Investigation of the inherent characteristics of copper() Schiff base complexes as antimicrobial agents
We synthesised a sequence of structurally related copper( ii ) complexes of Schiff base ligands, 2-[(2-benzylamino-ethylimino)-methyl]-phenol [ L1 (H)], 2-[(2-benzylamino-ethylimino)-methyl]-4-methyl-phenol [ L2 (H)], and 2-[(2-benzylamino-ethylimino)-methyl]-4-bromo-phenol [ L3 (H)]. The complexes...
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Veröffentlicht in: | New journal of chemistry 2024-07, Vol.48 (29), p.12877-12892 |
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Zusammenfassung: | We synthesised a sequence of structurally related copper(
ii
) complexes of Schiff base ligands, 2-[(2-benzylamino-ethylimino)-methyl]-phenol [
L1
(H)], 2-[(2-benzylamino-ethylimino)-methyl]-4-methyl-phenol [
L2
(H)], and 2-[(2-benzylamino-ethylimino)-methyl]-4-bromo-phenol [
L3
(H)]. The complexes were characterized by ATR, UV-vis, EPR, ESI-MS, single crystal XRD, and elemental analyses. Based on the crystal structure, the ligand was coordinated to the copper(
ii
) centre in a tridentate mode through phenolate(oxygen), imine nitrogen and amine nitrogen in an NNO fashion and the azide moiety served as an auxiliary ligand. Furthermore, we have investigated the antimicrobial activities of copper(
ii
) complexes against clinically relevant fungal strains, including
Candida albicans
,
Candida glabrata
, and
Candida tropicalis
, as well as bacteria such as
Pseudomonas aeruginosa
and methicillin-resistant
Staphylococcus aureus
(MRSA), representing Gram-negative and Gram-positive pathogenic strains. Comparing the activity of complex
2
(128-512 μg mL
−1
) to complex
3
(64-128 μg mL
−1
), the latter demonstrated more potent effectiveness against all of the tested fungal strains. The activity of the complexes against MRSA reveals the inhibitory concentrations of 1024 μg mL
−1
for
1
, 128 μg mL
−1
for
2
, and 256 μg mL
−1
for
3
. It is worth mentioning that, at their minimum inhibitory concentrations (MICs), the complexes are not toxic to
Galleria mellonella.
Furthermore, the spot and broth microdilution assay results were in good agreement with the actual metabolic viability of bacterial and fungal strains, in which the complexes were active while having no effect on the metabolite resazurin. Additionally,
in silico
studies have been employed to elucidate both non-bonding interactions and the mode of action across protein sequences of experimentally studied microbes. The performance of complexes closely mirrored the reactivity order determined in
in vitro
studies. The impeding properties of complexes can be due to the dysfunctioning of virulent genes and signalling proteins and also affect the activities of transferase and transcriptase proteins. Overall, the complexes are promising candidates for antimicrobial drug development. We anticipate utilising these molecules for clinical purposes.
The copper(
ii
) Schiff base complexes (
1
-
3
) are promising candidates for antifungal/antibacterial activity. |
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ISSN: | 1144-0546 1369-9261 |
DOI: | 10.1039/d4nj01271b |