Phosphine‐Catalyzed Synthesis and Cytotoxic Evaluation of Michael Adducts of the Sesquiterpene Lactone Arglabin

Author:

Salin Alexey V.1ORCID,Shabanov Andrey A.1,Khayarov Khasan R.1,Islamov Daut R.2,Voloshina Alexandra D.3,Amerhanova Syumbelya K.3,Lyubina Anna P.3

Affiliation:

1. A.M. Butlerov Institute of Chemistry Kazan Federal University Kremlevskaya Street, 18 Kazan 420008 Russian Federation

2. Laboratory for structural analysis of biomacromolecules Kazan Scientific Center of Russian Academy of Science Kremlevskaya Street, 31 Kazan 420008 Russian Federation

3. Arbuzov Institute of Organic and Physical Chemistry FRC Kazan Scientific Center of Russian Academy of Sciences Arbuzov Street, 8 Kazan 420088 Russian Federation

Abstract

AbstractA general method for chemo‐ and diastereoselective modification of anticancer natural product arglabin with nitrogen‐ and carbon‐centered pronucleophiles under the influence of nucleophilic phosphine catalysts was developed. The locked s‐cis‐geometry of α‐methylene‐γ‐butyrolactone moiety of arglabin favors for the additional stabilization of the zwitterionic intermediate by electrostatic interaction between phosphonium and enolate oxygen centers, leading to the unprecedentedly high efficiency of the phosphine‐catalyzed Michael additions to this sesquiterpene lactone. Using n‐Bu3P as the catalyst, pyrazole, phthalimide, 2‐oxazolidinone, 4‐quinazolinone, uracil, thymine, cytosine, and adenine adducts of arglabin were obtained. The n‐Bu3P‐catalyzed reaction of arglabin with active methylene compounds resulted in the predominant formation of bisadducts bearing a new quaternary carbon center. All synthesized Michael adducts and previously obtained phosphorylated arglabin derivatives were evaluated in vitro against eleven cancer and two normal cell lines, and the results were compared to those of natural arglabin and its dimethylamino hydrochloride salt currently used as anticancer drugs. 2‐Oxazolidinone, uracil, diethyl malonate, dibenzyl phosphonate, and diethyl cyanomethylphosphonate derivatives of arglabin exhibited more potent antiproliferative activity towards several cancer cell lines and lower cytotoxicity towards normal cell lines in comparison to the reference compounds, indicating the feasibility of the developed methodology for the design of novel anticancer drugs with better therapeutic potential.

Funder

Russian Science Foundation

Publisher

Wiley

Reference81 articles.

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