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L A Taranova

Explore the profile of L A Taranova including associated specialties, affiliations and a list of published articles. Areas
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Articles 12
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Recent Articles
1.
Reshetilov A, Iliasov P, Fesai A, Ivashchenko G, Taranova L, Winther-Nielsen M, et al.
Prikl Biokhim Mikrobiol . 2005 Apr; 41(1):64-71. PMID: 15810735
Models of microbial biosensors based on 11 strains of degrading surface-active substances (SASs) and polycyclic aromatic hydrocarbons (PAHs) were studied. Substrate specificity, sensitivity, and stability of biosensor models were comparatively...
2.
Taranova L, Fesai A, Ivashchenko G, Reshetilov A, Winter-Nielsen M, Emneus J
Prikl Biokhim Mikrobiol . 2004 Oct; 40(4):472-7. PMID: 15455722
Strain Comamonas testosteroni TI, capable of degrading the nonionic surfactant (NIS) nonylphenolethoxylate (OP-10), was used for constructing a pilot cellular biosensor. The lower NIS detection limit for the biosensor was...
3.
Taranova L, Semenchuk I, Iliasov P, Reshetilov A
Prikl Biokhim Mikrobiol . 2000 Apr; 36(2):204-8. PMID: 10780010
The dependence of the sensitivity of a microbial biosensor of anionic surfactants (AS) on the growth phase of Pseudomonas rathonis T, a strain capable of degrading surfactants, was studied. Correlations...
4.
Semenchuk I, Taranova L, Kaleniuk A, Iliasov P, Reshetilov A
Prikl Biokhim Mikrobiol . 2000 Apr; 36(1):80-4. PMID: 10752089
The operating and storage stability of a receptor element of an amperometric biosensor based on the Pseudomonas rathonis strain T capable of degrading surfactants was tested. Microbial cells were immobilized...
5.
Dubeikovskii A, Taranova L, Ovcharov L, Zaets S, Grishchenkov V, Mordukhova E, et al.
Mikrobiologiia . 1997 May; 66(3):378-82. PMID: 9273447
Degradation of anionic, cationic, and zwitterionic surfactants, such as alkylbenzene sulfonate, ethonium, amidobetaine, and alkylaminobispropionate, by pseudomonads can be controlled by plasmid genes. The majority of plasmids of surfactant-degrading strains...
6.
ROTMISTROV M, Stavskaia S, Taranova L, Grigoreva T, TRENINA G, Kliucheva M, et al.
Mikrobiologiia . 1990 Jan; 59(1):156-62. PMID: 2197526
The survival rate and the destruction activity of Pseudomonas strains decomposing anionic and ampholytic surfactants were studied in the course of their storage for a long period of time. The...
7.
Ovcharov L, Taranova L, Gvozdiak P
Mikrobiologiia . 1989 Nov; 58(6):1043-4. PMID: 2636974
Plasmid DNA was detected in Pseudomonas putida 141 and P. stutzeri AT strains which caused destruction of the ampholytic surfactants alkylamino-bis-propionate (AABP) and amidobetaine, respectively. As was demonstrated using genetic...
8.
Stavskaia S, Pavlova I, Radchenko O, Taranova L, ZAKHAROVA I
Mikrobiologiia . 1987 Nov; 56(6):928-32. PMID: 3449742
An enzyme desulfonating anionic alkyl benzene sulfonate (ABS) surfactants was isolated from Pseudomonas alcaligenes TR and purified. The physicochemical and catalytic characteristics of the enzyme were studied. The kinetic constants...
9.
ROTMISTROV M, Taranova L, Radchenko O, Stavskaia S
Dokl Akad Nauk SSSR . 1986 May; 288(1):246-8. PMID: 3011377
No abstract available.
10.
Stavskaia S, Taranova L, Grigoreva T, Degtiarev V, Pisarev V
Mikrobiologiia . 1984 Mar; 53(2):218-22. PMID: 6330506
Pseudomonas rathonis T/1 utilizing alkyl sulfonate, an anionic surfactant, as a sole source of carbon and energy was isolated from the soil taken near a plant producing synthetic detergents. Pseudomonas...