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A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt

The nano-CuCl(2).2H(2)O salt was prepared by the ball milling method. The association parameters for bulk and nano-CuCl(2) salts in H(2)O are estimated at different temperatures using the conductivity method by applying the Fuoss–Shedlovsky equation and it was higher for nano-CuCl(2) than bulk CuCl(...

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Autores principales: AbouElleef, Elsayed M., Mahrouka, Mowafak M., Salem, Sherine E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8548123/
https://www.ncbi.nlm.nih.gov/pubmed/34712313
http://dx.doi.org/10.1155/2021/4018843
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author AbouElleef, Elsayed M.
Mahrouka, Mowafak M.
Salem, Sherine E.
author_facet AbouElleef, Elsayed M.
Mahrouka, Mowafak M.
Salem, Sherine E.
author_sort AbouElleef, Elsayed M.
collection PubMed
description The nano-CuCl(2).2H(2)O salt was prepared by the ball milling method. The association parameters for bulk and nano-CuCl(2) salts in H(2)O are estimated at different temperatures using the conductivity method by applying the Fuoss–Shedlovsky equation and it was higher for nano-CuCl(2) than bulk CuCl(2) salt. The interaction between the cation (Cu(2+)) and ligand (ceftriaxone) in H(2)O was determined also by the conductometric method. Two stoichiometric complexes 1/2 and 1/1 (M/L) are estimated and follow the order K(f) (1/1) > K(f) (1 : 2) and ∆G(f) (1/1) > ∆G(f) (1/2) for (M : L) (in negative values) indicate the favorable of formation of (1/1) complex compared to the (1 : 2) complex. The Gibbs free energies change was increased in negative signs with increasing the temperature. The antimicrobial activities of CFT, bulk Cu-CFT complex, and nano-Cu-CFT complex were studied on LB agar by the disc diffusion technique against clinical isolates of gram-negative bacteria (Klebsiella pneumonia and Pseudomonas aeruginosa) and Fungi (Candida albicans). It was observed that (CFT) has a higher zone of inhibition and antibacterial activity than that of bulk and nano-Cu-CFT complexes in Klebsiella pneumonia and Pseudomonas aeruginosa (gram-negative bacteria). The nano-Cu-CFT complex showed a higher clear zone of inhibition and antifungal activity against candida than bulk Cu-CFT complex while the absence of the inhibition zone in CFT, so nano-Cu-CFT complex, can be used as an antifungal drug.
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spelling pubmed-85481232021-10-27 A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt AbouElleef, Elsayed M. Mahrouka, Mowafak M. Salem, Sherine E. Bioinorg Chem Appl Research Article The nano-CuCl(2).2H(2)O salt was prepared by the ball milling method. The association parameters for bulk and nano-CuCl(2) salts in H(2)O are estimated at different temperatures using the conductivity method by applying the Fuoss–Shedlovsky equation and it was higher for nano-CuCl(2) than bulk CuCl(2) salt. The interaction between the cation (Cu(2+)) and ligand (ceftriaxone) in H(2)O was determined also by the conductometric method. Two stoichiometric complexes 1/2 and 1/1 (M/L) are estimated and follow the order K(f) (1/1) > K(f) (1 : 2) and ∆G(f) (1/1) > ∆G(f) (1/2) for (M : L) (in negative values) indicate the favorable of formation of (1/1) complex compared to the (1 : 2) complex. The Gibbs free energies change was increased in negative signs with increasing the temperature. The antimicrobial activities of CFT, bulk Cu-CFT complex, and nano-Cu-CFT complex were studied on LB agar by the disc diffusion technique against clinical isolates of gram-negative bacteria (Klebsiella pneumonia and Pseudomonas aeruginosa) and Fungi (Candida albicans). It was observed that (CFT) has a higher zone of inhibition and antibacterial activity than that of bulk and nano-Cu-CFT complexes in Klebsiella pneumonia and Pseudomonas aeruginosa (gram-negative bacteria). The nano-Cu-CFT complex showed a higher clear zone of inhibition and antifungal activity against candida than bulk Cu-CFT complex while the absence of the inhibition zone in CFT, so nano-Cu-CFT complex, can be used as an antifungal drug. Hindawi 2021-10-19 /pmc/articles/PMC8548123/ /pubmed/34712313 http://dx.doi.org/10.1155/2021/4018843 Text en Copyright © 2021 Elsayed M. AbouElleef et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
AbouElleef, Elsayed M.
Mahrouka, Mowafak M.
Salem, Sherine E.
A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt
title A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt
title_full A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt
title_fullStr A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt
title_full_unstemmed A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt
title_short A Physical-Chemical Study of the Interference of Ceftriaxone Antibiotic with Copper Chloride Salt
title_sort physical-chemical study of the interference of ceftriaxone antibiotic with copper chloride salt
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8548123/
https://www.ncbi.nlm.nih.gov/pubmed/34712313
http://dx.doi.org/10.1155/2021/4018843
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