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Artículo original Utilidad del Sistema API 20NE para identificar especies del género Acinetobacter y otros bacilos gramnegativos no fermentadores

Elsa Zuleima Salazar De Vegas, Beatríz Nieves, Joaquı́m Ruiz, Jordi Vilà

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Abstract

We used 62 strains initially identified as non fermenting gram-negative bacilli (NFGNB) isolated from patients with a nosoco- mial infection diagnosis with the purpose of identifying their genus and species. Forty five strains were identified as Acinetobacter baumannii, 10 as Pseudomonas aeruginosa, 3 as Stenotrophomonas maltophilia, 3 as Comamonas acidovorans and 1 as Achromobacter xylosoxidans subspecies xylosoxidans through the API 20NE. Regarding the Acinetobacter strains, the ARDRA allowed to identify 20 strains as A. baumannii and 23 as Acinetobacter genospecies 13TU, but 2 strains were not identified with this method. The ADNr 16S sequence of all the strains included in this study allowed to identify 20 strains as A. baumannii, 23 strains as Acinetobacter RUH1139, 10 as P. aeruginosa, 4 as A. xylosoxidans subsp. xylosoxidans (2 of these four strains strains had been identified as A. baumannii through API20NE), 3 as S. maltophilia, and 1 as C. acidovorans and 1 as β-Proteubacterium. The discrepancies between the biochemical identifi- cation by API 20NE and by ARDRA to differentiate the Acinetobacter genospecies was resolved by the ADNr16S sequencing, indicating that the identification of the Acinetobacter isolates, among other NFGNB, through API 20NE, should be confirmed through genetic tech- niques.

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What this paper is about

We used 62 strains initially identified as non fermenting gram-negative bacilli (NFGNB) isolated from patients with a nosoco- mial infection diagnosis with the purpose of identifying their genus and species. Forty five strains were identified as Acinetobacter baumannii, 10 as Pseudomonas aeruginosa, 3 as Stenotrophomonas maltophilia, 3 as Comamonas acidovorans and 1 as Achromobacter xylosoxidans subspecies xylosoxidans through the API 20NE. Regarding the Acinetobacter strains, the ARDRA allowed to identify 20 strains as A. baumannii and 23 as Acinetobacter genospecies 13TU, but 2 strains were not identified with this method. The ADNr 16S sequence of all the strains included in this study allowed to identify 20 strains as A. baumannii, 23 strains as Acinetobacter RUH1139, 10 as P. aeruginosa, 4 as A. xylosoxidans subsp. xylosoxidans (2 of these four strains strains had been identified as A. baumannii through API20NE), 3 as S. maltophilia, and 1 as C. acidovorans and 1 as β-Proteubacterium. The discrepancies between the biochemical identifi- cation by API 20NE and by ARDRA to differentiate the Acinetobacter genospecies was resolved by the ADNr16S sequencing, indicating that the identification of the Acinetobacter isolates, among other NFGNB, through API 20NE, should be confirmed through genetic tech- niques.

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Available abstract

We used 62 strains initially identified as non fermenting gram-negative bacilli (NFGNB) isolated from patients with a nosoco- mial infection diagnosis with the purpose of identifying their genus and species. Forty five strains were identified as Acinetobacter baumannii, 10 as Pseudomonas aeruginosa, 3 as Stenotrophomonas maltophilia, 3 as Comamonas acidovorans and 1 as Achromobacter xylosoxidans subspecies xylosoxidans through the API 20NE. Regarding the Acinetobacter strains, the ARDRA allowed to identify 20 strains as A. baumannii and 23 as Acinetobacter genospecies 13TU, but 2 strains were not identified with this method. The ADNr 16S sequence of all the strains included in this study allowed to identify 20 strains as A. baumannii, 23 strains as Acinetobacter RUH1139, 10 as P. aeruginosa, 4 as A. xylosoxidans subsp. xylosoxidans (2 of these four strains strains had been identified as A. baumannii through API20NE), 3 as S. maltophilia, and 1 as C. acidovorans and 1 as β-Proteubacterium. The discrepancies between the biochemical identifi- cation by API 20NE and by ARDRA to differentiate the Acinetobacter genospecies was resolved by the ADNr16S sequencing, indicating that the identification of the Acinetobacter isolates, among other NFGNB, through API 20NE, should be confirmed through genetic tech- niques.

Key concepts: Achromobacter xylosoxidans, Acinetobacter baumannii, Microbiology, Acinetobacter, Stenotrophomonas maltophilia, Biology, Stenotrophomonas, Pseudomonas aeruginosa

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Artículo original Utilidad del Sistema API 20NE para identificar especies del género Acinetobacter y otros bacilos gramnegativos no fermentadores — Research Paper | ScholarLens