Page 70 - MSAM-4-2
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Materials Science in Additive Manufacturing                                    Fibrous silk in biomedicine



               2020;21(5):1678-1686.                           25.  Wang X, Zhao P, Li Y,  et al. Modifying the mechanical
                                                                  properties of silk fiber by genetically disrupting the ionic
               doi: 10.1021/acs.biomac.0c00090
                                                                  environment for silk formation.  Biomacromolecules.
            14.  Holland C, Numata K, Rnjak-Kovacina J, Seib FP. The   2015;16(10):3119-3125.
               biomedical use of silk: Past, present, future.  Adv Healthc
               Mater. 2019;8(1):e1800465.                         doi: 10.1021/acs.biomac.5b00724
                                                               26.  Liu Q, Wang X, Zhou Y,  et  al. Dynamic changes and
               doi: 10.1002/adhm.201800465
                                                                  characterization of the metal ions in the silk glands and silk
            15.  Zhang X, Yang Z, Yang X, Zhang F, Pan Z. Sustainable   fibers of silkworm. Int J Mol Sci. 2023;24(7):6556.
               antibacterial surgical suture based on recycled silk resource      doi: 10.3390/ijms24076556
               by an internal combination of inorganic nanomaterials. ACS
               Appl Mater Interfaces. 2023;15(25):29971-29981.  27.  Lewis R. Unraveling the weave of spider silk.  Chem Eng
                                                                  News. 1996;46(9):636-638.
               doi: 10.1021/acsami.3c05054
                                                               28.  Altman GH, Diaz F, Jakuba C, et al. Silk-based biomaterials.
            16.  Wei W, Liu J, Peng Z, Liang M, Wang Y, Wang X. Gellable   Biomaterials. 2003;24(3):401-416.
               silk fibroin-polyethylene sponge for hemostasis. Artif Cells
               Nanomed Biotechnol. 2020;48(1):28-36.           29.  Wang C, Xia K, Zhang Y, Kaplan DL. Silk-based
                                                                  advanced  materials  for  soft  electronics.  Acc Chem Res.
               doi: 10.1080/21691401.2019.1699805                 2019;52(10):2916-2927.
            17.  Li C, Zhang Q, Lan D,  et al.  ε-Poly-l-lysine-modified      doi: 10.1021/acs.accounts.9b00333
               natural silk fiber membrane wound dressings with
               improved antimicrobial properties.  Int J Biol Macromol.   30.  Wu R, Ma L, Liu XY. From mesoscopic functionalization of
               2022;220:1049-1059.                                silk fibroin to smart fiber devices for textile electronics and
                                                                  photonics. Adv Sci. 2022;9(4):e2103981.
               doi: 10.1016/j.ijbiomac.2022.08.140
                                                                  doi: 10.1002/advs.202103981
            18.  Kuang H, Wang Y, Shi Y, et al. Construction and performance
               evaluation of Hep/silk-PLCL composite nanofiber   31.  Liu B, Song YW, Jin L, et al. Silk structure and degradation.
               small-caliber artificial blood vessel graft.  Biomaterials.   Colloids Surf B Biointerfaces. 2015;131:122-128.
               2020;259:120288.                                   doi: 10.1016/j.colsurfb.2015.04.040
               doi: 10.1016/j.biomaterials.2020.120288         32.  Mori K, Tanaka K, Kikuchi Y, Waga M, Waga S, Mizuno S.
            19.  Indalkar AB, Kandasubramanian B. Additive Manufacturing   Production of  a chimeric fibroin  light-chain  polypeptide
               of Silk. Engineering Natural Silk: Applications and Future   in a fibroin secretion-deficient naked pupa mutant of the
               Directions. Berlin: Springer; 2024. p. 71-90.      silkworm Bombyx mori. J Mol Biol. 1995;251(2):217-228.
            20.  Rockwood DN, Preda RC, Yücel T, Wang X,  Lovett ML,      doi: 10.1006/jmbi.1995.0429
               Kaplan DL. Materials fabrication from  Bombyx mori silk   33.  Inoue S, Tanaka K, Arisaka F, Kimura S, Ohtomo K, Mizuno S.
               fibroin. Nat Protoc. 2011;6(10):1612-1631.         Silk fibroin of Bombyx mori is secreted, assembling a high
               doi: 10.1038/nprot.2011.379                        molecular mass elementary unit consisting of H-chain,
                                                                  L-chain,  and P25,  with  a 6:6:1  molar  ratio.  J  Biol Chem.
            21.  Kaplan D, Adams WW, Farmer B, Viney C. Silk Polymers:   2000;275(51):40517-40528.
               Materials Science and Biotechnology. Washington, D.C: ACS
               Publications; 1993.                                doi: 10.1074/jbc.M006897200
                                                               34.  Tanaka K, Inoue S, Mizuno S. Hydrophobic interaction of
            22.  Bini E, Knight DP, Kaplan DL. Mapping domain structures
               in silks from insects and spiders related to protein assembly.   P25,  containing  Asn-linked  oligosaccharide  chains,  with
               J Mol Biol. 2004;335(1):27-40.                     the H-L complex of silk fibroin produced by Bombyx mori.
                                                                  Insect Biochem Mol Biol. 1999;29(3):269-276.
               doi: 10.1016/j.jmb.2003.10.043
                                                                  doi: 10.1016/s0965-1748(98)00135-0
            23.  Craig CL, Hsu M, Kaplan D, Pierce NE. A comparison of
               the composition of silk proteins produced by spiders and   35.  Sahoo  JK,  Hasturk  O, Falcucci  T,  Kaplan  DL. Silk
                                                                  chemistry and biomedical material designs. Nat Rev Chem.
               insects. Int J Biol Macromol. 1999;24(2-3):109-118.
                                                                  2023;7(5):302-318.
               doi: 10.1016/s0141-8130(99)00006-9
                                                                  doi: 10.1038/s41570-023-00486-x
            24.  Cenis JL, Madurga R, Aznar-Cervantes SD, et al. Mechanical
               behaviour and formation process of silkworm silk gut. Soft   36.  Tanaka K, Kajiyama N, Ishikura K, et al. Determination of
                                                                  the site of disulfide linkage between heavy and light chains
               Matter. 2015;11(46):8981-8991.
                                                                  of silk fibroin produced by Bombyx mori. Biochim Biophys
               doi: 10.1039/c5sm01877c                            Acta. 1999;1432(1):92-103.

            Volume 4 Issue 2 (2025)                         19                        doi: 10.36922/MSAM025130020
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