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International Journal of Bioprinting                            Performance of Bredigite-based bone scaffolds






















































            Figure 12. Cell proliferation after 1, 4, and 7 days of culture on scaffolds of different structures. (a–c) Cell growth of the TPMS model scaffold, open-rod
            model, and blank group after 1 day of cell culture, respectively. (d–f) Cell growth of the TPMS model scaffold, open-rod model, and blank group after
            4 days of cell culture, respectively. (g–i) Cell growth of the TPMS model scaffold, open-rod model, and blank group after 7 days of cell culture, respectively.
            in their mechanical strength. Moreover, the TPMS model   Conflict of interest
            scaffolds had a larger specific surface area and a higher   The authors declare no conflicts of interest.
            permeability, which promoted the flow of nutrients and
            induced more cell attachment sites. These results indicate   Author contributions
            that scaffolds of bredigite have good application prospects
            in bone tissue engineering.                        Conceptualization: Dongxue Liu, Xuan Zhou, Fei Wang,
                                                                  Yihua Feng, Yanbin Shi
            Funding                                            Data curation: Xuan Zhou, Yihua Feng, Yanbin Shi

            This work is supported by the Key Research and Development   Formal analysis: Dongxue Liu, Xuan Zhou
            Plan of Shandong Province (2018GGX103006) and the   Funding acquisition: Yihua Feng, Yanbin Shi
            National Natural Science Foundation of China (51675289).   Investigation: Fei Wang, Yihua Feng
            Natural Science Foundation of Shandong Province    Methodology: Dongxue Liu, Xuan Zhou, Fei Wang
            (ZR2022ME086).                                     Project administration: Fei Wang, Yihua Feng
                                                               Resources: Fei Wang, Yanbin Shi



            Volume 9 Issue 3 (2023)                        268                         https://doi.org/10.18063/ijb.708
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