Page 594 - IJB-10-3
P. 594

International Journal of Bioprinting                                 4D printing & simulation for biomedicine




            12.   Qu G, Huang J, Gu G, Li Z, Wu X, Ren J. Smart implants:   degradation and biocompatibility of PLA/TPU blends:
               4D-printed shape-morphing scaffolds for medical    “effects of compatibilization.” J Mech Behav Biomed Mater.
               implantation. Int J Bioprint. 2023;9(5).           2017;71:349-361.
               doi: 10.18063/ijb.764                              doi: 10.1016/j.jmbbm.2017.04.001
            13.   Guo Y, Huang J, Fang Y, Huang H, Wu J. 1D, 2D, and 3D   25.   Yang B, Huang WM, Li C, Chor JH. Effects of moisture
               scaffolds promoting  angiogenesis for enhanced wound   on the glass transition temperature of polyurethane shape
               healing. Chem Eng J. 2022;437:134690.              memory polymer filled with nano-carbon powder.  Eur
               doi: 10.1016/j.cej.2022.134690                     Polym J. 2005;41(5):1123-1128.
                                                                  doi: 10.1016/j.eurpolymj.2004.11.029
            14.   Saska S, Pilatti L, Blay A, Shibli JA. Bioresorbable polymers:
               advanced materials and 4D printing for tissue engineering.   26.   Zhang H, Wang H, Zhong W, Du Q. A novel type of shape
               Polymers (Basel). 2021;13(4):1-24.                 memory polymer blend and the shape memory mechanism.
               doi: 10.3390/polym13040563                         Polymer (Guildf). 2009;50(6):1596-1601.
                                                                  doi: 10.1016/j.polymer.2009.01.011
            15.   Khalid MY, Arif ZU, Noroozi R, Zolfagharian A, Bodaghi
               M. 4D printing of shape memory polymer composites: a   27.   Huskić M, Kusić D, Pulko I, Nardin B. Determination of
               review on fabrication techniques, applications, and future   residual stresses in amorphous thermoplastic polymers by
               perspectives. J Manuf Process. 2022;81:759-797.    DMA. J Appl Polym Sci. 2022;139(48):1-8.
               doi: 10.1016/j.jmapro.2022.07.035                  doi: 10.1002/app.53210
            16.   Sydney Gladman A, Matsumoto EA, Nuzzo RG, Mahadevan   28.   Ziegler W, Guttmann P, Kopeinig S, et al. Influence
               L, Lewis JA. Biomimetic 4D printing.  Nat Mater.   of different polyol segments on the crystallisation
               2016;15(4):413-418.                                behavior  of  polyurethane  elastomers  measured
               doi: 10.1038/nmat4544                              with DSC and DMA experiments.  Polym  Test.
                                                                  2018;71:18-26.
            17.   Patil AN, Sarje SH. Additive manufacturing with shape
               changing/memory materials: a review on 4D printing      doi: 10.1016/j.polymertesting.2018.08.021
               technology. Mater Today Proc. 2021;44:1744-1749.  29.   De Nardo L, Farè S. Dynamico-mechanical characterization
               doi: 10.1016/j.matpr.2020.11.907                   of polymer biomaterials.  Charact Polym Biomater. 2017:
                                                                  203-232.
            18.   Costa PDC, Costa DCS, Correia TR, Gaspar VM, Mano JF.
               Natural  origin biomaterials  for  4D  bioprinting  tissue-like      doi: 10.1016/B978-0-08-100737-2.00009-1
               constructs. Adv Mater Technol. 2021;6(10):1-21.  30.   Göpferich A. Mechanisms of polymer degradation and
               doi: 10.1002/admt.202100168                        erosion1.  Biomater Silver Jubil Compend. 1996;17(2):
                                                                  117-128.
            19.   Miao S, Castro N, Nowicki M, et al. 4D printing of polymeric
               materials for tissue and organ regeneration.  Mater Today.      doi: 10.1016/B978-008045154-1.50016-2
               2017;20(10):577-591.                            31.   Vasanthan N, Ly O. Effect of microstructure on hydrolytic
               doi: 10.1016/j.mattod.2017.06.005                  degradation studies of poly (l-lactic acid) by FTIR
                                                                  spectroscopy and differential scanning calorimetry. Polym
            20.   Zhao W, Liu L, Zhang F, Leng J, Liu Y. Shape memory   Degrad Stab. 2009;94(9):1364-1372.
               polymers and their composites in biomedical applications.      doi: 10.1016/j.polymdegradstab.2009.05.015
               Mater Sci Eng C. 2019;97:864-883.
               doi: 10.1016/j.msec.2018.12.054                 32.   Araque-Monrós MC, Vidaurre A, Gil-Santos L, Gironés
                                                                  Bernabé S, Monleón-Pradas M, Más-Estellés J. Study of the
            21.   Jin Z, Hu G, Zhang Z, Yu SY, Gu GX. Modeling and   degradation  of  a new PLA braided  biomaterial  in  buffer
               analysis of post-processing conditions on 4D-bioprinting   phosphate saline, basic and acid media, intended for the
               of deformable hydrogel-based biomaterial inks. Bioprinting.   regeneration of tendons and ligaments. Polym Degrad Stab.
               2023;33:e00286.                                    2013;98(9):1563-1570.
               doi: 10.1016/j.bprint.2023.e00286
                                                                  doi: 10.1016/j.polymdegradstab.2013.06.031
            22.   Feng  YC, Bodaghi  M, Liao WH.  Numerical/experimental   33.   Kim D, Lee J, Min Seok J, et al. Three-dimensional
               assessment of 3D-printed shape-memory polymeric beams.   bioprinting of bioactive scaffolds with thermally embedded
               J Appl Polym Sci. 2019;136(16):1-12.               abalone  shell  particles  for  bone  tissue  engineering.  Mater
               doi: 10.1002/app.47422
                                                                  Des. 2021;212.
            23.   Yu K, Xie T, Leng J, Ding Y, Qi HJ. Mechanisms of multi-     doi: 10.1016/j.matdes.2021.110228
               shape memory effects and associated energy release in shape   34.   Kohn DH, Sarmadi M, Helman JI, Krebsbach PH. Effects
               memory polymers. Soft Matter. 2012;8(20):5687-5695.  of pH on human bone marrow stromal cells in vitro:
               doi: 10.1039/c2sm25292a
                                                                  implications for tissue engineering of bone. J Biomed Mater
            24.   Dogan SK, Boyacioglu S, Kodal M, Gokce O, Ozkoc G.   Res. 2002;60(2):292-299.
               Thermally induced shape memory behavior, enzymatic      doi: 10.1002/jbm.10050


            Volume 10 Issue 3 (2024)                       586                                doi: 10.36922/ijb.3035
   589   590   591   592   593   594   595   596   597   598   599