| Literature DB >> 25161704 |
Thisbe K Lindhorst1, Katharina Elsner1.
Abstract
Glycodendrons are multivalent glycoconjugates bearing an orthogonal functional group at the focal point of the molecule. This allows for their postsynthetic elaboration to achieve amphiphilic glycolipid mimetics, for example, which eventually can be applied in biology, biophysics, or material science. Here, postsynthetic modification of di- and tetravalent polyether glycodendrons has been explored using etherification, thiol-ene reaction and in particular olefin cross metathesis.Entities:
Keywords: amphiphilic glycomimetics; cross metathesis; glycodendrons; multivalent glycoconjugates; multivalent glycosystems
Year: 2014 PMID: 25161704 PMCID: PMC4142895 DOI: 10.3762/bjoc.10.152
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1a) Dendrons (right) are branched fragments of dendrimers (left), featuring a functional group (FG) at their focal point which can be orthogonal to all other functionalities of the molecule; b) di- and tetravalent polyether glycodendrons equipped with protected α-D-mannosyl residues were employed to test postsynthetic modification at the focal point; FG: double bond, OH.
Scheme 1Synthesis of the starting material for postsynthetic focal point functionalization; published yields [7] were partly improved. Glycodendron 9 was obtained for the first time (cf. Experimental part).
Scheme 2Initial syntheses of amphiphilic glycodendrons.
Scheme 3Postsynthetic focal modification of glycodendrons (I) using using olefin cross metathesis.
Scheme 4Postsynthetic focal modification of glycodendrons (II) using olefin cross metathesis.