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Rapid solid-phase peptide synthesis using thermal and controlled microwave irradiation
A rapid and efficient microwave‐assisted solid‐phase synthesis method is described for the preparation of the nonapeptide WDTVRISFK, using conventional Fmoc/But orthogonal protection strategy. The synthesis protocol is based on the use of cycles of pulsed microwave irradiation with intermittent cool...
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Published in: | Journal of peptide science 2006-10, Vol.12 (10), p.633-638 |
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container_title | Journal of peptide science |
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creator | Bacsa, Bernadett Desai, Bimbisar Dibó, GáBor Kappe, C. Oliver |
description | A rapid and efficient microwave‐assisted solid‐phase synthesis method is described for the preparation of the nonapeptide WDTVRISFK, using conventional Fmoc/But orthogonal protection strategy. The synthesis protocol is based on the use of cycles of pulsed microwave irradiation with intermittent cooling of the reaction during the removal of the Fmoc protecting group and during the coupling. The desired nonapeptide was obtained in highest yield and purity by employing MicroKan technology. The chemical reactions were carried out in a single‐mode microwave reactor, equipped with a fiber‐optic probe to monitor the reaction temperature continuously. Copyright © 2006 European Peptide Society and John Wiley & Sons, Ltd. |
doi_str_mv | 10.1002/psc.771 |
format | article |
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Oliver</creator><creatorcontrib>Bacsa, Bernadett ; Desai, Bimbisar ; Dibó, GáBor ; Kappe, C. Oliver</creatorcontrib><description>A rapid and efficient microwave‐assisted solid‐phase synthesis method is described for the preparation of the nonapeptide WDTVRISFK, using conventional Fmoc/But orthogonal protection strategy. The synthesis protocol is based on the use of cycles of pulsed microwave irradiation with intermittent cooling of the reaction during the removal of the Fmoc protecting group and during the coupling. The desired nonapeptide was obtained in highest yield and purity by employing MicroKan technology. The chemical reactions were carried out in a single‐mode microwave reactor, equipped with a fiber‐optic probe to monitor the reaction temperature continuously. 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Copyright © 2006 European Peptide Society and John Wiley & Sons, Ltd.</description><subject>Biochemistry - methods</subject><subject>MicroKan</subject><subject>microwave irradiation</subject><subject>microwave-assisted organic synthesis</subject><subject>microwave-assisted peptide synthesis</subject><subject>Microwaves</subject><subject>Peptides - chemical synthesis</subject><subject>Peptides - chemistry</subject><subject>solid-phase peptide synthesis</subject><issn>1075-2617</issn><issn>1099-1387</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2006</creationdate><recordtype>article</recordtype><recordid>eNqF0MtOGzEUBmALtYJwUd-g8qos0MDxeHxbVhGEIpoiWpKl5Yw94HZu2BNo3h6jiegKdeVjnU-_dH6EPhE4JQD5WR_LUyHIDpoQUCojVIoPr7NgWc6J2EP7Mf4GSDvGd9Ee4UIqKNgELW5N7y2OXe1t1j-Y6HDv-sFbh-OmHR5c9BGvo2_vcfqExtTYtBaXXTuErq6dxY0vQ_dsnhz2IRjrzeC79hB9rEwd3dH2PUB3F-e_ppfZ9Y_Zt-nX66wsGJCMKco5l4aziuXUVDZnsii5E5BzCVxJS6pcQVpIKXmpTLUSQIEXQkFerYAeoC9jbh-6x7WLg258LF1dm9Z166h5OpMWhfgvzAlhIAVP8HiE6aoYg6t0H3xjwkYT0K9d69S1Tl0n-XkbuV41zv5z23ITOBnBs6_d5r0cffNzOsZlo_ZxcH_ftAl_NBdUML2cz_R3taDz5dVM39AXuKWWvQ</recordid><startdate>200610</startdate><enddate>200610</enddate><creator>Bacsa, Bernadett</creator><creator>Desai, Bimbisar</creator><creator>Dibó, GáBor</creator><creator>Kappe, C. 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source | Wiley-Blackwell Read & Publish Collection |
subjects | Biochemistry - methods MicroKan microwave irradiation microwave-assisted organic synthesis microwave-assisted peptide synthesis Microwaves Peptides - chemical synthesis Peptides - chemistry solid-phase peptide synthesis |
title | Rapid solid-phase peptide synthesis using thermal and controlled microwave irradiation |
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