A combinatorial approach in designing hydrophilic surfaces for solid-phase peptide synthesis
Publication
, Journal Article
Ercole, F; FitzGerald, M; Perera, S; Ede, N; Riley, P; Campbell, R
Published in: Journal of Applied Polymer Science
July 1, 2003
A hydrophilic surface suitable for solid-state peptide synthesis was developed on a solid support called a lantern. The split-and-mix combinatorial technique was used to prepare about 500 surfaces in a very short time. Surfaces were analyzed according to values for gel formation, percentage weight grafted, grafted copolymer composition, and number of functional groups per lantern. These values were correlated to the purity of a peptide synthesized on these surfaces. © 2003 Wiley Periodicals, Inc.
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Published In
Journal of Applied Polymer Science
DOI
ISSN
0021-8995
Publication Date
July 1, 2003
Volume
89
Issue
12
Start / End Page
3371 / 3378
Related Subject Headings
- Polymers
- 09 Engineering
- 03 Chemical Sciences
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Ercole, F., FitzGerald, M., Perera, S., Ede, N., Riley, P., & Campbell, R. (2003). A combinatorial approach in designing hydrophilic surfaces for solid-phase peptide synthesis. Journal of Applied Polymer Science, 89(12), 3371–3378. https://doi.org/10.1002/app.12574
Ercole, F., M. FitzGerald, S. Perera, N. Ede, P. Riley, and R. Campbell. “A combinatorial approach in designing hydrophilic surfaces for solid-phase peptide synthesis.” Journal of Applied Polymer Science 89, no. 12 (July 1, 2003): 3371–78. https://doi.org/10.1002/app.12574.
Ercole F, FitzGerald M, Perera S, Ede N, Riley P, Campbell R. A combinatorial approach in designing hydrophilic surfaces for solid-phase peptide synthesis. Journal of Applied Polymer Science. 2003 Jul 1;89(12):3371–8.
Ercole, F., et al. “A combinatorial approach in designing hydrophilic surfaces for solid-phase peptide synthesis.” Journal of Applied Polymer Science, vol. 89, no. 12, July 2003, pp. 3371–78. Scopus, doi:10.1002/app.12574.
Ercole F, FitzGerald M, Perera S, Ede N, Riley P, Campbell R. A combinatorial approach in designing hydrophilic surfaces for solid-phase peptide synthesis. Journal of Applied Polymer Science. 2003 Jul 1;89(12):3371–3378.
Published In
Journal of Applied Polymer Science
DOI
ISSN
0021-8995
Publication Date
July 1, 2003
Volume
89
Issue
12
Start / End Page
3371 / 3378
Related Subject Headings
- Polymers
- 09 Engineering
- 03 Chemical Sciences