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Structure‐activity relations of Pd(II) and Pt(II) thiosemicarbazone complexes on different human glioblastoma cell lines
Author(s) -
Schulz Ellina,
Mawamba Viviane,
Löhr Mario,
Hagemann Carsten,
Friedrich Alexandra,
Schatzschneider Ulrich
Publication year - 2022
Publication title -
zeitschrift für anorganische und allgemeine chemie
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.354
H-Index - 66
eISSN - 1521-3749
pISSN - 0044-2313
DOI - 10.1002/zaac.202200073
Subject(s) - semicarbazone , chemistry , stereochemistry , quinoline , pyridine , medicinal chemistry , alkyl , lipophilicity , yield (engineering) , organic chemistry , materials science , metallurgy
Ten thiosemicarbazone ligands obtained by condensation of pyridine‐2‐carbaldehyde, quinoline‐2‐carbaldehyde, 2‐acetylpyridine, 2‐acetylquinoline, or corresponding 2‐pyridyl ketones with thiosemicarbazides RNHC(S)NHNH 2 and R=CH 3 , C 6 H 5 were prepared in good yield. The reaction of [PdCl 2 (cod)] with cod=1,5‐cyclooctadiene or K 2 [PtCl 4 ] resulted in a total of 17 Pd(II) and Pt(II) complexes isolated in excellent purity, as demonstrated by 1 H, 13 C, and, where applicable, 195 Pt NMR spectroscopy combined with CHNS analysis. The cytotoxicity of the title compounds was studied on four human glioblastoma cell lines (GaMG, U87, U138, and U343). The most active compound, with a Pd(II) metal centre, a 2‐quinolinyl ring, and methyl groups on both the proximal C and distal N atoms exhibited an EC 50 value of 2.1 μM on the GaMG cell lines, thus being slightly more active than cisplatin (EC 50 3.4 μM) and significantly more potent than temozolomide (EC 50 67.1 μM). Surprisingly, the EC 50 values were inversely correlated with the lipophilicity, as determined with the “shake‐flask method”, and decreased with the length of the alkyl substituents (C 1 >C 8 >C 10 ). Correlation with the different structural motifs showed that for the most promising anticancer activity, a maximum of two aromatic rings (either quinolinyl or pyridyl plus phenyl) combined with one methyl group are favoured and the Pd(II) complexes are slightly more potent than their Pt(II) analogues.

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