New experimental conditions for diels-alder and friedel-crafts alquilation reactions with thiophene: a new selenocyanate with potent activity against cancer

The reactivity of thiophene in Diels-Alder reactions is investigated with different maleimide derivatives. In this paper, we have synthesized for the first time the Diels-Alder adducts of thiophene at room temperature and atmospheric pressure. Maleimido-thiophene adducts were promoted by AlCl3. The...

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Authors: Calvo-Martín, G. (Gorka)|||/items/ce1694b7-9f6c-47be-a1a5-aa0ff6254853, Plano-Amatriain, D. (Daniel)|||/items/238881e4-7d5e-4598-924d-4392e3b7e02e, Sanmartin-Grijalba, C. (Carmen)|||/items/d36bd105-ab64-427d-9745-5812cf5e7af7
Format: article
Publication Date:2022
Country:España
Institution:Universidad de Navarra
Repository:Dadun. Depósito Académico Digital de la Universidad de Navarra
Language:English
OAI Identifier:oai:dadun.unav.edu:10171/123606
Online Access:https://hdl.handle.net/10171/123606
Access Level:Open access
Keyword:Diels–Alder
Friedel–Crafts alquilation
Cancer
Cycloadition
Selenium
Selenophene
Thiophene
Description
Summary:The reactivity of thiophene in Diels-Alder reactions is investigated with different maleimide derivatives. In this paper, we have synthesized for the first time the Diels-Alder adducts of thiophene at room temperature and atmospheric pressure. Maleimido-thiophene adducts were promoted by AlCl3. The effects of solvent, time, temperature and the use of different Lewis acids were studied, showing dramatic effects for solvent and Lewis acid. Furthermore, the catalysis with AlCl3 is highly stereoselective, preferably providing the exo form of the adduct. Additionally, we also discovered the ability of AlCl3 to catalyze the arylation of maleimides to yield 3-aryl succinimides in a straightforward manner following a Friedel-Crafts-type addition. The inclusion of a selenocyanate group contributes to the cytotoxic activity of the adduct. This derivatization (from compound 7 to compound 15) results in an average GI50 value of 1.98 µM in the DTP (NCI-60) cell panel, resulting in being especially active in renal cancer cells.