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International Journal of Bioprinting                  3D printability and biochemical analysis of orange peel waste



            Acknowledgments                                    3.   Pons E, Alquézar B, Rodríguez A,  et al., 2014, Metabolic
                                                                  engineering of β-carotene in orange fruit increases its in
            C.P.L., J.D.T. and S.S.Y.T. acknowledged the financial   vivo antioxidant properties. Plant Biotechnol J, 12:17–27.
            support from the President’s Graduate Fellowship and
            SUTD PhD Fellowship awarded by Ministry of Education   4.   USDA, 2021, Citrus: World markets and trade. Available
                                                                  from:
            (MOE), Singapore.
                                                                  https://apps.fas.usda.gov/psdonline/circulars/citrus.pdf.
            Funding                                            5.   Ching  T,  Li  Y,  Karyappa  R,  et al.,  2019,  Fabrication  of

            M.H and C.H.L. acknowledge the project support by     integrated microfluidic devices by direct ink writing (DIW)
                                                                  3D printing. Sens Actuators B, 297:126609.
            SUTD Growth Plan (SGP) in Healthcare Research
            (SGPHCRS1907), SUTD Kickstarter Initiative Grants (SKI   6.   Yamagishi K, Zhou W, Ching T, et al., 2021, Ultra-deformable
            2021_02_05 and SKI 2021_02_09). C.H.L. acknowledges   and tissue-adhesive liquid metal antennas with high wireless
            SUTD Start-up Research Grant (SRG-SMT-2020-156), and   powering efficiency. Adv Mater, 33:2008062.
            SUTD-ZJU Grant (ZJUVP2000102).                     7.   Sochol RD, Sweet E, Glick CC,  et al., 2018,  3D printed
                                                                  microfluidics and  microelectronics.  Microelectron Eng,
            Conflict of interest                                  189:52–68.
            The authors declare no conflict of interests.      8.   Jing Ll, Li YH, Cheng KW,  et al., 2020, Application of
                                                                  selective laser melting technology based on titanium
            Author contributions                                  alloy in aerospace products. IOP Conf Ser: Mater Sci Eng,
                                                                  740:012056.
            Conceptualization: Jian Da Tan, Cheng Pau Lee, Chen Huei   9.   Van Der Merwe SR, Okanigbe DO, Desai DA, et al., 2022,
               Leo, Michinao Hashimoto                            A review on impact resistance of partially filled 3D printed
            Formal analysis: Cheng Pau Lee, Jian Da Tan, Su Yi Foo,   titanium matrix composite designed aircraft turbine engine
               Joseph Choon Wee Tan, Sakeena Si Yu Tan            fan blade, in TMS 2022 151st Annual Meeting & Exhibition
            Investigation: Cheng Pau Lee, Jian Da Tan, Su Yi Foo,   Supplemental Proceedings, Springer.
               Joseph Choon Wee Tan, Sakeena Si Yu Tan         10.  Mami F, Revéret J-P, Fallaha S, et al., 2017, Evaluating eco‐
            Methodology: Cheng Pau Lee, Jian Da Tan, Eng Shi Ong,   efficiency of 3D printing in the aeronautic industry. J Ind
               Chen Huei Leo, Michinao Hashimoto                  Ecol, 21(S1):S37–S48.
            Writing - original draft: Cheng Pau Lee, Jian Da Tan, Chen
               Huei Leo, Michinao Hashimoto                    11.  De Santis MM, Alsafadi HN, Tas S, et al., 2021, Extracellular-
            Writing - review & editing: Cheng Pau Lee, Jian Da Tan,   matrix-reinforced bioinks for 3D bioprinting human tissue.
                                                                  Adv Mater, 33:2005476.
               Chen Huei Leo, Michinao Hashimoto
                                                               12.  Chansoria P, Shirwaiker R, 2019, Characterizing the
            Ethics approval and consent to participate            process physics of ultrasound-assisted bioprinting.  Sci Rep,
                                                                  9(1):1–17.
            Not applicable.
                                                               13.  Sriphutkiat Y, Kasetsirikul S, Ketpun D,  et al., 2019, Cell
            Consent for publication                               alignment and accumulation using acoustic nozzle for
                                                                  bioprinting. Sci Rep, 9(1):1–12.
            Not applicable.                                    14.  Dankar I, Haddarah A, Omar FEL, et al., 2018, 3D printing
                                                                  technology: The new era for food customization and
            Availability of data                                  elaboration. Trends Food Sci Technol, 75:231–242.
            Data  are  available  from  the  corresponding  author  upon   15.  Lee CP, Hoo JY, 2021, Hashimoto M, Effect of oil content on
            reasonable request.                                   the printability of coconut cream. Int J Bioprint, 7:354.
                                                               16.  Liu Z, Bhandari B, Prakash S, et al., 2018, Creation of internal
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               https://doi.org/10.3390/foods9060811

            Volume 9 Issue 5 (2023)                        519                         https://doi.org/10.18063/ijb.776
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