Title of article :
Oligosaccharide Synthesis by Affinity Separation Based on Molecular Recognition between Podand Ether and Ammonium Ion
Author/Authors :
Kusumoto، Shoichi نويسنده , , Takashina، Mamoru نويسنده , , Tanaka، Katsunori نويسنده , , Flikase، Koichi نويسنده , , Hori، Yumiko نويسنده , , Tanaka، Daizo نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
-2341
From page :
2342
To page :
0
Abstract :
We previously reported a new synthetic methodology termed ʹsynthesis based on affinity separationʹ (SAS) in which the desired tagged compound was separated from the reaction mixture by solid-phase extraction using specific molecular recognition of the tag. The interaction between a crown ether tag and polymersupported ammonium ion was initially employed for SAS. In the present study, a new SAS method using a podand-type tag, a pseudo-benzo-31-crown-10 structure, was elaborated for oligosaccharide synthesis. The podand tag was much easier to synthesize than the corresponding crown ether. The podand moiety was sol attached to the monosaccharide residue via appropriate linkers. XAfter glycosylation of the tagged monosaccharide with a glycosyl donor, the reaction mixture was subjected to the affinity separation. The desired compounds possessing the podand tag were effectively separated by the affinity between the podand and the ammonium ion. Continuous flow synthesis by integration of a microreactor and the present SAS system was applied for high throughput oligosaccharide synthesis.
Keywords :
oligosaccharide synthesis , affinity separation , high throughput synthesis , linker , Glycosylation
Journal title :
Synlett
Serial Year :
2005
Journal title :
Synlett
Record number :
110228
Link To Document :
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