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Published in 2018 at "Bioorganic chemistry"
DOI: 10.1016/j.bioorg.2018.08.010
Abstract: Current study is based on the sequential conversion of indolyl butanoic acid (1) into ethyl indolyl butanoate (2), indolyl butanohydrazide (3), and 1,3,4-oxadiazole-2-thiol analogs (4) by adopting chemical transformations. In a parallel series of reactions,…
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Keywords:
oxadiazole scaffolds;
hybrid oxadiazole;
scaffolds substituted;
based hybrid ... See more keywords
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Published in 2018 at "RSC Advances"
DOI: 10.1039/c8ra04987d
Abstract: In the study presented herein, 4-(1H-indol-3-yl)butanoic acid (1) was sequentially transformed in the first phase into ethyl 4-(1H-indol-3-yl)butanoate (2), 4-(1H-indol-3-yl)butanohydrazide (3) and 5-[3-(1H-indol-3-yl)propyl]-1,3,4-oxadiazole-2-thiol (4) as a nucleophile. In the second phase, various electrophiles were synthesized…
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Keywords:
oxadiazole scaffolds;
novel indole;
scaffolds substituted;
substituted phenyl ... See more keywords
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Published in 2020 at "International Journal of Molecular Sciences"
DOI: 10.3390/ijms21228692
Abstract: Nowadays, an increasing number of heterocyclic-based drugs found application in medicinal chemistry and, in particular, as anticancer agents. In this context, oxadiazoles—five-membered aromatic rings—emerged for their interesting biological properties. Modification of oxadiazole scaffolds represents a…
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Keywords:
oxadiazole scaffolds;
activity highly;
anticancer activity;
anticancer ... See more keywords
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Published in 2023 at "Pharmaceuticals"
DOI: 10.3390/ph16020254
Abstract: The world’s health system is plagued by cancer and a worldwide effort is underway to find new drugs to treat cancer. There has been a significant improvement in understanding the pathogenesis of cancer, but it…
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Keywords:
mechanism based;
oxadiazole scaffolds;
approaches oxadiazole;
understanding mechanism ... See more keywords