成聚合生物二氧化硅。生物二氧化硅为体外成骨细胞相关的SaOS-2细胞的生长和矿化提供了形态发生活性基质。对与硅酸酶和预水解的TEOS一起孵育的300-700nm厚的PCL/TEOS纳米纤维的微观结构分析显示,在由纳米纤维形成的垫子上有生物二氧化硅沉积物。我们得出结论并提出,涂有生物二氧化硅的静电纺PCL纳米纤维垫可能代表一种具有形态发生活性和保护性的覆盖物,用于具有合适机械稳定性的生物打印细胞/组织样单元,即使细胞嵌入较软的基质中。