TY - JOUR
T1 - Properties of Biomimetic Artificial Spider Silk Fibers Tuned by PostSpin Bath Incubation
AU - Greco, Gabriele
AU - Francis, Juanita
AU - Arndt, Tina
AU - Schmuck, Benjamin
AU - Backlund, Fredrik G.
AU - Barth, Andreas
AU - Johansson, Jan
AU - Pugno, Nicola M.
AU - Rising, Anna
PY - 2020
Y1 - 2020
N2 - Efficient production of artificial spider silk fibers with properties that match its natural counterpart has still not been achieved. Recently, a biomimetic process for spinning recombinant spider silk proteins (spidroins) was presented, in which important molecular mechanisms involved in native spider silk spinning were recapitulated. However, drawbacks of these fibers included inferior mechanical properties and problems with low resistance to aqueous environments. In this work, we show that >= 5 h incubation of the fibers, in a collection bath of 500 mM NaAc and 200 mM NaCl, at pH 5 results in fibers that do not dissolve in water or phosphate buffered saline, which implies that the fibers can be used for applications that involve wet/humid conditions. Furthermore, incubation in the collection bath improved the strain at break and was associated with increased beta-sheet content, but did not affect the fiber morphology. In summary, we present a simple way to improve artificial spider silk fiber strain at break and resistance to aqueous solvents.
AB - Efficient production of artificial spider silk fibers with properties that match its natural counterpart has still not been achieved. Recently, a biomimetic process for spinning recombinant spider silk proteins (spidroins) was presented, in which important molecular mechanisms involved in native spider silk spinning were recapitulated. However, drawbacks of these fibers included inferior mechanical properties and problems with low resistance to aqueous environments. In this work, we show that >= 5 h incubation of the fibers, in a collection bath of 500 mM NaAc and 200 mM NaCl, at pH 5 results in fibers that do not dissolve in water or phosphate buffered saline, which implies that the fibers can be used for applications that involve wet/humid conditions. Furthermore, incubation in the collection bath improved the strain at break and was associated with increased beta-sheet content, but did not affect the fiber morphology. In summary, we present a simple way to improve artificial spider silk fiber strain at break and resistance to aqueous solvents.
KW - fiber
KW - tensile testing
KW - mechanical properties
KW - spinning
KW - fiber
KW - tensile testing
KW - mechanical properties
KW - spinning
UR - https://res.slu.se/id/publ/107201
UR - https://www.mdpi.com/1420-3049/25/14/3248/htm
U2 - 10.3390/molecules25143248
DO - 10.3390/molecules25143248
M3 - Journal article
SN - 1420-3049
VL - 25
JO - Molecules (Basel, Switzerland)
JF - Molecules (Basel, Switzerland)
IS - 14
M1 - 3248
ER -