Conţinutul numărului revistei |
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490 0 |
SM ISO690:2012 FUIOR, Arcadie, HIJAZI, Akram, GARBUZ, Olga, BULIMAGA, Valentina, ZOSIM, Liliana, CEBOTARI, Diana, HAOUAS, Mohamed, TODERASH, Ion, GULYA, Aurelian, FLOQUET, Sebastian. Screening of biological properties of MoV 2O2S2- and MoV 2O4-based coordination complexes: Investigation of antibacterial, antifungal, antioxidative and antitumoral activities versus growing of Spirulina platensis biomass. In: Journal of Inorganic Biochemistry, 2022, vol. 226, p. 0. ISSN 0162-0134. DOI: https://doi.org/10.1016/j.jinorgbio.2021.111627 |
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Journal of Inorganic Biochemistry | ||||||
Volumul 226 / 2022 / ISSN 0162-0134 /ISSNe 1873-3344 | ||||||
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DOI:https://doi.org/10.1016/j.jinorgbio.2021.111627 | ||||||
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This paper deals with the biological potential of coordination compounds based on binuclear core [MoV2O2E2]2+ (E = O or S) coordinated with commercially available ligands such as oxalates (Ox2−), L-cysteine (L-cys2−), L-histidine (L-his−), Iminodiacetate (IDA2−), Nitrilotriacetate (HNTA2− or NTA3−) or ethylenediamine tetraacetate (EDTA4−) by means of various in vitro assays in a screening approach. Results suggest that the obtained complexes show weak antibacterial and antifungal properties while not being cytotoxic on cancerous and mammalian cells. In contrast, [Mo2O2E2(L-cys)2]2− complexes stand out as powerful antioxidant, whereas [Mo2O2E2(EDTA)]2− associating tetraphenylphosphonium counter-cations display strong antibiotic activity. Finally, some complexes have evidenced a positive activity towards the growing of spirulina platensis together with a modification of the proportions of biological components inside the cells. These findings reveal promising bioactivity of the bridged binuclear Mo(+V) cores inside complexes and encourage further research for new highly active yet non-toxic molecules for biological and biomedical applications. |
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Cuvinte-cheie Antibiotic activity, Cluster, complex, cytotoxicity, molybdenum, Spirulina platensis |
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