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Synthesis and migrastatic activity of cytochalasin analogues lacking a macrocyclic moiety

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Author
Formánek, BedřichORCiD Profile - 0000-0002-5098-2108WoS Profile - R-7230-2017Scopus Profile - 57191900452
Dupommier, Dorian
Volfová, Tereza
Rimpelová, Silvie
Škarková, AnetaORCiD Profile - 0000-0002-9255-8268WoS Profile - ABG-3228-2020Scopus Profile - 56613509000
Herciková, Jana
Rösel, DanielORCiD Profile - 0000-0001-7221-8672WoS Profile - J-7507-2017Scopus Profile - 6505670485
Brábek, JanORCiD Profile - 0000-0001-7754-7299WoS Profile - J-9836-2017Scopus Profile - 6505767640
Perlíková, PavlaORCiD Profile - 0000-0002-8500-0493WoS Profile - J-3654-2013Scopus Profile - 36651430800

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Publication date
2024
Published in
RSC Medicinal Chemistry
Volume / Issue
15 (1)
ISBN / ISSN
ISSN: 2632-8682
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This publication has a published version with DOI 10.1039/d3md00535f

Abstract
Cytochalasans are known as inhibitors of actin polymerization and for their cytotoxic and migrastatic activity. In this study, we synthesized a series of cytochalasin derivatives that lack a macrocyclic moiety, a structural element traditionally considered essential for their biological activity. We focused on substituting the macrocycle with simple aryl-containing sidechains, and we have also synthesized compounds with different substitution patterns on the cytochalasin core. The cytochalasin analogues were screened for their migrastatic and cytotoxic activity. Compound 24 which shares the substitution pattern with natural cytochalasins B and D exhibited not only significant in vitro migrastatic activity towards BLM cells but also demonstrated inhibition of actin polymerization, with no cytotoxic effect observed at 50 mu M concentration. Our results demonstrate that even compounds lacking the macrocyclic moiety can exhibit biological activities, albeit less pronounced than those of natural cytochalasins. However, our findings emphasize the pivotal role of substituting the core structure in switching between migrastatic activity and cytotoxicity. These findings hold significant promise for further development of easily accessible cytochalasan analogues as novel migrastatic agents. Macrocyclic moiety is not essential for the biological activity of cytochalasan analogues.
Keywords
actin polymerization, cellular structures, alkyl-halides, synthesis, migrastatic activity, cytochalasin analogues, macrocyclic moiety
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https://hdl.handle.net/20.500.14178/2249
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WOS:001127188400001
SCOPUS:2-s2.0-85180612986
PUBMED:38283219
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Full text of this result is licensed under: Creative Commons Uveďte původ 3.0 Unported

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