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International Journal of Bioprinting                                 Scaffold for engineering enthesis organ



            Conflict of interest                               2.   Paxton JZ, Baar K, Grover LM, 2013, Current progress in
                                                                  enthesis repair: Strategies for interfacial tissue engineering.
            The authors declare no conflict of interest.          Orthop Muscular Syst, 01(S1): 1–13.

            Author contributions                                  https://doi.org/10.4172/2161-0533.s1-003
                                                               3.   Golman M, Birman V, Thomopoulos S, 2021, Enthesis
            Conceptualization: Simone Micalizzi, Lara Russo, Martina   strength, toughness and stiffness: An image-based model
               Nencioni                                           comparing tendon insertions with varying bony attachment
            Data curation: Simone Micalizzi, Lara Russo, Martina   geometries. J R Soc Interface, 18(185).
               Nencioni                                           https://doi.org/10.1098/rsif.2021.0421
            Formal analysis: Simone Micalizzi, Lara Russo, Martina
               Nencioni                                        4.   Benjamin M, Ralphs JR, 1998, Fibrocartilage in tendons
            Funding acquisition:  Maria  Letizia  Trincavelli,  Giovanni   and ligaments - An adaptation to compressive load. J Anat,
               Vozzi                                              193(4): 481–494.
            Investigation: Simone Micalizzi, Lara Russo, Martina   https://doi.org/10.1017/S0021878298004300
               Nencioni                                        5.   Buenzli PR, Sims NA, 2015, Quantifying the osteocyte
            Methodology: Simone Micalizzi, Lara Russo, Chiara     network in the human skeleton. Bone, 75: 144–150.
               Giacomelli, Francesca Montemurro, Carmelo de       https://doi.org/10.1016/j.bone.2015.02.016
               Maria,  Martina  Nencioni,  Laura  Marchetti,  Maria
               Letizia Trincavelli, Giovanni Vozzi             6.   Schwartz AG, Long F, Thomopoulos S, 2015, Enthesis
            Project administration: Maria Letizia Trincavelli, Giovanni   fibrocartilage cells originate from a population of hedgehog-
               Vozzi                                              responsive cells modulated by the loading environment.
            Resources: Maria Letizia Trincavelli, Giovanni Vozzi  Development, 142(1): 196–206.
            Supervision: Chiara Giacomelli, Laura Marchetti,      https://doi.org/10.1242/dev.112714
               Francesca Montemurro, Carmelo de Maria, Maria   7.   Benjamin M, McGonagle D, 2009, The enthesis organ
               Letizia Trincavelli, Giovanni Vozzi                concept and its relevance to the spondyloarthropathies. Adv
            Validation: Chiara Giacomelli, Laura Marchetti, Francesca   Exp Med Biol, 649: 57–70.
               Montemurro, Carmelo de Maria
            Visualization: Simone Micalizzi, Lara Russo, Martina   https://doi.org/10.1007/978-1-4419-0298-6_4
               Nencioni                                        8.   Foolen  J, Wunderli  SL, Loerakker  S,  et al., 2018,  Tissue
            Writing – original draft: Simone Micalizzi, Lara Russo,   alignment enhances remodeling potential of tendon-derived
               Martina Nencioni                                   cells - Lessons from a novel microtissue model of tendon
            Writing – review & editing: Chiara Giacomelli, Laura   scarring. Matrix Biol, 65: 14–29.
               Marchetti, Francesca Montemurro, Carmelo de Maria,   https://doi.org/10.1016/j.matbio.2017.06.002
               Maria Letizia Trincavelli, Giovanni Vozzi
                                                               9.   Nowlin J, Bismi MA, Delpech B, et al., 2018, Engineering the
            Ethics approval and consent to participate            hard–soft tissue interface with random-to-aligned nanofiber
                                                                  scaffolds. Nanobiomedicine, 5: 184954351880353.
            Not applicable.                                       https://doi.org/10.1177/1849543518803538

            Consent for publication                            10.  Xie J, Ma B, Michael PL, et al., 2012, Fabrication of nanofiber
                                                                  scaffolds with gradations in fiber organization and their
            Not applicable.                                       potential applications. Macromol Biosci, 12(10): 1336–1341.
                                                                  https://doi.org/10.1002/mabi.201200115
            Availability of data
                                                               11.  Xiong J, Wang H, Lan X, et al., 2022, Fabrication of bioinspired
            The data presented in this study are available from the   grid-crimp micropatterns by melt electrospinning writing
            corresponding author upon reasonable request.         for bone-ligament interface study.  Biofabrication, 14(2):
                                                                  025008–025008.
            References
                                                                  https://doi.org/10.1088/1758-5090/ac4ac8
            1.   Benjamin M, Kumai T, Milz S,  et al., 2002, The skeletal   12.  Criscenti G, Longoni A, Di Luca A, et al., 2016, Triphasic
               attachment of tendons - Tendon ‘entheses’. Comp Biochem   scaffolds for the regeneration of the bone-ligament interface.
               Physiol, 133(4): 931–945.                          Biofabrication, 8(1): 15009.
               https://doi.org/10.1016/S1095-6433(02)00138-1      https://doi.org/10.1088/1758-5090/8/1/015009


            Volume 9 Issue 5 (2023)                        311                         https://doi.org/10.18063/ijb.763
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