Page 201 - Handbook of Properties of Textile and Technical Fibres
P. 201
178 Handbook of Properties of Textile and Technical Fibres
Ki CS, Kim JW, Oh HJ, Lee KH, Park YH: The effect of residual silk sericin on the structure and
mechanical property of regenerated silk filament, Int J Biol Macromol 41:346e353, 2007b.
Kim HS, Park BH, Yoon JS, Jin HS: Preparation and characterization of poly[(butylene
succinate)-co-(butylene adipate)]/carbon nanotube-coated silk fiber composites, Polym Int
56:1035e1039, 2007.
Kirker-Head C, Karageoriou V, Hofmann S, Fajardo R, Betz O, Merkle HP, Hilbe M, von
Rechenberg B, Mc Cool J, Abrahamsen L, Nazarian A, Cory E, Curtis M, Kaplan D,
Meinel L: BMP-silk composite matrices heal critically sized femoral defects, Bone 41:
247e255, 2007.
Kiyosawa M, Ito E, Shirai K, Kanekatsu R, Miura M, Kiguchi K: Cocoon spinning behavior in
the silkworm, Bombyx mori: comparison of three strains constructing different cocoons in
shape, Zoological Sci 16:215e223, 1999.
Ko J: Engineering properties of spider silk fibers. In Wallensberger, editor: Natural fibres,
plastics and composites, Weston.
Kundu SC, Dash BC, Dash R, Kaplan DL: Natural protective glue protein, sericin bioengineered
by silkworms: potential for biomedical and biotechnological applications, Prog Polym Sci
33:998e1012, 2008.
Kundu B, Kurland NE, Yadavalli VK, Kundu SC: solation and processing of silk proteins for
biomedical applications, Int J Biol Macromol 70:70e77, 2014.
Kweon HY, Um IC, Park YH: Thermal behavior of regenerated Antheraea pernyi silk fibroin
film treated with aqueous methanol, Polymer 41:7361e7367, 2000.
Laity PR, Holland C: Native silk feedstock as a model polymer: a rheological perspective,
Biomacromolecules 17:2662e2671, 2016.
Lawrence BD, Wharram S, Kluge JA, Leisk GG, Omenetto FG, Rosenblatt MI, Kaplan DL:
Effect of hydration on silk film material properties, Macromol Biosci 10:393e403, 2010.
Lazaris A, Arcidiacono S, Huang Y, Zhou J-F, Duguay F, Chretien N, Welsh EA, Soares JW,
Karatzas CN: Spider silk fibres spun from soluble recombinant silk produced in mammalian
cells, Science 295:472e476, 2002.
Lee M, Kwon J, Na S: Mechanical behavior comparison of spider and silkworm silks using
molecular dynamics at atomic scale, Phys Chem e Chem Phys 18:4814e4821, 2016.
Lee SM, Cho D, Lee SG, Han SO, Drzal LT: Novel silk/poly(butylene succinate) biocomposites:
the effect of short fibre content on their mechanical and thermal properties, Compos Sci
Technol 65:647e657, 2005.
Lef evre T, Leclerc J, Rioux-Dube JF, Buffeteau T, Paquin MC, Rousseau ME, Cloutier I,
Auger M, Gagne SM, Boudreault S, Cloutier C, Pezolet M: Conformation of spider silk
proteins in situ in the intact major ampullate gland and in solution, Biomacromolecules 8:
2342e2344, 2007a.
Lef evre T, Rousseau M-E, Pézolet M: Protein secondary structure and orientation in silk as
revealed by Raman spectromicroscopy, Biophysical J 92:2885e2895, 2007b.
Lewis RV, Hinman M, Kothakota S, Fournier MJ: Expression and purification of a spider silk
protein: a new strategy for producing repetitive proteins, Protein Expr Purif 7:400e406,
1996.
Li M, Tao W, Lu S, Kuga S: Compliant film of regenerated Antheraea pernyi silk fibroin by
chemical crosslinking, Int J Biol Macromol 32:159e163, 2003.
Li G, Zhou P, Shao Z, Xie X, Chen X, Wang H, Chunyu L, Yu T: The natural silk spinning
process, Eur J Biochem 268:6600e6606, 2001.
Li W, Qiao XY, Sun K, Chen XD: Mechanical and viscoelastic properties of novel silk fibroin
fiber/poly(epsilon-caprolactone) biocomposites, J Appl Polym Sci 110:134e139, 2008.