Biomedical Engineering Reference
In-Depth Information
[3] Zhang S. Emerging biological materials through molecular self-assembly. Biotechnol Adv.
2002 , 5, 321-339.
[4] Zhang S. Fabrication of novel biomaterials through molecular self-assembly. Nat Biotechnol.
2003 , 10, 1171-1178.
[5] Yokoi, H., Kinoshita, T., Zhang S. Dynamic reassembly of peptide RADA16 nanofiber
scaffold. Proc. Natl. Acad. Sci. USA 2005 , 102, 8414-8419.
[6] Davide M., Marini, Wonmuk H., Douglas A., Zhang S., Roger D. Left-Handed Helical
Ribbon Intermediates in the Self-Assembly of a Ȳ -Sheet Peptide. Nano Lett. 2002 , 4, 295-
299.
[7] Mi K., Wang G., Liu Z., Feng Z., Huang B., Zhao X. Influence of a Self-Assembling Peptide,
RADA16, Compared with Collagen I and Matrigel on the Malignant Phenotype of Human
Breast-Cancer Cells in 3D Cultures and in vivo. Macromol Biosci. 2009 , 9, 437-443.
[8] Zhang S., Gelainb F., Zhao X. Designer self-assembling peptide nanofiber scaffolds for 3D
tissue cell cultures. Seminars in Cancer Biology 2005 , 5, 413-440.
[9] Yuan Y., Cong C., Zhang J., Wei L., Li S., Chen Y., Tan W. , Cheng J., Li Y., Zhao X., Lu
Y. Self-assembling peptide nanofiber as potential substrates in islet transplantation.
Transplantation Proceedings 2008 , 40, 2571-2574.
[10] Ellis-Behnke R., Liang Y., You S., Tay D., Zhang S., So K., Schneider G Nano neuro
knitting: peptide nanofiber scaffold for brain repair and axon regeneration with functional
return of vision. Proc. Natl. Acad. Sci. USA 2006 , 103, 5054-5059.
[11] Qiu F., Chen Y., Zhao X., Comparative studies on the self-assembling behaviors of cationic
and catanionic surfactant-like peptides. J Coll & Inter Sci. 2009 , 1, 477-484.
[12] Qiu F., Chen Y., Tang C., Zhou Q., Wang C., Shi Y., Zhao X. De Novo Design of a
Bolaamphiphilic Peptide with Only Natural Amino Acids. Macromol Biosci. 2008 , 8, 1053-
1059.
[13] Santoso S. Self-assembly of surfactant-like peptides with variable glycine tails to form
nanotubes and nanovesicles. Nano Lett. 2002 , 2, 687-691.
[14] Zhao X.,Yusuke N.,Philip J., Patrick K., H. Gobind K., Zhang S., Designer short peptide
surfactants stabilize G protein-coupled receptor bovine rhodopsin. Proc. Natl. Acad. Sci. USA
2006 , 47, 17707-17712.
[15] Von M. Positive charged surfactant-like peptides self-assemble into nanostructures.
Langmuir 2003 , 19, 4332-4337.
[16] Wallin E., Von Heinje G. Genome-wide analysis of integral membrane protein from
eubacterial, archean and eukaryotic organisms. Protein Science 1998 , 7, 1029-1038.
[17] Loll P. Membrane protein structural biology: the high throughput challenge. J Struct Biol.
2003 , 142, 144-153.
[18] Patrick K., Zhao X., Michael V., Marc A B., Barry D., Zhang S. Self-Assembling Peptide
Detergents Stabilize Isolated Photosystem Ion a Dry Surface for an Extended Time. PLoS
Biol. 2005 , 7, e230.
[19] Whitesides G., Mathias J., Seto C. Molecular self-assembly and nanochemistry: a chemical
strategy for the synthesis of nanostructures. Science 1991 , 5036, 1312-1319.
[20] Mrksich M., Whitesides G. Using self-assembled monolayers to understand the interactions
of man-made surfaces with proteins and cells. Annu Rev Biophys Biomol Struct. 1996 , 25,
55-78.
Search WWH ::




Custom Search