Electrooptical Analysis of Microbial Cell Suspensions forDetermination of Antibiotic Resistance

The effects of ampicillin; kanamycin, chloramphenicol, and tetracycline on electrophysical characteristics of cells of sensitive (ampicillin; kanamycin, chloramphenicol) and resistant (ampicillin; kanamycin, chloramphenicol, tetracycline) Escherichia coli strains were studied. Under the action of an...

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Published in:Cell biochemistry and biophysics Vol. 74; no. 4; pp. 537 - 544
Main Authors: Guliy, Olga I., Bunin, Victor D., Korzhenevich, Vyacheslav I., Volkov, Alexey A., Ignatov, Oleg V.
Format: Journal Article
Language:English
Published: New York Springer US 01-12-2016
Springer Nature B.V
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Abstract The effects of ampicillin; kanamycin, chloramphenicol, and tetracycline on electrophysical characteristics of cells of sensitive (ampicillin; kanamycin, chloramphenicol) and resistant (ampicillin; kanamycin, chloramphenicol, tetracycline) Escherichia coli strains were studied. Under the action of antibiotics sensitive and resistant E. coli strains acquire different electro-optical properties. Changes in suspension-orientational spectra, that are observed under the action of ampicillin; kanamycin, chloramphenicol, and tetracycline can be used in determination of antibiotic resistance of the studied bacterial strains. In our opinion, the methods of microbial suspension electro-optical analysis can be used in microbiology, mеdicinе, veterinary, and are an effective tool for solving the problems connected with determination of microbial cell antibiotic resistance.
AbstractList The effects of ampicillin; kanamycin, chloramphenicol, and tetracycline on electrophysical characteristics of cells of sensitive (ampicillin; kanamycin, chloramphenicol) and resistant (ampicillin; kanamycin, chloramphenicol, tetracycline) Escherichia coli strains were studied. Under the action of antibiotics sensitive and resistant E. coli strains acquire different electro-optical properties. Changes in suspension-orientational spectra, that are observed under the action of ampicillin; kanamycin, chloramphenicol, and tetracycline can be used in determination of antibiotic resistance of the studied bacterial strains. In our opinion, the methods of microbial suspension electro-optical analysis can be used in microbiology, mеdicinе, veterinary, and are an effective tool for solving the problems connected with determination of microbial cell antibiotic resistance.
The effects of ampicillin; kanamycin, chloramphenicol, and tetracycline on electrophysical characteristics of cells of sensitive (ampicillin; kanamycin, chloramphenicol) and resistant (ampicillin; kanamycin, chloramphenicol, tetracycline) Escherichia coli strains were studied. Under the action of antibiotics sensitive and resistant E. coli strains acquire different electro-optical properties. Changes in suspension-orientational spectra, that are observed under the action of ampicillin; kanamycin, chloramphenicol, and tetracycline can be used in determination of antibiotic resistance of the studied bacterial strains. In our opinion, the methods of microbial suspension electro-optical analysis can be used in microbiology, m[ETH] mu dicin[ETH] mu , veterinary, and are an effective tool for solving the problems connected with determination of microbial cell antibiotic resistance.
The effects of ampicillin; kanamycin, chloramphenicol, and tetracycline on electrophysical characteristics of cells of sensitive (ampicillin; kanamycin, chloramphenicol) and resistant (ampicillin; kanamycin, chloramphenicol, tetracycline) Escherichia coli strains were studied. Under the action of antibiotics sensitive and resistant E. coli strains acquire different electro-optical properties. Changes in suspension-orientational spectra, that are observed under the action of ampicillin; kanamycin, chloramphenicol, and tetracycline can be used in determination of antibiotic resistance of the studied bacterial strains. In our opinion, the methods of microbial suspension electro-optical analysis can be used in microbiology, mеdicinе, veterinary, and are an effective tool for solving the problems connected with determination of microbial cell antibiotic resistance.
The effects of ampicillin; kanamycin, chloramphenicol, and tetracycline on electrophysical characteristics of cells of sensitive (ampicillin; kanamycin, chloramphenicol) and resistant (ampicillin; kanamycin, chloramphenicol, tetracycline) Escherichia coli strains were studied. Under the action of antibiotics sensitive and resistant E. coli strains acquire different electro-optical properties. Changes in suspension-orientational spectra, that are observed under the action of ampicillin; kanamycin, chloramphenicol, and tetracycline can be used in determination of antibiotic resistance of the studied bacterial strains. In our opinion, the methods of microbial suspension electro-optical analysis can be used in microbiology, mеdicinе, veterinary, and are an effective tool for solving the problems connected with determination of microbial cell antibiotic resistance.
Author Ignatov, Oleg V.
Korzhenevich, Vyacheslav I.
Volkov, Alexey A.
Bunin, Victor D.
Guliy, Olga I.
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Keywords Cells orientational spectrum
Kanamycin
Chloramphenicol
Ampicillin
Tetracycline
Escherichia coli
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Snippet The effects of ampicillin; kanamycin, chloramphenicol, and tetracycline on electrophysical characteristics of cells of sensitive (ampicillin; kanamycin,...
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SubjectTerms Ampicillin - pharmacology
Anti-Bacterial Agents - pharmacology
Antibiotic resistance
Antibiotics
Biochemistry
Biological and Medical Physics
Biomedical and Life Sciences
Biophysics
Biotechnology
Cell Biology
Cell Polarity - drug effects
Chloramphenicol - pharmacology
Drug Resistance, Microbial
E coli
Electricity
Escherichia coli
Escherichia coli - drug effects
Escherichia coli - physiology
Kanamycin - pharmacology
Life Sciences
Light
Microbiology
Optical analysis
Optical properties
Original Paper
Pharmacology/Toxicology
Scattering, Radiation
Tetracycline - pharmacology
Title Electrooptical Analysis of Microbial Cell Suspensions forDetermination of Antibiotic Resistance
URI https://link.springer.com/article/10.1007/s12013-016-0762-5
https://www.ncbi.nlm.nih.gov/pubmed/27638046
https://www.proquest.com/docview/1837168314
https://search.proquest.com/docview/1839133453
https://search.proquest.com/docview/1846413031
Volume 74
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