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International Journal of Bioprinting                                    Printing collagen type IV membrane




            7.   Gain P, Jullienne R, He Z, et al. Global survey of corneal   of femtosecond laser and mechanically dissected ultrathin
               transplantation and eye banking.  JAMA  Ophthalmology.   endothelial lamellae. Investigative Ophthalmology & Visual
               2016;134(2):167-173.                               Science. 2014;55(8):5183-5190.
               doi: 10.1001/jamaophthalmol.2015.4776              doi: 10.1167/iovs.14-14309
            8.   Parekh M, Romano V, Hassanin K, et al. Biomaterials   19.  Petsoglou C, Wen L, Hoque M, et al. Effects of human
               for corneal endothelial cell culture and tissue    platelet lysate on the growth of cultured human corneal
               engineering.  Journal of Tissue Engineering. 2021/01/01   endothelial cells.  Experimental  Eye Research. 2021/07/01/
               2021;12:2041731421990536.                          2021;208:108613.
               doi: 10.1177/2041731421990536                      doi: 10.1016/j.exer.2021.108613
            9.   de Oliveira RC, Murillo S, Saikia P, Wilson SE. The efficacy   20.  Davidenko N, Hamaia S, Bax DV, et al. Selecting the correct
               of topical HGF on corneal fibrosis and epithelial healing   cellular  model  for  assessing  of  the  biological response  of
               after scar-producing PRK Injury in Rabbits.  Translational   collagen-based biomaterials.  Acta Biomater. Jan 2018;65:
               Vision Science & Technology. 2020;9(4):29-29.      88-101.
               doi: 10.1167/tvst.9.4.29                           doi: 10.1016/j.actbio.2017.10.035
            10.  Català P,  Thuret G,  Skottman H,  et al. Approaches  for   21.  Engelmann K, Bohnke M, Friedl P. Isolation and long-
               corneal endothelium regenerative medicine. Prog Retin Eye   term cultivation of human corneal endothelial cells. Invest
               Res. Mar 2022;87:100987.                           Ophthalmol Vis Sci. Nov 1988;29(11):1656-62.
               doi: 10.1016/j.preteyeres.2021.100987
                                                               22.  Ng WL, Shkolnikov V. Optimizing cell deposition for inkjet-
            11.  Palchesko RN, Funderburgh JL, Feinberg AW. Engineered   based bioprinting. IJB. 2024;0(0).
               basement membranes for regenerating the corneal      doi: 10.36922/ijb.2135
               endothelium.  Adv Healthc Mater. Nov 2016;5(22):   23.  Kim HS, Lee DY, Park JH, Kim JH, Hwang JH, Jung HI.
               2942-2950.                                         Optimization of electrohydrodynamic writing technique
               doi: 10.1002/adhm.201600488
                                                                  to print collagen.  Experimental Techniques. 2007/07/01
            12.  Sorkio  AE, Vuorimaa-Laukkanen EP, Hakola HM, et al.   2007;31(4):15-19.
               Biomimetic collagen I and IV double layer Langmuir-     doi: 10.1111/j.1747-1567.2007.00154.x
               Schaefer films as microenvironment for human pluripotent   24.  Sakai S, Kamei H, Mori T, et al. Visible light-induced
               stem cell derived retinal pigment epithelial cells.   hydrogelation of an alginate derivative and application
               Biomaterials. May 2015;51:257-269.                 to stereolithographic bioprinting using a visible light
               doi: 10.1016/j.biomaterials.2015.02.005
                                                                  projector and acid red.  Biomacromolecules. 2018/02/12
            13.  Gatseva  A,  Sin  YY,  Brezzo  G,  Van  Agtmael  T.  Basement   2018;19(2):672-679.
               membrane collagens and disease mechanisms.  Essays      doi: 10.1021/acs.biomac.7b01827
               Biochem. Sep 13 2019;63(3):297-312.             25.  Vetter JM, Butsch C, Faust M, et al. Irregularity of the
               doi: 10.1042/ebc20180071
                                                                  posterior corneal surface after curved interface femtosecond
            14.  Hospodiuk M, Dey M, Sosnoski D, Ozbolat IT. The   laser-assisted versus microkeratome-assisted descemet
               bioink: a comprehensive review on bioprintable materials.   stripping automated endothelial keratoplasty.  Cornea.
               Biotechnology Advances. 2017/03/01/ 2017;35(2):217-239.  2013;32(2)
               doi: 10.1016/j.biotechadv.2016.12.006
                                                               26.  Chen Z, You J, Liu X, et al. Biomaterials for corneal
            15.  Song Y, Hua S, Sayyar S, et al. Corneal bioprinting using   bioengineering. Biomed Mater. Mar 6 2018;13(3):032002.
               a high concentration pure collagen I transparent bioink.      doi: 10.1088/1748-605X/aa92d2
               Bioprinting. 2022/12/01/ 2022;28:e00235.        27.  Zhu YT, Tighe S, Chen SL, John T, Kao WY, Tseng SC.
               doi: 10.1016/j.bprint.2022.e00235
                                                                  Engineering of human corneal endothelial grafts.  Curr
            16.  Chung JHY, Naficy S, Yue Z, et al. Bio-ink properties and   Ophthalmol Rep. Sep 2015;3(3):207-217.
               printability for extrusion printing living cells. 10.1039/     doi: 10.1007/s40135-015-0077-5
               C3BM00012E. Biomaterials Science. 2013;1(7):763-773.  28.  Chen J, Li Z, Zhang L, et al. Descemet’s membrane supports
               doi: 10.1039/C3BM00012E
                                                                  corneal endothelial cell regeneration in rabbits. Sci Rep. Aug
            17.  Ouyang L, Yao R, Zhao Y, Sun W. Effect of bioink properties   1 2017;7(1):6983.
               on printability and cell viability for 3D bioplotting      doi: 10.1038/s41598-017-07557-2
               of embryonic stem cells.  Biofabrication. 2016/09/16   29.  Vercammen H, Miron A, Oellerich S, et al. Corneal
               2016;8(3):035020.                                  endothelial wound healing: understanding the regenerative
               doi: 10.1088/1758-5090/8/3/035020
                                                                  capacity of the innermost layer of the cornea. Translational
            18.  Dickman MM, van Maris MPFHL, van Marion FW, et al.   Research. 2022/10/01/ 2022;248:111-127.
               Surface metrology and 3-dimensional confocal profiling      doi: 10.1016/j.trsl.2022.05.003



            Volume 10 Issue 4 (2024)                       170                                doi: 10.36922/ijb.3258
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