Total Synthesis and Biological Activity of the Proposed Structure of Phaeosphaeride A

Полный синтез и биологическая активность предложенной структуры феосфаеридина A
Stefan Kaskel, Anthoula Chatzimpaloglou, Maria P. Yavropoulou, Karien E. de Rooij, R. Biedermann, U. Müeller, Vasiliki Sarli
2012-10-10

STAT3-dependent transcriptional activityintramolecular hetero-Michael cyclizationphaeosphaeride Atotal synthesisvinyllithium addition
The total synthesis of the structure assigned to the natural product phaeosphaeride A 1a was accomplished. The key steps involve the addition of vinyllithium reagent 7 to the acetonide-protected aldehyde 8 to access the carbon backbone of 1a, the introduction of the methoxylamino group followed by intramolecular hetero-Michael cyclization, and methanol elimination to form the dihydropyran ring. In this study, both enantiomers of 1a were synthesized and tested for biological activity. Preliminary results showed that (6R,7R,8R)-1a and (6S,7S,8S)-1a inhibit STAT3-dependent transcriptional activity in a dose-dependent manner and exhibit antiproliferative properties in breast (MDA-MB-231) and pancreatic (PANC-1) cancer cells.
1
(6R,7R,8R)-1a and (6S,7S,8S)-1a inhibit STAT3-dependent transcriptional activity in a dose-dependent manner.
2
Both enantiomers exhibit antiproliferative activity against breast (MDA-MB-231) and pancreatic (PANC-1) cancer cell lines.
3
Both enantiomers of the proposed structure of 1a ((6R,7R,8R)-1a and (6S,7S,8S)-1a) were synthesized.
4
Key synthetic steps include vinyllithium addition to acetonide-protected aldehyde, methoxylamino introduction, intramolecular hetero-Michael cyclization, and methanol elimination to form the dihydropyran ring.
5
Total synthesis of the structure assigned to natural product phaeosphaeride A (1a) was achieved.

The proposed structure of natural product phaeosphaeride A (compound 1a), including both synthesized enantiomers

Total synthesis of the proposed structure (1a) and evaluation of its biological activity: STAT3-dependent transcriptional inhibition and antiproliferative effects in MDA-MB-231 and PANC-1 cancer cells

Publication Details
Publication Date
2012-10-10
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Stefan Kaskel
Anthoula Chatzimpaloglou
Maria P. Yavropoulou
Karien E. de Rooij
R. Biedermann
U. Müeller
Vasiliki Sarli
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%