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Items: 6

1.

Effects of different post-spin stretching conditions on the mechanical properties of synthetic spider silk fibers.

Albertson AE, Teulé F, Weber W, Yarger JL, Lewis RV.

J Mech Behav Biomed Mater. 2014 Jan;29:225-34. doi: 10.1016/j.jmbbm.2013.09.002. Epub 2013 Sep 14.

2.

Nephila clavipes Flagelliform silk-like GGX motifs contribute to extensibility and spacer motifs contribute to strength in synthetic spider silk fibers.

Adrianos SL, Teulé F, Hinman MB, Jones JA, Weber WS, Yarger JL, Lewis RV.

Biomacromolecules. 2013 Jun 10;14(6):1751-60. doi: 10.1021/bm400125w. Epub 2013 May 22.

3.

Silkworms transformed with chimeric silkworm/spider silk genes spin composite silk fibers with improved mechanical properties.

Teulé F, Miao YG, Sohn BH, Kim YS, Hull JJ, Fraser MJ Jr, Lewis RV, Jarvis DL.

Proc Natl Acad Sci U S A. 2012 Jan 17;109(3):923-8. doi: 10.1073/pnas.1109420109. Epub 2012 Jan 3.

4.

Combining flagelliform and dragline spider silk motifs to produce tunable synthetic biopolymer fibers.

Teulé F, Addison B, Cooper AR, Ayon J, Henning RW, Benmore CJ, Holland GP, Yarger JL, Lewis RV.

Biopolymers. 2012 Jun;97(6):418-31. doi: 10.1002/bip.21724. Epub 2011 Oct 20.

5.

A protocol for the production of recombinant spider silk-like proteins for artificial fiber spinning.

Teulé F, Cooper AR, Furin WA, Bittencourt D, Rech EL, Brooks A, Lewis RV.

Nat Protoc. 2009;4(3):341-55. doi: 10.1038/nprot.2008.250.

6.

The high oleate trait in the cultivated peanut [Arachis hypogaea L.]. I. Isolation and characterization of two genes encoding microsomal oleoyl-PC desaturases.

Jung S, Swift D, Sengoku E, Patel M, Teulé F, Powell G, Moore K, Abbott A.

Mol Gen Genet. 2000 Jun;263(5):796-805.

PMID:
10905347

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