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Efficient synthetic methodology for the construction of dihydronaphthalene and benzosuberene molecular frameworks.

Authors :
Mondal, Deboprosad
Niu, Haichan
Pinney, Kevin G.
Source :
Tetrahedron Letters: International Organ for the Rapid Publication of Preliminary Communications in Organic Chemistry. Jan2019, Vol. 60 Issue 5, p397-401. 5p.
Publication Year :
2019

Abstract

Graphical abstract Highlights • Efficient synthetic methodology for benzosuberene and dihydronaphthalene analogues. • Methodology accommodated larger scale reactions. • Palladium catalyzed amination converted phenolic analogues to aniline congeners. Abstract Benzosuberene analogues (1 and 2) and dihydronaphthalene analogues (3 and 4) function as potent inhibitors of tubulin polymerization, demonstrate pronounced cytotoxicity (low nM to pM range) against human cancer cell lines, and are promising vascular disrupting agents (VDAs). As such, these compounds represent lead anticancer agents with potential translatability towards the clinic. Methodology previously established by us (and others) facilitated synthetic access to a variety of structural and functional group modifications necessary to explore structure activity relationship considerations directed towards the development of these (and related) molecules as potential therapeutic agents. During the course of these studies it became apparent that the availability of synthetic methodology to facilitate direct conversion of the phenolic-based compounds to their corresponding aniline congeners would be beneficial. Accordingly, modified synthetic routes toward these target phenols (benzosuberene 1 and dihydronaphthalene 3) were developed in order to improve scalability and overall yield [45-57% (1) and 32% (3)]. Moreover, benzosuberene-based phenolic analogue 1 and separately dihydronaphthalene-based phenolic analogue 3 were successfully converted into their corresponding aniline analogues 2 and 4 in good yield (>60% over three steps) using a palladium catalyzed amination reaction. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00404039
Volume :
60
Issue :
5
Database :
Academic Search Index
Journal :
Tetrahedron Letters: International Organ for the Rapid Publication of Preliminary Communications in Organic Chemistry
Publication Type :
Academic Journal
Accession number :
134148292
Full Text :
https://doi.org/10.1016/j.tetlet.2018.12.033