Staphylococcus aureus is a major cause of nosocomial infections. Glycoconjugates of type 5 and 8 capsular polysaccharides have been investigated for vaccine application. The proposed structure of type 5 polysaccharide is: ?4-b-D-ManNAcA-(1?4)-a-L-FucNAc(3OAc)-(1?3)-b-D-FucNAc-(1?. The stereocontrolled insertion of these three glycosydic bonds is a real synthetic challenge. In the present paper we report the preparation of two novel versatile L- and D-fucosamine synthons from commercially available starting materials. In addition we applied the two building blocks to the synthesis of type 5 trisaccharide repeating unit. The immunochemical properties of the synthesized trisaccharidewere assessed by competitive ELISA and by immunodot blot analysis using sera of mice immunized with type 5 polysaccharide conjugated to CRM197. The results suggest that although the type 5 S. aureus trisaccharide is recognized by specific anti polysaccharide antibodies in dot blot, structures longer than the trisaccharide may be needed in order to significantly compete with the native type 5 polymer in the binding with sera from mice immunized with S. aureus type 5 polysaccharide–CRM197 conjugate.

Synthesis of Staphylococcus aureus type 5 capsular polysaccharide repeating unit using novel L-FucNAc and D-FucNAc synthons and immunochemical evaluation / E. Danieli, D. Proietti, G. Brogioni, M.R. Romano, E. Cappelletti, M. Tontini, F. Berti, L. Lay, P. Costantino, R. Adamo. - In: BIOORGANIC & MEDICINAL CHEMISTRY. - ISSN 0968-0896. - 20:21(2012 Aug 31), pp. 6403-6415. [10.1016/j.bmc.2012.08.048]

Synthesis of Staphylococcus aureus type 5 capsular polysaccharide repeating unit using novel L-FucNAc and D-FucNAc synthons and immunochemical evaluation

L. Lay;
2012

Abstract

Staphylococcus aureus is a major cause of nosocomial infections. Glycoconjugates of type 5 and 8 capsular polysaccharides have been investigated for vaccine application. The proposed structure of type 5 polysaccharide is: ?4-b-D-ManNAcA-(1?4)-a-L-FucNAc(3OAc)-(1?3)-b-D-FucNAc-(1?. The stereocontrolled insertion of these three glycosydic bonds is a real synthetic challenge. In the present paper we report the preparation of two novel versatile L- and D-fucosamine synthons from commercially available starting materials. In addition we applied the two building blocks to the synthesis of type 5 trisaccharide repeating unit. The immunochemical properties of the synthesized trisaccharidewere assessed by competitive ELISA and by immunodot blot analysis using sera of mice immunized with type 5 polysaccharide conjugated to CRM197. The results suggest that although the type 5 S. aureus trisaccharide is recognized by specific anti polysaccharide antibodies in dot blot, structures longer than the trisaccharide may be needed in order to significantly compete with the native type 5 polymer in the binding with sera from mice immunized with S. aureus type 5 polysaccharide–CRM197 conjugate.
Antigenicity; d,l-Fucosamine; N-Acetyl mannuronic acid; Staphylococcus aureus; Total synthesis
Settore CHIM/06 - Chimica Organica
31-ago-2012
http://dx.doi.org/10.1016/j.bmc.2012.08.048
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/213307
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