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Regenerated silk fibroin

Y.H. Wu, Q.C. Shen, and S.S. Hu, Direct electrochemistry and electrocatalysis of heme-proteins in regenerated silk fibroin film. Anal. Chim. Acta 558, 179-186 (2006). [Pg.597]

Rossle, M., Panine, P., Urban, V. S., and Riekel, C. (2004). Structural evolution of regenerated silk fibroin under shear Combined wide- and small-angle x-ray scattering experiments using synchrotron radiation. Biopolymers 74, 316-327. Rousseau, M. E., Lefevre, T., Beaulieu, L., Asakura, T., and Pezolet, M. (2004). Study of protein conformation and orientation in silkworm and spider silk fibres using Raman microspectroscopy. Biomacromolecules 5, 2247-2257. [Pg.50]

Swinerd, V. M., Collins, A. M., Skaer, N. J. V., Gheysens, T., Mann, S., Silk inverse opals from template-directed beta-sheet transformation of regenerated silk fibroin. Soft Matter 2007, 3, 1377-1380. [Pg.966]

Liu H, Liu Y, Qian J, Yu T, Deng J. Feature of entrapment of glucose oxidase in regenerated silk fibroin membranes and fabrication of a L -dimethylferrocene-mediating glucose sensor. Microchemical Journal 1996, 53, 241-252. [Pg.238]

Figure 10 A novel micron-sized hybrid of silk fibroin and CaCOj, with a hollow structure and unusual rice-like shape is synthesized in the presence of regenerated silk fibroin via aggregation-mediated crystallization (a) mineralization of HAP on the electrospun mat of silk fibroin (b). Figure 10 A novel micron-sized hybrid of silk fibroin and CaCOj, with a hollow structure and unusual rice-like shape is synthesized in the presence of regenerated silk fibroin via aggregation-mediated crystallization (a) mineralization of HAP on the electrospun mat of silk fibroin (b).
Jeong, L., Lee, K.Y., Liu, J.W., and Park, W.H. "Time-resolved structural investigation of regenerated silk fibroin nanofibers treated with solvent vapor". Int. ]. Biol. Macromol. 38(2), 140-144 (2006). [Pg.152]

Matsumoto, K., Uejima, H., Iwasaki, T., Sano, Y., and Sumino, H. "Studies on regenerated protein fibers 3. Production of regenerated silk fibroin fiber by the self-dialyzing wet spinning method". J. Appl. Polym. Sci. 60(4), 503-511 (1996). [Pg.154]

Motta, A., Fambri, L., and Migliaresi, C. "Regenerated silk fibroin films Thermal and dynamic mechanical analysis". Macromol. Chem. Phys. 203, (10-11), 1658-1665 (2002). [Pg.155]

Zhu, J.X., Shao, H.L., and Hu, X.C. "Morphology and structure of electrospun mats from regenerated silk fibroin aqueous solutions with adjusting pH". Int. ]. Biol. Macromol. 41(4), 469-474 (2007). [Pg.160]

Min BM et al (2006) Regenerated silk fibroin nanofibers water vapor-induced structural changes and their effects on the behavior of normal human cells. Macromol Biosci 6(4) 285-292... [Pg.126]

Qian J, Liu Y, Liu H et al. Characterization of regenerated silk fibroin membrane for immobilisation of peroxidase and construction of an amperometric hydrogen peroxide sensor employing phenazine methosulphate as electron shuttle. J Electroanal Chem 1995 397 157-162. [Pg.190]

Typical NMR spectra of the aqueous solution of the regenerated silk fibroin prepared from B. mori cocoon are shown in Fig. 3." ... [Pg.106]

R. Nazarov, H.J. Jin, D.L. Kaplan, Porous 3-D scaffolds from regenerated silk fibroin. Biomacromolecules 5 (2004) 718-726. [Pg.59]

An electrospinning process was used to fabricate silk fibroin (SF) nanofiber nonwovens for wound dressing applications. The electrospinning of regenerated silk fibroin (SF) was performed with formic acid as a spinning solvent For ciystallization, as-spun SF nanofiber nonwovens were chemically treated with an... [Pg.137]

In contrast to concentrated acids or chaotropic salt solutions, fluorinated solvents do not affect the regenerated silk fibroin protein structure (Fu et al., 2009). [Pg.357]

Goujon, N., Wang, X., Rajkowa, R., Byrne, N., 2012. Regenerated silk fibroin using protic ionic liquids solvents towards an all-ionic-liquid process for producing silk with tunable properties. Chentical Communications (Cambridge, England) 48 (9), 1278-1280. [Pg.369]

Liu, T., Miao, J., Sheng, W., Xie, Y., Huang, Q., Shan, Y., Yang, J., 2010. Cytocompatibility of regenerated silk fibroin film a medical biomaterial applicable to wound healing. Journal of Zhejiang University Science B 11 (1), 10—16. [Pg.371]

Um, I.C., Kweon, H.Y., Park, Y.H., Hudson, S., 2001. Structural characteristics and properties of the regenerated silk fibroin prepared from formic acid. International Journal of Biological Macromolecules 29 (2), 91—97. [Pg.374]

S. Ling, L. Zhou, W. Zhou, Z. Shao, X. Chen, Conformation transition kinetics and spinnability of regenerated silk fibroin with glycol, glycerol and polyethylene glycol. Mater. Lett. 81 (2012) 13-15. [Pg.254]

Yuan, Q., Yao, J., Huang, L., Chen, X., Shao, Z., 2010. Correlation between structural and dynamic mechanical transitions of regenerated silk fibroin. Polymer 51, 6278-6283. [Pg.237]

Silkworms, such as the Bombyx mori, produce silk fibroin that can be readily transformed into a filamentary form [27]. Regenerated silk fibroin, obtained from Bombyx mori cocoons, is soluble in aqueous solutions. However, this ink possesses a limited shelf life and a narrow compositional range over which its rheological properties are suitable for filamentary printing. To achieve the desired rheology... [Pg.98]


See other pages where Regenerated silk fibroin is mentioned: [Pg.141]    [Pg.150]    [Pg.160]    [Pg.132]    [Pg.59]    [Pg.49]    [Pg.358]    [Pg.360]    [Pg.361]    [Pg.361]    [Pg.364]    [Pg.366]    [Pg.353]    [Pg.231]    [Pg.99]    [Pg.231]   
See also in sourсe #XX -- [ Pg.140 ]




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