Page 71 - v11i4
P. 71

International Journal of Bioprinting                                3D bioprinting of nerve guidance conduits




               cells for bridging 50-mm dog sciatic nerve gaps. Tissue Eng   effects of ocular administration in experimental model of
               Part A. 2010;16(12):3779-3790.                     optic nerve injury. Mol Neurobiol. 2019;56(2):1056-69.
               doi: 10.1089/ten.tea.2010.0299                     doi: 10.1007/s12035-018-1154-1
            121. Santiago  LY,  Clavijo-Alvarez  J,  Brayfield  C,  Rubin  JP,   132. Chen ZW, Wang MS. Effects of nerve growth factor on
               Marra KG. Delivery of adipose-derived precursor    crushed sciatic nerve regeneration in rats.  Microsurgery.
               cells for peripheral nerve repair.  Cell Transplant. 2009;   1995;16(8):547-551.
               18(2):145-158.                                     doi: 10.1002/micr.1920160808
               doi: 10.3727/096368909788341289
                                                               133. Tang S, Zhu JX, Xu YB, Xiang AP, Jiang MH, Quan DP. The
            122. Jiang LF, Jones S, Jia XF. Stem cell transplantation for   effects of gradients of nerve growth factor immobilized
               peripheral nerve regeneration: current options and   PCLA scaffolds on neurite outgrowth in vitro and
               opportunities. Int J Mol Sci. 2017;18(1):94.       peripheral nerve regeneration in rats.  Biomaterials. 2013;
               doi: 10.3390/ijms18010094                          34(29):7086-7096.
            123. Oliveira JT, Almeida FM, Biancalana A, et al. Mesenchymal      doi: 10.1016/j.biomaterials.2013.05.080
               stem cells in a polycaprolactone conduit enhance   134. Xu F,  Su GB.  Calendula officinalis extract-loaded
               median-nerve  regeneration,  prevent  decrease  of  creatine   conduits improved sciatic nerve injury repair through
               phosphokinase levels in muscle, and improve functional   upregulation of BDNF and GFAP. J Bioact Compat Polym.
               recovery in mice. Neuroscience. 2010;170(4):1295-1303.  2024;39(4):217-235.
               doi: 10.1016/j.neuroscience.2010.08.042            doi: 10.1177/08839115241258150
            124. Greenberg DA, Jin KL. From angiogenesis to neuropathology.   135. Rao F, Wang YH, Zhang DY, et al. Aligned chitosan nanofiber
               Nature. 2015;438(7070):954-959.                    hydrogel grafted with peptides mimicking bioactive brain-
               doi: 10.1038/nature04481                           derived neurotrophic factor and vascular endothelial
            125. Zhang QZ, Nguyen PD, Shi SH, Burrell JC, Cullen DK, Le   growth factor repair long-distance sciatic nerve defects in
               AD. 3D bio-printed scaffold-free nerve constructs with   rats. Theranostics. 2020; 10(4):1590-1603.
               human gingiva derived mesenchymal stem cells promote rat      doi: 10.7150/thno.36272
               facial nerve regeneration. Sci Rep. 2018;8:6634.  136. Grothe C, Nikkhah G. The role of basic fibroblast growth
               doi: 10.1038/s41598-018-24888-w                    factor in peripheral nerve regeneration.  Anat Embryol.
            126. Cui Y, Yao Y, Zhao YN, et al. Functional collagen conduits   2001;204(3):171-177.
               combined with human mesenchymal stem cells promote      doi: 10.1007/s004290100205
               regeneration after sciatic nerve transection in dogs. J Tissue   137. Cui Y, Lu C, Meng DQ, et al. Collagen scaffolds modified
               Eng Regen Med. 2018;12(5):1285-1296.               with CNTF and bFGF promote facial nerve regeneration in
               doi: 10.1002/term.2660                             minipigs. Biomaterials. 2014;35(27):7819-7827.
            127. Endo T, Kadoya K, Suzuki T, et al. Mature but not developing      doi: 10.1016/j.biomaterials.2014.05.065
               Schwann cells promote axon regeneration after peripheral   138. Mobasseri SA, Terenghi G, Downes S. Micro-structural
               nerve injury. NJP Regen Med. 2022;7:12.            geometry of thin films  intended for  the inner  lumen of
               doi: 10.1038/s41536-022-00205-y                    nerve conduits affects nerve repair. J Mater Sci-Mater Med.
            128. Ning LQ, Mehta R, Cao C, et al. Embedded 3D bioprinting   2013;24(7):1639-1647.
               of gelatin methacryloyl-based constructs with highly      doi: 10.1007/s10856-013-4922-5
               tunable structural fidelity.  ACS Appl Mater Interfaces.   139. Melchels FPW, Feijen J, Grijpma DW. A review on
               2020;12(40):44563-44577.                           stereolithography and its applications in biomedical
               doi: 10.1021/acsami.0c15078                        engineering. Biomaterials. 2010;31(4):6121-6130.
            129. Ning LQ, Zhu N, Mohabatpour F, Sarker MD, Schreyer      doi: 10.1016/j.biomaterials.2010.04.050.
               DJ, Chen XB.  Bioprinting Schwann cell-laden scaffolds   140. Schmidleithner C, Malferarri S, Palgrave R, Bomze D,
               from low-viscosity hydrogel compositions.  J Mater  Chem.   Schwentenwein M, Kalaskar DM. Application of high
               2019;7(29):4538-4551.                              resolution DLP stereolithography for fabrication of
               doi: 10.1039/c9tb00669a
                                                                  tricalcium phosphate scaffolds for bone regeneration.
            130. Summa PG, Kingham PJ, Raffoul W, Wiberg M, Terenghi   Biomed Mater. 2018;14(4):045018.
               G, Kalbermatten DF. Adipose-derived stem cells enhance      doi: 10.1088/1748-605X/ab279d
               peripheral nerve regeneration. J Plast Reconstr Aesthet Surg.   141. Zennifer A, Manivannan S, Sethuraman S, Kumbar SG,
               2010;63(9):1544-1552.                              Sundaramurthi D. 3D bioprinting and photocrosslinking:
               doi: 10.1016/j.bjps.2009.09.012
                                                                  emerging strategies & future perspectives.  Biomater Adv.
            131. Mesentier-Louro LA, Rosso P, Carito V, et al. Nerve growth   2021;134:112576.
               factor role on retinal ganglion cell survival and axon regrowth:      doi: 10.1016/j.msec.2021.112576


            Volume 11 Issue 4 (2025)                        63                            doi: 10.36922/IJB025140120
   66   67   68   69   70   71   72   73   74   75   76