Premium
Total Synthesis and Biological Evaluation of the Cytotoxic Resin Glycosides Ipomoeassin A–F and Analogues
Author(s) -
Nagano Takashi,
Pospíšil Jiři,
Chollet Guillaume,
Schulthoff Saskia,
Hickmann Volker,
Moulin Emilie,
Herrmann Jennifer,
Müller Rolf,
Fürstner Alois
Publication year - 2009
Publication title -
chemistry – a european journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.687
H-Index - 242
eISSN - 1521-3765
pISSN - 0947-6539
DOI - 10.1002/chem.200901449
Subject(s) - silylation , chemistry , total synthesis , hydrogenolysis , substituent , stereochemistry , acylation , catalysis , organic chemistry , combinatorial chemistry
A multitasking C ‐silylation strategy using the readily available compound 26 as a surrogate for cinnamic acid represents the key design element of a total synthesis of all known members of the ipomoeassin family of resin glyosides. This protecting group maneuver allows the unsaturated acids decorating the glucose subunit of the targets to be attached at an early phase of the synthesis, prevents their participation in the ruthenium‐catalyzed ring‐closing metathesis (RCM) used to form the macrocyclic ring, and protects them against reduction during the hydrogenation of the resulting cycloalkene over Wilkinson’s catalyst. As the C ‐silyl group can be concomitantly removed with the O‐ TBS substituent using tris(dimethylamino)sulfonium difluorotrimethylsilicate (TASF) in acetonitrile, no separate protecting group manipulations were necessary in the final stages, thus contributing to a favorable overall “economy of steps”. In addition to the naturally occurring ipomoeassins, a small set of synthetic analogues has also been prepared by “diverted total synthesis”. The cytotoxicity of these compounds was assayed with two different cancer cell lines. The recorded data confirm previous findings that the acylation‐ and oxygenation pattern of these amphiphilic glycoconjugates is highly correlated with their biological activity profile. Ipomoeassin F turned out to be the most promising member of the series, showing IC 50 values in the low nanomolar range.