Synthesis and Pharmacological Effects of Diosgenin-Betulinic Acid Conjugates

The target diosgenin-betulinic acid conjugates are reported to investigate their ability to enhance and modify the pharmacological effects of their components. The detailed synthetic procedure that includes copper(I)-catalyzed Huisgen 1,3-dipolar cycloaddition (click reaction), and palladium-catalyz...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2020-08, Vol.25 (15), p.3546
Hauptverfasser: Özdemir, Zülal, Rybková, Michaela, Vlk, Martin, Šaman, David, Rárová, Lucie, Wimmer, Zdeněk
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Sprache:eng
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Zusammenfassung:The target diosgenin-betulinic acid conjugates are reported to investigate their ability to enhance and modify the pharmacological effects of their components. The detailed synthetic procedure that includes copper(I)-catalyzed Huisgen 1,3-dipolar cycloaddition (click reaction), and palladium-catalyzed debenzylation by hydrogenolysis is described together with the results of cytotoxicity screening tests. Palladium-catalyzed debenzylation reaction of benzyl ester intermediates was the key step in this synthetic procedure due to the simultaneous presence of a 1,4-disubstituted 1,2,3-triazole ring in the molecule that was a competing coordination site for the palladium catalyst. High pressure (130 kPa) palladium-catalyzed procedure represented a successful synthetic step yielding the required products. The conjugate showed selective cytotoxicity in human T-lymphoblastic leukemia (CEM) cancer cells (IC = 6.5 ± 1.1 µM), in contrast to the conjugate showing no cytotoxicity, and diosgenin ( ), an adaptogen, for which a potential to be active on central nervous system was calculated in silico. In addition, showed medium multifarious cytotoxicity in human T-lymphoblastic leukemia (CEM), human cervical cancer (HeLa), and human colon cancer (HCT 116). Betulinic acid ( ) and the intermediates and showed no cytotoxicity in the tested cancer cell lines. The experimental data obtained are supplemented by and compared with the in silico calculated physico-chemical and absorption, distribution, metabolism, and excretion (ADME) parameters of these compounds.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules25153546