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A cascade synthetic route to new bioactive spiroindolinepyrido [1,2-a]indolediones from indirubin
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Document Title
A cascade synthetic route to new bioactive spiroindolinepyrido [1,2-a]indolediones from indirubin
Author
Sele AM, Bremner JB, Willis AC, Haritakun R, Griffith R, Keller PA
Name from Authors Collection
Affiliations
University of Wollongong; Australian National University; National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC); University of New South Wales Sydney
Type
Article
Source Title
TETRAHEDRON
ISSN
0040-4020
Year
2015
Volume
71
Issue
43
Page
8357-8367
Open Access
Green Submitted
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
DOI
10.1016/j.tet.2015.08.012
Format
Abstract
The allylation of indirubin produced the expected indolic N'-allylindirubin and N,N'-diallylindirubin derivatives in moderate yields, together with the corresponding N-substituted isatin products. At higher temperatures, the base-initiated reaction with allylic halides yielded spiroindolinepyrido[1,2-a]indolediones in a one-pot cascade reaction sequence with yields of up to 70%. These readily accessed, new Spiro compounds represent the first reported examples of indirubin participating in cascade reactions. Preliminary in vitro biological testing of some of the products indicated promising activity against some cancer cell lines and against Plasmodium falciparum for two spiro derivatives. Computational methods were used to gain a greater understanding of the UV/Vis spectroscopic data for the N'-substituted and N,N'-disubstituted indirubin derivatives. (C) 2015 Elsevier Ltd. All rights reserved.
Funding Sponsor
University of Wollongong, through the Centre for Medicinal Chemistry; University of Wollongong scholarship
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WOS