Page 141 - IJB-7-3
P. 141

Rueda-Gensini, et al.
           2.   Ng W, Chua C, Shen Y, 2019, Print Me An Organ! Why We   Peripheral Neuropathy. Front Bioeng Biotechnol, 4:02188.
               Are Not There Yet, Prog Polym Sci, 97:101145.   19.  Williams  CG,  Malik  AN,  Kim  TK,  et al.,  2005,  Variable
           3.   Frantz C, Stewart KM, Weaver VM, 2010, The Extracellular   Cytocompatibility  of  Six  Cell  Lines  with  Photoinitiators
               Matrix at a Glance, J Cell Sci, 123:4195–200.       Used for Polymerizing Hydrogels and Cell Encapsulation.
           4.   Schaefer  L,  Schaefer  RM,  2009,  Proteoglycans:  From   Biomaterials, 26:1211–8.
               Structural  Compounds  to  Signaling  Molecules,  Cell  Tissue   20.  Diamantides N, Wang L, Pruiksma T, et al., 2017, Correlating
               Res, 339:237–46.                                    Rheological Properties and Printability of Collagen Bioinks:
           5.   Kim  BS,  Kim  H,  Gao  G,  et al.,  2017,  Decellularized   The  Effects  of  Riboflavin  Photocrosslinking  and  pH.
               Extracellular  Matrix: A  Step Towards  the  Next  Generation   Biofabrication, 9:034102.
               Source for Bioink Manufacturing. Biofabrication, 9:034104.  21.  Parthiban SP, Athirasala A, Tahayeri A, et al., 2020, BoneMA
           6.   Kohane  DS,  Langer  R,  2008,  Polymeric  Biomaterials  in   Synthesis  and  Characterization  of  a  Methacrylated  Bone-
               Tissue Engineering. Pediatr Res, 63:487–91.         derived  Hydrogel  for  Bioprinting  of  Vascularized  Tissues.
           7.   Badylak SF, 2002, The Extracellular Matrix as a Scaffold for   BioRxiv, 2020:974063.
               Tissue Reconstruction. Semin Cell Dev Biol, 13:377–83.  22.  Kim SH, Yeon YK, Lee JM, et al., 2018, Precisely Printable
           8.   Saldin LT, Cramer MC, Velankar SS, et al, 2017, Extracellular   and  Biocompatible  Silk  Fibroin  Bioink  for  Digital  Light
               Matrix Hydrogels from Decellularized Tissues: Structure and   Processing 3D Printing. Nat Commun, 9:1620.
               Function. Acta Biomater, 49:1–15.               23.  Poldervaart  MT,  Goversen  B,  de  Ruijter  M,  et al.,  2017,
           9.   Pouliot RA, Young BM, Link PA, et al. Porcine Lung-Derived   3D Bioprinting  of  Methacrylated  Hyaluronic  Acid
               Extracellular Matrix Hydrogel Properties Are Dependent on   (MeHA) Hydrogel with Intrinsic Osteogenicity. PLoS One,
               Pepsin Digestion Time. Tissue Eng C Methods, 26:332–46.  12:e0177628.
           10.  Yang  C,  2012,  Enhanced  physicochemical  properties  of   24.  Paxton N, Smolan W, Böck T, et al., 2017, Proposal to Assess
               collagen  by  using  EDC/NHS-crosslinking.  Bull Mater Sci,   Printability  of  Bioinks  for  Extrusion-based  Bioprinting
               35:913–8.                                           and  Evaluation  of  Rheological  Properties  Governing
           11.  Curley CJ, Dolan EB, Otten M, et al., 2018, An Injectable   Bioprintability. Biofabrication, 9:044107.
               Alginate/Extra  Cellular  Matrix (ECM) Hydrogel  Towards   25.  Li  J,  Chen  M,  Fan  X,  et al,  2016,  Recent  Advances  in
               Acellular Treatment of Heart Failure. Drug Deliv Transl Res,   Bioprinting  Techniques: Approaches, Applications  and
               9:1–13.                                             Future Prospects. J Transl Med, 14:271.
           12.  Choi B, Kim S, Lin B, et al., 2014, Cartilaginous Extracellular   26.  Derakhshanfar  S,  Mbeleck  R,  Xu  K,  et al.,  2018,  3D
               Matrix-Modified  Chitosan  Hydrogels  for  Cartilage  Tissue   Bioprinting for Biomedical Devices and Tissue Engineering:
               Engineering. ACS Appl Mater Interfaces, 6:20110–21.  A  Review  of  Recent  Trends  and Advances.  Bioact  Mater,
           13.  Ali M, Kumar A Pr, Yoo JJ, et al., 2019, A Photo-Crosslinkable   3:144–56.
               Kidney  ECM-Derived  Bioink  Accelerates  Renal  Tissue   27.  Agarwala  S,  2020,  Electrically  Conducting  Hydrogels  for
               Formation. Adv Healthc Mater, 8:1800992.            Health care: Concept Fabrication Methods, and Applications.
           14.  Sionkowska A, Skopinska-Wisniewska J, Gawron M, et al.,   Int J Bioprint, 6:273.
               2010, Chemical and Thermal Cross-linking of Collagen and   28.  Thakral  G,  LaFontaine  J,  Najafi  B,  et  al.,  2013,  Electrical
               Elastin Hydrolysates. Int J Biol Macromol, 47:570–7.  Stimulation  to  Accelerate  Wound  Healing.  Diabetic  Foot
           15.  Davidenko N, Schuster CF, Bax DV, et al., 2015, Control of   Ankle, 4:22081.
               Crosslinking for Tailoring Collagen-based Scaffolds Stability   29.  Ashrafi  M,  Alonso-Rasgado  T,  Baguneid  M,  et  al.,  2017,
               and Mechanics. Acta Biomater, 25:131–42.            The  Efficacy  of  Electrical  Stimulation  in  Lower  Extremity
           16.  Reddy N, Reddy R, Jiang Q, 2015, Crosslinking Biopolymers   Cutaneous  Wound  Healing:  A  Systematic  Review.  Exp
               for Biomedical Applications. Trends Biotechnol, 33:362–9.  Dermatol, 26:171–8.
           17.  O’Connell CD, Zhang B, Onofrillo C, et al., 2018, Tailoring   30.  Meng S, Rouabhia M, Zhang Z, 2012, Electrical Stimulation
               the mechanical properties of gelatin methacryloyl hydrogels   Modulates Osteoblast Proliferation and Bone Protein
               through  manipulation  of  the  photocrosslinking  conditions.   Production through Heparin-Bioactivated  Conductive
               Soft Matter, 14:2142–51.                            Scaffolds. Bioelectromagnetics, 34:189–99.
           18.  Ashwin S, Reed G, Michael M, 2016, Myelinated 3D Neural   31.  Leppik  L,  Zhihua  H,  Mobini  S,  et al.,  2018,  Combining
               Culture Platform as a Physiological Model of Diabetic   Electrical Stimulation and Tissue Engineering to Treat Large

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