Synthesis and Characterization of Metal Complexes as Potential Therapeutic Agents for Tuberculosis
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Abstract
The rapid emergence of antimicrobial resistance necessitates the development of alternative
therapeutic strategies, including metal‑based coordination compounds. This study reports the
synthesis, characterization, computational evaluation, and biological assessment of six metal
complexes derived from salicylic acid, succinic acid, and mixed salicylate–succinate ligands
coordinated to iron(II) and silver(I). The complexes were characterized using
Fourier‑transform infrared spectroscopy (FTIR), ultraviolet–visible (UV–Vis) spectroscopy,
thermogravimetric analysis (TGA), powder X‑ray diffraction (PXRD), and X‑ray fluorescence
analyses. Density functional theory (DFT) and time‑dependent DFT (TD‑DFT) calculations
were performed to optimize geometries, support vibrational stability, and elucidate electronic
transitions. Spectroscopic results supported coordination through oxygen donor atoms of the
carboxylate and phenolic groups, while computational findings supported octahedral
configurations for Fe(II) complexes and ligand‑dominated electronic structures for Ag(I)
complexes consistent with their d¹⁰ configuration. Biological evaluation revealed a clear
metal‑dependent structure–activity relationship: silver(I) complexes exhibited broad‑spectrum
antimicrobial activity against Staphylococcus aureus, Pseudomonas aeruginosa, and Candida
albicans, with the mixed‑ligand Ag(I) complex showing the highest potency, whereas iron(II)
complexes displayed limited activity. Antitubercular screening using the Microplate Alamar
Blue Assay (MABA) against Mycobacterium tuberculosis H37Rv showed potent inhibition by
all Ag(I) complexes (MIC ≤ 0.125 mg/mL), while Fe(II) complexes were inactive.
Coordination significantly enhanced the activity of salicylic acid relative to the free ligand,
highlighting the importance of chelation in modulating biological efficacy. This study
demonstrates that metal identity governs antimicrobial and antitubercular activity within the
investigated ligand framework and identifies silver(I) coordination complexes as promising
candidates for further development.
Description
M. Sc. in Chemistry
Department of Chemistry
Department of Chemistry
Citation
Sithole, P. 2026. Synthesis and Characterization of Metal Complexes as Potential Therapeutic Agents for Tuberculosis. . .