120
N. Chari et al.
Table 8.3 (continued)
S. no Details
Spider
Silkmoth
8
Uses
1. Vitamin K
2. As a thread for crosshairs in
optical instruments such as
telescopes and microscopes
3. In 2011, spider silk fibres were
used in the field of optics to
generate very fine diffraction
patterns
1. Used for industrial and commercial
purposes, such as in parachutes, bicycle
tires, comforter filling and artillery
gunpowder bags
2. After removal of outer irritant sericin
coating of the silk, it is suitable as
non-absorbable surgical sutures
Note Spider and spider fibres have been included from comparing with insect silk; however, insects and
spiders belong to the same phylum Arthropoda
References
1. Rinaudo, M. (2006). Chitin and chitosan: Properties and applications. Progress in polymer
science, 31(7), 603–632.
2. Dutta, P. K., Dutta, J., & Tripathi, V. S. (2004). Chitin and chitosan: Chemistry, properties and
applications. Journal of Scientific and Industrial Research, 63(1), 20–31.
3. Chapman, R. F. (1998). The insects: Structure and function, Ed. 3. Cambridge University Press.
4. Peters, W. (1992). Peritrophic membranes (Vol. 30). Springer-Verlag.
5. Rudall, K. M., & Kenchington, W. (1973). The chitin system. Biological Reviews, 48(4),
597–633.
6. Kramer, K. J., & Koga, D. (1986). Insect chitin: Physical state, synthesis, degradation and
metabolic regulation. Insect biochemistry, 16(6), 851–877.
7. Lehane, M. J. (1997). Peritrophic matrix structure and function. Annual review of entomology,
42(1), 525–550.
8. Giraud-Guille, M. M., & Bouligand, Y. (1986). Chitin-protein molecular organization in
arthropod. In Chitin in nature and technology (pp. 29–35). Springer US.
9. Bouligand, Y. (1972). Recherches sur les textures des états mésomorphes-1. les arrangements
focaux dans les smectiques: rappels et considérations théoriques. Journal de Physique, 33(5–6),
525–547.
10. Burrows, M., Shaw, S. R., & Sutton, G. P. (2008). Resilin and chitinous cuticle form a composite
structure for energy storage in jumping by froghopper insects. BMC biology, 6(1), 41.
11. Mindrinos, M. N., Petri, W. H., Galanopoulos, V. K., Lombard, M. F., & Margaritis, L. H.
(1980). Crosslinking of theDrosophila chorion involves a peroxidase. Wilhelm Roux’s archives
of developmental biology, 189(3), 187–196.
12. Anderson, S. O., & Weis-Fogh (1964) ‘Resilin’ in advances in insect.
13. Elvin, C. M., Carr, A. G., Huson, M. G., Maxwell, J. M., Pearson, R. D., Vuocolo, T., Liyou, N.
E., Wong, D. C., Merritt, D. J., & Dixon, N. E. (2005). Synthesis and properties of crosslinked
recombinant pro-resilin. Nature, 437(7061), 999–1002.
14. Vogel, S. (2005). Living in a physical world III. Getting up to speed. Journal of Bioscience,
30, 303–312.
15. Alper, J. (2002). Stretching the limits. Science, 297(5580), 329–331.
16. Weis-Fogh, T. (1960). A rubber-like protein in insect cuticle. Journal of Experimental Biology,
37(4), 889–907.
17. Chadwick, S. S. (1988). Ullmann’s Encyclopedia of industrial chemistry. Reference Services
Review, 16(4), 31–34.
18. Wilks, E. S. (2001). Industrial polymers handbook: Products, processes, applications (Vol. 2).
Wiley-Vch.
19. Tokareva, O., Michalczechen-Lacerda, V. A., Rech, E. L., & Kaplan, D. L. (2013). Recombinant
DNA production of spider silk proteins. Microbial biotechnology, 6(6), 651–663.