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 |
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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. |
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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. |
Author_xml | – sequence: 1 givenname: Olga I. surname: Guliy fullname: Guliy, Olga I. email: guliy_olga@mail.ru organization: Institute of Biochemistry and Physiology of Plants and Microorganisms, Russian Academy of Sciences, Vavilov’s Saratov State Agrarian University, Saratov Scientific and Research Veterinary Institute Russian Academy of Sciences – sequence: 2 givenname: Victor D. surname: Bunin fullname: Bunin, Victor D. organization: Elosystems GbR – sequence: 3 givenname: Vyacheslav I. surname: Korzhenevich fullname: Korzhenevich, Vyacheslav I. organization: Saratov State Medical University – sequence: 4 givenname: Alexey A. surname: Volkov fullname: Volkov, Alexey A. organization: Vavilov’s Saratov State Agrarian University, Saratov Scientific and Research Veterinary Institute Russian Academy of Sciences – sequence: 5 givenname: Oleg V. surname: Ignatov fullname: Ignatov, Oleg V. organization: Institute of Biochemistry and Physiology of Plants and Microorganisms, Russian Academy of Sciences |
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CitedBy_id | crossref_primary_10_1016_j_snb_2022_131425 crossref_primary_10_1080_10739149_2020_1828097 crossref_primary_10_1016_j_colsurfb_2020_110775 |
Cites_doi | 10.1006/jcis.1996.0281 10.1128/AAC.39.7.1542 10.1016/S0141-0229(98)00057-X 10.1016/j.bios.2003.12.027 10.1111/j.1574-6968.2002.tb11328.x 10.1080/15321819.2014.955584 10.1080/10826069808010140 10.1021/cr030100y 10.1016/j.bios.2007.06.008 10.1016/S0003-2670(02)00316-1 10.1080/03067310500151169 10.1016/0141-0229(90)90001-7 10.1007/1-4020-3384-2_12 |
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Keywords | Cells orientational spectrum Kanamycin Chloramphenicol Ampicillin Tetracycline Escherichia coli |
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References | Yegorov (CR17) 1986 Guliy, Ignatov, Markina, Bunin, Shchegolev, Ignatov (CR20) 2006; 7 Fleschin, Bala, Bunaciu, Panait, AboulEnein (CR4) 1998; 28 Guliy, Ignatov, Shchyogolev, Bunin, Ignatov (CR13) 2002; 462 Galindo, Lagunas, Osuna, Soberon, Garcia (CR2) 1998; 23 Brian (CR6) 1984 Guliy, Bunin, O’Neil, Ivnitski, Ignatov (CR12) 2007; 23 CR9 Guliy, Ignatov, Markina, Bunin, Ignatov (CR7) 2005; 85 Guliy, Markina, Ignatov, Ignatov (CR11) 2007; 52 Sazykin, Navashin (CR18) 1991; 31 Galindo, Bautista, Garcia, Quintero (CR5) 1990; 12 CR21 Bunin, Ignatov, Guliy, Voloshin, Dykman, O’Neil, Ivnitski (CR10) 2004; 19 Guliy, Markina, Bunin, Ignatov, Ignatov (CR19) 2008; 77 Ignatov, Guliy, Shchyogolev, Bunin, Ignatov (CR8) 2002; 214 Walsh, Wright (CR1) 2005; 105 Bunin, Voloshin (CR16) 1996; 180 Guliy, Matora, Dykman, Staroverov, Burygin, Bunin, Burov, Ignatov (CR14) 2015; 36 Cavalieri, Biehle, Sanders (CR3) 1995; 39 Miroshnikov, Fomchenkov, Ivanov (CR15) 1986 VD Bunin (762_CR16) 1996; 180 762_CR21 LE Brian (762_CR6) 1984 C Walsh (762_CR1) 2005; 105 E Galindo (762_CR5) 1990; 12 NS Yegorov (762_CR17) 1986 OI Guliy (762_CR20) 2006; 7 SJ Cavalieri (762_CR3) 1995; 39 OI Guliy (762_CR7) 2005; 85 OV Ignatov (762_CR8) 2002; 214 OI Guliy (762_CR13) 2002; 462 VD Bunin (762_CR10) 2004; 19 OI Guliy (762_CR19) 2008; 77 OI Guliy (762_CR14) 2015; 36 OI Guliy (762_CR12) 2007; 23 YuO Sazykin (762_CR18) 1991; 31 S Fleschin (762_CR4) 1998; 28 762_CR9 E Galindo (762_CR2) 1998; 23 OI Guliy (762_CR11) 2007; 52 A Miroshnikov (762_CR15) 1986 |
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Ser. Biotechnol contributor: fullname: YuO Sazykin – volume: 19 start-page: 1759 issue: 2 year: 2004 ident: 762_CR10 publication-title: Biosensors and Bioelectronics doi: 10.1016/j.bios.2003.12.027 contributor: fullname: VD Bunin – volume-title: Electrophysical Analysis and Cell Separation year: 1986 ident: 762_CR15 contributor: fullname: A Miroshnikov – ident: 762_CR21 – volume: 214 start-page: 81 year: 2002 ident: 762_CR8 publication-title: FEMS Microbiology Letters doi: 10.1111/j.1574-6968.2002.tb11328.x contributor: fullname: OV Ignatov – volume-title: Bacterial resistance and sensitivity to chemotherapeutic agents year: 1984 ident: 762_CR6 contributor: fullname: LE Brian – volume: 7 start-page: 12 year: 2006 ident: 762_CR20 publication-title: Zh Mikrobiol Epidemiol Immunobiol contributor: fullname: OI Guliy – volume: 462 start-page: 165 issue: 2 year: 2002 ident: 762_CR13 publication-title: Analytica Chemica Acta doi: 10.1016/S0003-2670(02)00316-1 contributor: fullname: OI Guliy – volume: 77 start-page: 380 issue: 3 year: 2008 ident: 762_CR19 publication-title: Mikrobiologiia contributor: fullname: OI Guliy – volume: 39 start-page: 1542 year: 1995 ident: 762_CR3 publication-title: Antimicrobial Agents Chemotherapy doi: 10.1128/AAC.39.7.1542 contributor: fullname: SJ Cavalieri – volume-title: Fundamentals of the science of antibiotics year: 1986 ident: 762_CR17 contributor: fullname: NS Yegorov – ident: 762_CR9 doi: 10.1007/1-4020-3384-2_12 – volume: 180 start-page: 122 year: 1996 ident: 762_CR16 publication-title: Journal of Colloid and Interface Science doi: 10.1006/jcis.1996.0281 contributor: fullname: VD Bunin – volume: 23 start-page: 331 year: 1998 ident: 762_CR2 publication-title: Enzyme and Microbial Technology doi: 10.1016/S0141-0229(98)00057-X contributor: fullname: E Galindo |
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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 |
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