Page 58 - JCTR-9-6
P. 58

422                       Mustahsan et al. | Journal of Clinical and Translational Research 2023; 9(6): 414-422
             Standardization; 2002                                    Development. Compos Part B Eng 2006;38:291-300.
        [48]  Udroiu R, Braga IC. Polyjet Technology Applications for   [63]  Rho  JY,  Kuhn-Spearing  L,  Zioupos  P.  Mechanical
             Rapid Tooling. MATEC Web Conf 2017;112:03011.            Properties  and  the  Hierarchical  Structure  of  Bone.  Med
        [49]  Chacón  J,  Caminero  MA,  García-Plaza  E,  Núnez  PJ.   Eng Phys 1998;20:92-102.
             Additive Manufacturing of Pla Structures using Fused   [64]  Ginebra MP, Espanol M, Maazouz Y, Bergez V, Pastorino
             Deposition  Modelling:  Effect  of  Process  Parameters  on   D.  Bioceramics  and  Bone  Healing.  EFORT  Open  Rev
             Mechanical Properties and their Optimal Selection. Mater   2018;3:173-83.
             Design 2017;124:143-57.                            [65]  Bohner M, Santoni BL, Döbelin N. β-Tricalcium Phosphate
        [50]  DeLustro  F,  Dasch  J,  Keefe  J,  Ellingsworth  L.  Immune   for Bone Substitution:  Synthesis and Properties.  Acta
             Responses to  Allogeneic  and Xenogeneic  Implants  of   Biomater 2020;113:23-41.
             Collagen and Collagen Derivatives. Clin Orthop Relat Res   [66]  Kahar NN, Ahmad N, Mariatti M, Yahaya BH, Sulaiman
             1990;260:263-79.                                         AR,  Hamid  ZA. A  review  of  Bioceramics  Scaffolds  for
        [51]  Hasegawa T, Miwa M, Sakai Y, Niikura T, Lee SY, Oe K,   Bone Defects in Different Types of Animal Models: HA
             et al. Efficient Cell-seeding into Scaffolds Improves Bone   and β -TCP. Biomed Phys Eng Express 2022;8.
             Formation. J Dent Res 2010;89:854-9.               [67]  Han Q, Wang C, Chen H, Zhao X, Wang J. Porous Tantalum
        [52]  Polo-Corrales  L,  Latorre-Esteves  M,  Ramirez-Vick  JE.   and Titanium in Orthopedics: A Review. ACS Biomater Sci
             Scaffold  Design  for  Bone  Regeneration.  J  Nanosci   Eng 2019;5:5798-824.
             Nanotechnol 2014;14:15-56.                         [68]  Huang  G,  Pan  ST,  Qiu  JX.  The  Clinical Application  of
        [53]  Chen  YW,  Fang  HY,  Shie  MY,  Shen  YF.  The  Mussel-  Porous  Tantalum and its New  Development for Bone
             inspired  Assisted  Apatite  Mineralized  on  PolyJet    Tissue Engineering. Materials (Basel) 2021;14:2647.
             Material for Artificial Bone Scaffold. Int J Bioprint 2019;   [69]  Crovace  AM,  Lacitignola  L,  Forleo  DM,  Staffieri  F,
             5:197.                                                   Francioso E, Di Meo  A,  et al.  3D  Biomimetic  Porous
        [54]  Amirrah IN, Lokanathan Y, Zulkiflee I, Wee MF, Motta A,   Titanium (Ti6Al4V ELI) Scaffolds for Large Bone Critical
             Fauzi MB. A Comprehensive Review on Collagen Type I      Defect Reconstruction: An Experimental Study in Sheep.
             Development of Biomaterials for Tissue Engineering: From   Animals (Basel) 2020;10:1389.
             Biosynthesis to Bioscaffold. Biomedicines 2022l;10:2307.  [70]  Qu H, Fu H, Han Z, Sun Y. Biomaterials for Bone Tissue
        [55]   Vepari C, Kaplan DL. Silk as a Biomaterial. Prog Polym   Engineering Scaffolds: A Review. RSC Adv 2019;9:26252-62.
             Sci 2007;32:991-1007.                              [71]  Alizadeh-Osgouei  M,  Li  Y,  Wen  C.  A  Comprehensive
        [56]  Ding Z, Cheng W, Mia MS, Lu Q. Silk Biomaterials for Bone   Review of Biodegradable  synthetic polymer-ceramic
             Tissue Engineering. Macromol Biosci 2021;21:e2100153.    composites  and their  Manufacture  for Biomedical
        [57]  Sahoo DR, Biswal T. Alginate and its Application to Tissue   Applications. Bioact Mater 2018;4:22-36.
             Engineering. SN Appl Sci 2021;3:30.                [72]  Ferreira FV, Otoni CG, Lopes JH, de Souza LP, Mei LH,
        [58]  Ressler A. Chitosan-Based Biomaterials for Bone Tissue   Lona LM, et al. Ultrathin Polymer Fibers Hybridized with
             Engineering  Applications:  A Short Review. Polymers     Bioactive Ceramics: A Review on Fundamental Pathways
             (Basel) 2022;14:3430.                                    of Electrospinning Towards Bone Regeneration. Mater Sci
        [59]   Kozusko  SD,  Riccio  C,  Goulart  M,  Bumgardner  J,  Jing   Eng C Mater Biol Appl 2021;123:111853.
             XL, Konofaos P. Chitosan as a Bone Scaffold Biomaterial.   [73]  George SM, Nayak C, Singh I, Balani K. Multifunctional
             J Craniofac Surg 2018;29:1788-93.                        Hydroxyapatite Composites for Orthopedic Applications:
        [60]  Collins MN, Ren G, Young K, Pina S, Reis RL, Oliveira   A Review. ACS Biomater Sci Eng 2022;8:3162-86.
             JM.  Scaffold  Fabrication  Technologies  and  Structure/  [74]  Kołodziejska B, Kaflak A, Kolmas J. Biologically Inspired
             Function  Properties in Bone  Tissue Engineering.  Adv   Collagen/Apatite  Composite  Biomaterials  for Potential
             Funct Mater 2021;31:2010609.                             Use in  Bone  Tissue Regeneration-A  Review.  Materials
        [61]  Engelberg  I,  Kohn  J.  Physico-mechanical  Properties  of   2020;13:1748.
             Degradable Polymers used in Medical  Applications:  A   [75]  Schulze  F,  Lang A,  Schoon  J,  Wassilew  GI,  Reichert  J.
             Comparative Study. Biomaterials 1991;12:292-304.         Scaffold Guided Bone Regeneration for the Treatment of
        [62]  Cheung  HY,  Lau  KT,  Lu TP,  Hui  D. A  Critical  Review   Large  Segmental  Defects  in  Long  Bones.  Biomedicines
             on Polymer-Based Bio-engineered Materials for Scaffold   2023;11:325.



                                                                Publisher’s note
                                                                AccScience Publishing remains neutral with regard to jurisdictional
                                                                claims in published maps and institutional affiliations.
                                          DOI: http://dx.doi.org/10.18053/jctres.09.202306.23-00097
   53   54   55   56   57   58   59   60   61   62   63