Cunningham, Aimee (2009). "Taken for a spin: Scientists look to spiders for the goods on silk". Science News. 171 (15): 231–34. doi:10.1002/scin.2007.5591711509.
Blackledge, TA; Hayashi, CY (2006). "Silken toolkits: Biomechanics of silk fibers spun by the orb web spider Argiope argentata (Fabricius 1775)". The Journal of Experimental Biology. 209 (Pt 13): 2452–61. doi:10.1242/jeb.02275. PMID16788028. S2CID16044608.
Kluge, J. A.; Rabotyagova, O.; Leisk, G. G.; Kaplan, D. L. (2008). "Spider silks and their applications". Trends Biotechnol. 26 (5): 244–51. doi:10.1016/j.tibtech.2008.02.006. PMID18367277.
Lefvre, T.; Boudreault, S.; Cloutier, C.; Pezolet, M. (2008). "Conformational and orientational transformation of silk proteins in the major ampullate gland of Nephila clavipes spiders". Biomacromolecules. 9 (9): 2399–407. doi:10.1021/bm800390j. PMID18702545.
Lewis, R. V. (2006). "Spider silk: Ancient ideas for new biomaterials". Chem. Rev. 106 (9): 3762–74. doi:10.1021/cr010194g. PMID16967919.
Dicko, C.; Porter, D.; Bond, J.; Kenney, J. M. & Vollratht, F. (2008). "Structural disorder in silk proteins reveals the emergence of elastomericity". Biomacromolecules. 9 (1): 216–21. doi:10.1021/bm701069y. PMID18078324.
Lefèvre, T.; Boudreault, S.; Cloutier, C. & Pézolet, M. (2008). "Conformational and orientational transformation of silk proteins in the major ampullate gland of Nephila clavipes spiders". Biomacromolecules. 9 (9): 2399–407. doi:10.1021/bm800390j. PMID18702545.
Heim, M.; Keerl, D. & Scheibel, T. (2009). "Spider Silk: From Soluble Protein to Extraordinary Fiber". Angewandte Chemie International Edition. 48 (20): 3584–96. doi:10.1002/anie.200803341. PMID19212993.
Vollrath, F. & Knight, D. P. (1998). "Structure and function of the silk production pathway in spider Nephila edulis". Int J Biol Macromol. 24 (2–3): 243–49. doi:10.1016/S0141-8130(98)00095-6. PMID10342771.
Chen, Xin; Knight, David P.; Vollrath, Fritz (1 July 2002). "Rheological characterization of nephila spidroin solution". Biomacromolecules. 3 (4): 644–48. doi:10.1021/bm0156126. ISSN1525-7797. PMID12099805.
Lazaris, A.; Arcidiacono, S, S; Huang, Y, Y; Zhou, J. F., JF; Duguay, F, F; Chretien, N, N; Welsh, E. A., EA; Soares, J. W., JW; Karatzas, C. N., CN (2002). "Spider silk fibers spun from soluble recombinant silk produced in mammalian cells". Science. 295 (5554): 472–76. Bibcode:2002Sci...295..472L. doi:10.1126/science.1065780. PMID11799236. S2CID9260156.
Seidel, A.; Liivak, Oskar; Calve, Sarah; Adaska, Jason; Ji, Gending; Yang, Zhitong; Grubb, David; Zax, David B.; Jelinski, Lynn W. (2000). "Regenerated spider silk: Processing, properties, and structure". Macromolecules. 33 (3): 775–80. Bibcode:2000MaMol..33..775S. doi:10.1021/ma990893j.
Arcidiacono, S.; Mello, Charlene M.; Butler, Michelle; Welsh, Elizabeth; Soares, Jason W.; Allen, Alfred; Ziegler, David; Laue, Thomas; Chase, Susan (2002). "Aqueous processing and fiber spinning of recombinant spider silks". Macromolecules. 35 (4): 1262–66. Bibcode:2002MaMol..35.1262A. doi:10.1021/ma011471o.
Gustafsson, L.; Jansson, R.; Hedhammar, M.; van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Advanced Materials. 30 (3). Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.
Gustafsson L, Tasiopoulos CP, Jansson R, Kvick M, Duursma T, Gasser TC, Wijngaart W, Hedhammar M (2020), "Recombinant Spider Silk Forms Tough and Elastic Nanomembranes that are Protein-Permeable and Support Cell Attachment and Growth", Advanced Functional Materials, 30 (40), doi:10.1002/adfm.202002982, S2CID225398425
Gustafsson, L.; Jansson, R.; Hedhammar, M. & van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Adv. Mater. 30 (3): 1704325. Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.
Fischer, F. & Brander, J. (1960). "Eine Analyse der Gespinste der Kreuzspinne". Hoppe-Seyler's Zeitschrift für Physiologische Chemie. 320: 92–102. doi:10.1515/bchm2.1960.320.1.92. PMID13699837.
Lucas, F.; Shaw, J. T. B. & Smith, S. G. (1960). "Comparative studies of fibroins.I. The amino acid composition of various fibroins and its significance in relation to their crystal structure and taxonomy". Journal of Molecular Biology. 2 (6): 339–49. doi:10.1016/S0022-2836(60)80045-9. PMID13763962.
Simmons, A.; Ray, E. & Jelinski, L. W. (1994). "Solid-State C-13 NMR of Nephila-Clavipes Dragline Silk Establishes Structure and Identity of Crystalline Regions". Macromolecules. 27 (18): 5235–37. Bibcode:1994MaMol..27.5235S. doi:10.1021/ma00096a060.
Shao, Z.; Vollrath, F.; Sirichaisit, J. & Young, R. J. (1999). "Analysis of spider silk in native and supercontracted states using Raman spectroscopy". Polymer. 40 (10): 2493–500. doi:10.1016/S0032-3861(98)00475-3.
Riekel, C.; Bränden, C; Craig, C; Ferrero, C; Heidelbach, F; Müller, M (1999). "Aspects of X-ray diffraction on single spider fibers". Int. J. Biol. Macromol. 24 (2–3): 179–86. doi:10.1016/S0141-8130(98)00084-1. PMID10342763.
Knight, D. P.; Knight, M. M. & Vollrath, F. (2000). "Beta transition and stress-induced phase separation in the spinning of spider dragline silk". Int. J. Biol. Macromol. 27 (3): 205–10. doi:10.1016/S0141-8130(00)00124-0. PMID10828366.
Riekel, C. & Vollrath, F. (2001). "Spider silk fibre extrusion: combined wide- and small-angle X- ray microdiffraction experiments". Int. J. Biol. Macromol. 29 (3): 203–10. doi:10.1016/S0141-8130(01)00166-0. PMID11589973.
Gosline, J. M.; DeMont, M. E. & Denny, M. W. (1986). "The structure and properties of spider silk". Endeavour. 10: 37–43. doi:10.1016/0160-9327(86)90049-9.
Prince, J. T.; McGrath, K. P.; Digirolamo, C. M. & Kaplan, D. L. (1995). "Construction, Cloning, and Expression of Synthetic Genes Encoding Spider Dragline Silk". Biochemistry. 34 (34): 10879–85. doi:10.1021/bi00034a022. PMID7662669.
Arcidiacono, S.; Mello, C.; Kaplan, D.; Cheley, S. & Bayley, H. (1998). "Purification and characterization of recombinant spider silk expressed in Escherichia coli". Applied Microbiology and Biotechnology. 49 (1): 31–38. doi:10.1007/s002530051133. PMID9487707. S2CID35267049.
Lazaris, A.; Arcidiacono, S, S; Huang, Y, Y; Zhou, J. F., JF; Duguay, F, F; Chretien, N, N; Welsh, E. A., EA; Soares, J. W., JW; Karatzas, C. N., CN (2002). "Spider silk fibers spun from soluble recombinant silk produced in mammalian cells". Science. 295 (5554): 472–76. Bibcode:2002Sci...295..472L. doi:10.1126/science.1065780. PMID11799236. S2CID9260156.
Seidel, A.; Liivak, Oskar; Calve, Sarah; Adaska, Jason; Ji, Gending; Yang, Zhitong; Grubb, David; Zax, David B.; Jelinski, Lynn W. (2000). "Regenerated spider silk: Processing, properties, and structure". Macromolecules. 33 (3): 775–80. Bibcode:2000MaMol..33..775S. doi:10.1021/ma990893j.
Arcidiacono, S.; Mello, Charlene M.; Butler, Michelle; Welsh, Elizabeth; Soares, Jason W.; Allen, Alfred; Ziegler, David; Laue, Thomas; Chase, Susan (2002). "Aqueous processing and fiber spinning of recombinant spider silks". Macromolecules. 35 (4): 1262–66. Bibcode:2002MaMol..35.1262A. doi:10.1021/ma011471o.
Gustafsson, L.; Jansson, R.; Hedhammar, M.; van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Advanced Materials. 30 (3). Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.
Gustafsson, L.; Jansson, R.; Hedhammar, M. & van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Adv. Mater. 30 (3): 1704325. Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.
Simmons, A.; Ray, E. & Jelinski, L. W. (1994). "Solid-State C-13 NMR of Nephila-Clavipes Dragline Silk Establishes Structure and Identity of Crystalline Regions". Macromolecules. 27 (18): 5235–37. Bibcode:1994MaMol..27.5235S. doi:10.1021/ma00096a060.
Work, Robert W.; Emerson, Paul D. (1982). "An Apparatus and Technique for the Forcible Silking of Spiders". Journal of Arachnology. 10 (1): 1–10. JSTOR3705113.
Jackson, Robert R. (1974). "Effects of D-Amphetamine Sulfate and Diazepam on Thread Connection Fine Structure in a Spider's Web". Journal of Arachnology. 2 (1): 37–41. JSTOR3704994.
Kluge, J. A.; Rabotyagova, O.; Leisk, G. G.; Kaplan, D. L. (2008). "Spider silks and their applications". Trends Biotechnol. 26 (5): 244–51. doi:10.1016/j.tibtech.2008.02.006. PMID18367277.
Lefvre, T.; Boudreault, S.; Cloutier, C.; Pezolet, M. (2008). "Conformational and orientational transformation of silk proteins in the major ampullate gland of Nephila clavipes spiders". Biomacromolecules. 9 (9): 2399–407. doi:10.1021/bm800390j. PMID18702545.
Lewis, R. V. (2006). "Spider silk: Ancient ideas for new biomaterials". Chem. Rev. 106 (9): 3762–74. doi:10.1021/cr010194g. PMID16967919.
Dicko, C.; Porter, D.; Bond, J.; Kenney, J. M. & Vollratht, F. (2008). "Structural disorder in silk proteins reveals the emergence of elastomericity". Biomacromolecules. 9 (1): 216–21. doi:10.1021/bm701069y. PMID18078324.
Lefèvre, T.; Boudreault, S.; Cloutier, C. & Pézolet, M. (2008). "Conformational and orientational transformation of silk proteins in the major ampullate gland of Nephila clavipes spiders". Biomacromolecules. 9 (9): 2399–407. doi:10.1021/bm800390j. PMID18702545.
Heim, M.; Keerl, D. & Scheibel, T. (2009). "Spider Silk: From Soluble Protein to Extraordinary Fiber". Angewandte Chemie International Edition. 48 (20): 3584–96. doi:10.1002/anie.200803341. PMID19212993.
Vollrath, F. & Knight, D. P. (1998). "Structure and function of the silk production pathway in spider Nephila edulis". Int J Biol Macromol. 24 (2–3): 243–49. doi:10.1016/S0141-8130(98)00095-6. PMID10342771.
Chen, Xin; Knight, David P.; Vollrath, Fritz (1 July 2002). "Rheological characterization of nephila spidroin solution". Biomacromolecules. 3 (4): 644–48. doi:10.1021/bm0156126. ISSN1525-7797. PMID12099805.
Lazaris, A.; Arcidiacono, S, S; Huang, Y, Y; Zhou, J. F., JF; Duguay, F, F; Chretien, N, N; Welsh, E. A., EA; Soares, J. W., JW; Karatzas, C. N., CN (2002). "Spider silk fibers spun from soluble recombinant silk produced in mammalian cells". Science. 295 (5554): 472–76. Bibcode:2002Sci...295..472L. doi:10.1126/science.1065780. PMID11799236. S2CID9260156.
Gustafsson, L.; Jansson, R.; Hedhammar, M.; van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Advanced Materials. 30 (3). Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.
Gustafsson, L.; Jansson, R.; Hedhammar, M. & van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Adv. Mater. 30 (3): 1704325. Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.
Fischer, F. & Brander, J. (1960). "Eine Analyse der Gespinste der Kreuzspinne". Hoppe-Seyler's Zeitschrift für Physiologische Chemie. 320: 92–102. doi:10.1515/bchm2.1960.320.1.92. PMID13699837.
Lucas, F.; Shaw, J. T. B. & Smith, S. G. (1960). "Comparative studies of fibroins.I. The amino acid composition of various fibroins and its significance in relation to their crystal structure and taxonomy". Journal of Molecular Biology. 2 (6): 339–49. doi:10.1016/S0022-2836(60)80045-9. PMID13763962.
Riekel, C.; Bränden, C; Craig, C; Ferrero, C; Heidelbach, F; Müller, M (1999). "Aspects of X-ray diffraction on single spider fibers". Int. J. Biol. Macromol. 24 (2–3): 179–86. doi:10.1016/S0141-8130(98)00084-1. PMID10342763.
Knight, D. P.; Knight, M. M. & Vollrath, F. (2000). "Beta transition and stress-induced phase separation in the spinning of spider dragline silk". Int. J. Biol. Macromol. 27 (3): 205–10. doi:10.1016/S0141-8130(00)00124-0. PMID10828366.
Riekel, C. & Vollrath, F. (2001). "Spider silk fibre extrusion: combined wide- and small-angle X- ray microdiffraction experiments". Int. J. Biol. Macromol. 29 (3): 203–10. doi:10.1016/S0141-8130(01)00166-0. PMID11589973.
Prince, J. T.; McGrath, K. P.; Digirolamo, C. M. & Kaplan, D. L. (1995). "Construction, Cloning, and Expression of Synthetic Genes Encoding Spider Dragline Silk". Biochemistry. 34 (34): 10879–85. doi:10.1021/bi00034a022. PMID7662669.
Arcidiacono, S.; Mello, C.; Kaplan, D.; Cheley, S. & Bayley, H. (1998). "Purification and characterization of recombinant spider silk expressed in Escherichia coli". Applied Microbiology and Biotechnology. 49 (1): 31–38. doi:10.1007/s002530051133. PMID9487707. S2CID35267049.
Service, Robert F. (18 October 2017). "Spinning spider silk into startup gold". Science Magazine, American Association for the Advancement of Science. Retrieved 26 November 2017.
Elices, M.; Guinea, G. V.; Plaza, G. R.; Karatzas, C.; Riekel, C.; Agulló-Rueda, F.; Daza, R.; Pérez-Rigueiro, J. (2011). "Bioinspired Fibers Follow the Track of Natural Spider Silk". Macromolecules. 44 (5): 1166–76. Bibcode:2011MaMol..44.1166E. doi:10.1021/ma102291m. S2CID97699665.
Lazaris, A.; Arcidiacono, S, S; Huang, Y, Y; Zhou, J. F., JF; Duguay, F, F; Chretien, N, N; Welsh, E. A., EA; Soares, J. W., JW; Karatzas, C. N., CN (2002). "Spider silk fibers spun from soluble recombinant silk produced in mammalian cells". Science. 295 (5554): 472–76. Bibcode:2002Sci...295..472L. doi:10.1126/science.1065780. PMID11799236. S2CID9260156.
Gustafsson, L.; Jansson, R.; Hedhammar, M.; van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Advanced Materials. 30 (3). Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.
Gustafsson L, Tasiopoulos CP, Jansson R, Kvick M, Duursma T, Gasser TC, Wijngaart W, Hedhammar M (2020), "Recombinant Spider Silk Forms Tough and Elastic Nanomembranes that are Protein-Permeable and Support Cell Attachment and Growth", Advanced Functional Materials, 30 (40), doi:10.1002/adfm.202002982, S2CID225398425
Gustafsson, L.; Jansson, R.; Hedhammar, M. & van der Wijngaart, W. (2018). "Structuring of Functional Spider Silk Wires, Coatings, and Sheets by Self-Assembly on Superhydrophobic Pillar Surfaces". Adv. Mater. 30 (3): 1704325. Bibcode:2018AdM....3004325G. doi:10.1002/adma.201704325. PMID29205540. S2CID205283504.