Page 472 - IJB-10-3
P. 472

International Journal of Bioprinting                                 Biomimetic scaffolds for tendon healing




                 Sevilla: Sociedad Española de Farmacia Industrial y      doi: 10.1016/B978-0-12-801590-2.00011-9
                 Galénica; 2021:258.                           10.  Engebretson B, Mussett Z, Williams C, Simmons A, Sikavitsas
            (ii)   Ruiz-Alonso S, Ordoyo-Pascual J, Gallego I, et al. 3D   V. Tendon tissue engineering: combined tissue engineering
                 printing technology in tendon tissue regeneration:   approach for the regeneration of tendons. In: Gomes ME, Reis
                 scaffolds for tissue reinforcement and growth factor   RL, Rodrigues MT, eds.  Tendon Regeneration. Cambridge,
                 delivery. In:  TERMIS 2023 – European Chapter      Massachusetts, US: Academic Press; 2015:281-320.
                                                                  doi: 10.1016/B978-0-12-801590-2.00011-9
                 Manchester. Tissue Engineering Part A. Manchester:
                 Mary Ann Liebert, Inc., publishers; 2023:1022.  11.  Bianchi E, Ruggeri M, Rossi S, et al. Innovative strategies in
                                                                  tendon tissue engineering. Pharmaceutics. 2021;13(1):89.
            References                                            doi: 10.3390/pharmaceutics13010089
                                                               12.  Matai I, Kaur G, Seyedsalehi A, McClinton A, Laurencin
            1.   Cieza A, Causey K, Kamenov K, Hanson SW, Chatterji S,   CT. Progress in 3D bioprinting technology for tissue/organ
               Vos T. Global estimates of the need for rehabilitation based   regenerative engineering. Biomaterials. 2020;226:119536.
               on the Global Burden of Disease study 2019: a systematic      doi: 10.1016/j.biomaterials.2019.119536
               analysis for the Global Burden of Disease Study 2019.
               Lancet. 2021;396(10267):2006-2017.              13.  Ruiz-Alonso S, Lafuente-Merchan M, Ciriza J, Saenz-Del-
               doi: 10.1016/S0140-6736(20)32340-0                 Burgo L, Pedraz JL. Tendon tissue engineering: cells, growth
                                                                  factors, scaffolds and production techniques.  J  Control
            2.   Liu S, Wang B, Fan S, Wang Y, Zhan Y, Ye D. Global burden   Release. 2021;333:448-486.
               of musculoskeletal disorders and attributable factors in      doi: 10.1016/j.jconrel.2021.03.040
               204 countries and territories: a secondary analysis of
               the  Global  Burden  of  Disease  2019  study.  BMJ Open.   14.  Chen XB, Anvari-Yazdi AF, Duan X, et al. Biomaterials
               2022;12(6):e062183-062183.                         /  bioinks  and  extrusion bioprinting.  Bioact Mater.
               doi: 10.1136/bmjopen-2022-062183                   2023;28:511-536.
                                                                  doi: 10.1016/j.bioactmat.2023.06.006
            3.   National Academies of Sciences, Engineering, and Medicine;
               Health and Medicine Division; Board on Health Care Services;   15.  ASTM International.  ISO/ASTM 52900 2021(E). Additive
               Committee on Identifying Disabling Medical Conditions   Manufacturing—General Principles—Fundamentals and
               Likely to Improve with Treatment. Selected Health Conditions   Vocabulary. Geneva: ASTM International; 2021:1–5.
               and Likelihood of Improvement with Treatment. Washington,   16.  Hospodiuk M, Moncal KK, Dey M, Ozbolat IT. Extrusion-
               DC: National Academies Press; 2020.                based biofabrication in tissue engineering and regenerative
            4.   Longo UG, Denaro V. Textbook of Musculoskeletal Disorders.   medicine. In  Ovsianikov  A, Yoo  J, Mironov  V, eds.  3D
               1st ed. Switzerland AG: Springer Cham; 2023.       Printing and Biofabrication. New York City, New York, US:
               doi: 10.1007/978-3-031-20987-1                     Springer International Publishing; 2016:1-27.
                                                                  doi: 10.1007/978-3-319-40498-1_10-1
            5.   Mahler F, Fritschy D. Partial and complete ruptures of the
               Achilles tendon and local corticosteroid injections.  Br J   17.  Kaliaraj GS, Shanmugam DK, Dasan A, Mosas KK.
               Sports Med. 1992;26(1):7-14.                       Hydrogels—a promising materials for 3D printing
               doi: 10.1136/bjsm.26.1.7                           technology. Gels. 2023;9(3).
                                                                  doi: 10.3390/gels9030260
            6.   Gatz M, Spang C, Alfredson H. Partial Achilles tendon
               rupture-a  neglected  entity:  a  narrative  literature  review  on   18.  Li X, Sun Q, Li Q, Kawazoe N, Chen G. Functional hydrogels
               diagnostics and treatment options. J Clin Med. 2020;9(10):3380.  with tunable structures and properties for tissue engineering
               doi: 10.3390/jcm9103380                            applications. Front Chem. 2018;6.
                                                                  doi: 10.3389/fchem.2018.00499
            7.   Riggin CN, Morris  TR, Soslowsky LJ. Tendinopathy II:
               etiology, pathology, and healing of tendon injury and   19.  Thang NH, Chien TB, Cuong DX. Polymer-based
               disease. In: Gomes ME, Reis RL, Rodrigues MT, eds. Tendon   hydrogels applied in drug delivery: an overview. Gels. 2023;
               Regeneration. Academic Press; 2015:149-183.        9(7):523.
               doi: 10.1016/B978-0-12-801590-2.00005-3            doi: 10.3390/gels9070523
            8.   Andarawis-Puri N, Flatow EL, Soslowsky LJ. Tendon basic   20.  Schwab A, Levato R, D’Este M, Piluso S, Eglin D, Malda J.
               science:  development,  repair,  regeneration,  and healing.  J   Printability and shape fidelity of bioinks in 3D bioprinting.
               Orthop Res. 2015;33(6):780-784.                    Chem Rev. 2020;120(19):11028-11055.
               doi: 10.1002/jor.22869                             doi: 10.1021/acs.chemrev.0c00084
            9.   Kwan TD, El Haj AJ. Multifactorial tendon tissue   21.  Lin X, Zhao X, Xu C, Wang L,  Xia Y. Progress in the mechanical
               engineering strategies. In: Gomes ME, Reis RL, Rodrigues   enhancement of hydrogels: fabrication strategies and underlying
               MT, eds. Tendon Regeneration. Cambridge, Massachusetts,   mechanisms. J Polym Sci. 2022;60(17):2525-2542.
               US: Academic Press; 2015:281-320.                  doi: 10.1002/pol.20220154

            Volume 10 Issue 3 (2024)                       464                                doi: 10.36922/ijb.2632
   467   468   469   470   471   472   473   474   475   476   477