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Synthesis and Anticancer Activity of the (R,S)-Benzofused 1,5-Oxathiepine Moiety Tethered to Purines through Alkylidenoxy Linkers

✍ Scribed by Dr. María Kimatrai; Prof. Ana Conejo-García; Alberto Ramírez; Elena Andreolli; Dr. Adriane Da Silveira-Gomes; Dr. María Angel García; Prof. Antonia Aránega; Prof. Juan A. Marchal; Prof. Joaquín M. Campos


Book ID
102102182
Publisher
John Wiley and Sons
Year
2011
Tongue
English
Weight
370 KB
Volume
6
Category
Article
ISSN
1860-7179

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✦ Synopsis


Abstract

Herein we report the design, synthesis, and anticancer activity of a series of substituted (R,S)‐9‐[2‐ or 3‐(3,4‐dihydro‐2__H__‐1,5‐benzoxathiepine‐3‐yloxy)alkyl]‐9__H__‐purines. Derivatives with propylenoxy‐linked 2′,6′‐dichloro‐ and 6′‐bromopurines are more active than their respective ethylenoxy‐linked purine conjugates. On the other hand, the compound with a propylenoxy‐linked 6′‐chloropurine is nearly equipotent to the corresponding ethylenoxy‐linked conjugate. Our results show that bromo‐ and chloropurine‐conjugated benzoxathiepines containing a propylenoxy linker are able to inhibit PI3 kinase (PI3K) phosphorylation in MCF‐7 breast cancer cells, indicating that the activation of eIF2α, together with inhibition of the PI3K pathway, is the mechanism of action by which these compounds effect their antitumor activity in the MCF‐7 cell line; apoptosis was induced in a p53‐independent manner.