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Playing with Structural Parameters: Synthesis and Characterization of Two New Maltol-Based Ligands with Binding and Antineoplastic Properties.


ABSTRACT: Two maltol-based ligands, N,N'-bis((3-hydroxy-4-pyron-2-yl)methyl)-1,4-piperazine (L1) and N,N',N'-tris((3-hydroxy-4-pyron-2-yl)methyl)-N-methylethylendiamine (L2), were synthesized and characterized. L1 and L2, containing, respectively, two and three maltol units spaced by a diamine fragment, were designed to evaluate how biological and binding features are affected by structural modifications of the parent compound malten. The acid-base behavior and the binding properties towards transition, alkaline-earth (AE) and rare-earth (RE) cations in aqueous solution, studied by potentiometric, UV-Vis and NMR analysis, are reported along with biological studies on DNA and leukemia cells. Both ligands form stable complexes with Cu(II), Zn(II) and Co(II) that were studied as metallo-receptors for AE and RE at neutral pH. L1 complexes are more affected than L2 ones by hard cations, the L1-Cu(II) system being deeply affected by RE. The structural modifications altered the mechanism of action: L1 partially maintains the ability to induce structural alterations of DNA, while L2 provokes single strand (nicks) and to a lesser extent double strand breaks of DNA.

SUBMITTER: Macedi E 

PROVIDER: S-EPMC7070877 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Playing with Structural Parameters: Synthesis and Characterization of Two New Maltol-Based Ligands with Binding and Antineoplastic Properties.

Macedi Eleonora E   Paderni Daniele D   Formica Mauro M   Conti Luca L   Fanelli Mirco M   Giorgi Luca L   Amatori Stefano S   Ambrosi Gianluca G   Valtancoli Barbara B   Fusi Vieri V  

Molecules (Basel, Switzerland) 20200220 4


Two maltol-based ligands, <i>N</i>,<i>N</i>'-bis((3-hydroxy-4-pyron-2-yl)methyl)-1,4-piperazine (<b>L1</b>) and <i>N</i>,<i>N</i>',<i>N</i>'-tris((3-hydroxy-4-pyron-2-yl)methyl)-<i>N</i>-methylethylendiamine (<b>L2</b>), were synthesized and characterized. <b>L1</b> and <b>L2</b>, containing, respectively, two and three maltol units spaced by a diamine fragment, were designed to evaluate how biological and binding features are affected by structural modifications of the parent compound malten. T  ...[more]

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