Total Synthesis and Biological Activity of the Proposed Structure of Phaeosphaeride A
Полный синтез и биологическая активность предложенной структуры феосфаеридина A
2012-10-10
SCID: 54.1/u3tzvs7y
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STAT3-dependent transcriptional activityintramolecular hetero-Michael cyclizationphaeosphaeride Atotal synthesisvinyllithium addition
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Abstract (AI)
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.
Key Findings
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.
Research Object
The proposed structure of natural product phaeosphaeride A (compound 1a), including both synthesized enantiomers
Research Subject
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
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2012-10-10
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