Publications by authors named "Gregory F Grawe"

Article Synopsis
  • The study presents three new ruthenium(II) complexes (Ru1, Ru2, Ru3) with distinct ligands, characterized using various spectroscopic techniques and confirmed by X-ray diffraction for Ru1.
  • All three complexes exhibit cytotoxic effects on cancer cell lines (A549 and MDA-MB-231) with better efficacy than cisplatin, particularly Ru2 which shows a significant selective toxicity toward MDA-MB-231.
  • The complexes interact with DNA electrostatically and with human serum albumin through static mechanisms, suggesting they are promising candidates for further anticancer research due to their unique binding properties.
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We have synthesized and characterized three new ruthenium(II) diphosphine complexes containing an acylthiourea ligand, with the general formula [Ru(DPEPhos)(O,S)(bipy)]PF, where DPEPhos = bis(2-(diphenylphosphino)phenyl)ether, bipy = 2,2'-bipyridine, and O,S = ,-dimethyl-'-(benzoyl)thiourea (1), ,-dimethyl-'-(furoyl)thiourea (2), and ,-dimethyl-'-(thiophenyl)thiourea (3), by several physicochemical techniques. We evaluated the ruthenium complexes for their cytotoxicity against two human cancer cell lines, A549 (lung) and MDA-MB-231 (breast), and two corresponding lines of non-cancer cells, MRC-5 (lung) and MCF-10A (breast). All the complexes are cytotoxic against the cancer cell lines; the IC values lie in the micromolar range (0.

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In this work, a biosensor was constructed by physical adsorption of the isolated endophytic fungus Eupenicillium shearii FREI-39 esterase on halloysite, using graphite powder, multi-walled carbon nanotubes and mineral oil for the determination of carbofuran pesticide by inhibition of the esterase using square-wave voltammetry (SWV). Specific esterase activities were determined each 2 days over a period of 15 days of growth in four different inoculation media. The highest specific activity was found on 6th day, with 33.

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Sepiolite clay mineral was used as a support for the immobilisation of the peroxidase enzyme from ingá-cipó (Inga edulis Mart.) and was used with graphite powder, multi-walled carbon nanotubes (CNTs), mineral oil, and nafion 0.5% (v/v) in the development of a new biosensor for the determination of the antioxidant tert-butylhydroquinone (TBHQ) by square-wave voltammetry (SWV).

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