Fabrication of Carbohydrate Microarrays through Boronate Formation

碩士 === 國立清華大學 === 化學系 === 98 === Carbohydrate microarrays, which screen many carbohydrates simultaneously with a minimal consumption of reagents, provide a viable solution for glycobiology research as a reliable and efficient tool for rapid analysis of carbohydrate-biomolecule interactions. We have...

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Main Authors: Hsiao, Hsuan-Yi, 蕭瑄怡
Other Authors: Lin, Chun-Cheng
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/71245904209595406641
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spelling ndltd-TW-098NTHU50650252015-10-13T18:20:42Z http://ndltd.ncl.edu.tw/handle/71245904209595406641 Fabrication of Carbohydrate Microarrays through Boronate Formation 硼酸修飾表面製備醣微陣列晶片的發展及應用 Hsiao, Hsuan-Yi 蕭瑄怡 碩士 國立清華大學 化學系 98 Carbohydrate microarrays, which screen many carbohydrates simultaneously with a minimal consumption of reagents, provide a viable solution for glycobiology research as a reliable and efficient tool for rapid analysis of carbohydrate-biomolecule interactions. We have developed a novel and easy method for fabricating a stable, covalent, and highly active carbohydrate microarray based on boronate formation between the hydroxyl groups of carbohydrate and boronic acid (BA) on the glass surface. Although the formation of boronate is a reversible reaction in aqueous solution, the BA-based carbohydrate microarray resist the stringent wash because of multivalent binding between carbohydrate hydroxyl groups and BAs on the surface. Except monosaccharides, this method is suitable for immobilizing all sizes of carbohydrates with biological binding activity toward the corresponding lectins. In addition, there is no need to perform sugar modification before immobilization. The BA-based carbohydrate microarrays were used to identify carbohydrate-protein interactions and to measure the dissociation constant of corresponding carbohydrate-binding protein. Lin, Chun-Cheng 林俊成 2010 學位論文 ; thesis 97 zh-TW
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description 碩士 === 國立清華大學 === 化學系 === 98 === Carbohydrate microarrays, which screen many carbohydrates simultaneously with a minimal consumption of reagents, provide a viable solution for glycobiology research as a reliable and efficient tool for rapid analysis of carbohydrate-biomolecule interactions. We have developed a novel and easy method for fabricating a stable, covalent, and highly active carbohydrate microarray based on boronate formation between the hydroxyl groups of carbohydrate and boronic acid (BA) on the glass surface. Although the formation of boronate is a reversible reaction in aqueous solution, the BA-based carbohydrate microarray resist the stringent wash because of multivalent binding between carbohydrate hydroxyl groups and BAs on the surface. Except monosaccharides, this method is suitable for immobilizing all sizes of carbohydrates with biological binding activity toward the corresponding lectins. In addition, there is no need to perform sugar modification before immobilization. The BA-based carbohydrate microarrays were used to identify carbohydrate-protein interactions and to measure the dissociation constant of corresponding carbohydrate-binding protein.
author2 Lin, Chun-Cheng
author_facet Lin, Chun-Cheng
Hsiao, Hsuan-Yi
蕭瑄怡
author Hsiao, Hsuan-Yi
蕭瑄怡
spellingShingle Hsiao, Hsuan-Yi
蕭瑄怡
Fabrication of Carbohydrate Microarrays through Boronate Formation
author_sort Hsiao, Hsuan-Yi
title Fabrication of Carbohydrate Microarrays through Boronate Formation
title_short Fabrication of Carbohydrate Microarrays through Boronate Formation
title_full Fabrication of Carbohydrate Microarrays through Boronate Formation
title_fullStr Fabrication of Carbohydrate Microarrays through Boronate Formation
title_full_unstemmed Fabrication of Carbohydrate Microarrays through Boronate Formation
title_sort fabrication of carbohydrate microarrays through boronate formation
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/71245904209595406641
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