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Interfacial Films Formed by a Biosurfactant Modularized with a Silken Tail

The Journal of Physical Chemistry C. 2017-06; 
David Wibowo,Hao-Fei Wang, Zhengzhong Shao, Anton P. J. Middelberg,and Chun-Xia Zhao,
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Peptide Synthesis All glassware used to hold peptide solution was (i) soaked in detergent solution (1% (v/v) Decon-90, Decon Laboratories, Hove, UK); (ii) rinsed with 6 volumes of water; (iii) soaked for 15 min in freshly prepared piranha solution (equal parts of 30% (v/v) H2O2 (Rowe Scientific, Sumner, Australia) and 98% (v/ v) H2SO4 (Chem-Supply, Gillman, Australia); and (iv) rinsed with 10 volumes of water. Peptides AM1 (M 2473 Da, pI 8.54) and AM-S (M 3262 Da, pI 8.38) with a purity of >95% were synthesized by GenScript Corporation (Piscataway, NJ). Get A Quote
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摘要

This paper reports the dynamic interfacial behavior of a new interfacially active peptide AM-S, which was designed based on a peptide surfactant AM1 modularized with an additional silk-derived hydrophobic tail to enhance anchoring to air−water interfaces. AM-S peptide shows a random coil conformation in bulk solution similar to AM1 as determined by circular dichroism spectroscopy, which facilitates rapid adsorption at the air−water interface, reducing interfacial tension from 72 to 52 mN/m within 300 s at a low concentration of 10 μM. Although the interfacial films formed by AM-S demonstrated low tensile stress as compared to AM1, the AM-S films in the presence of Zn(II), but not in its absence, ... More

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