Mostrando 118,981 - 119,000 Resultados de 119,127 Para Buscar '"bacteria"', tiempo de consulta: 0.67s Limitar resultados
  1. 118981
    “…BACKGROUND: We previously showed that fimbriae-bore from Poryphyromonas gingivalis (Pg), one of the putative periodontopathogenic bacteria specifically bound to a peptide domain (stat23, prp21) shared on statherin or acidic proline-rich protein 1 (PRP1) molecule of human salivary proteins (HSPs). …”
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  2. 118982
    “…CONCLUSIONS: This study shows that antimicrobial peptides can improve the growth performance of animals while resisting viruses and harmful bacteria and are expected to become healthy alternatives to antibiotics. …”
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  3. 118983
    Publicado 1993
    Tabla de Contenidos: “…Dalpé -- Root nodule bacteria and nitrogen fixation / W.A. Rice, P.E. Olsen -- Microarthropods in soil and litter / J.P. …”
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  4. 118984
    Publicado 2014
    Tabla de Contenidos: “…Schluter (2001) -- Microbial minimalism : genome reduction in bacteria pathogens / N. Moran (2002) -- Unpredictable evolution in a 30-year study of Darwin's finches / P.R. …”
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  5. 118985
    “…Extracting the fundamental genomic sequence from the DNA From Genome to Sequence : Biology in the early 21st century has been radically transformed by the availability of the full genome sequences of an ever increasing number of life forms, from bacteria to major crop plants and to humans. The lecture will concentrate on the computational challenges associated with the production, storage and analysis of genome sequence data, with an emphasis on mammalian genomes. …”
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  6. 118986
    “…SIMPLE SUMMARY: Environmental microorganisms are always present in poultry farming and may be associated with a high concentration of organic dust, microorganisms in feces, litter, dust and air, as well as the release of volatile odorous compounds, feathers, dandruff (skin material), mites, bacteria, fungi and fungal spores and endotoxins, depending on the type of bird and stages of the production cycle. …”
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  7. 118987
    “…BACKGROUND: Cefiderocol (CFDC) has broad in vitro activity against non–fermenting Gram-negative bacteria which often present treatment challenges due to multi-drug resistance. …”
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  8. 118988
    “…Cefiderocol (CFDC) is a siderophore-conjugated cephalosporin with broad activity against Gram-negative bacteria. In this study, the activity of CFDC and comparator agents was determined against isolates of Achromobacter and Burkholderia cepacia species complex, collected in 2020–2022 in Europe and the USA as part of the SENTRY antimicrobial surveillance program. …”
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  9. 118989
    “…BACKGROUND: Cefiderocol (CFDC) is a siderophore cephalosporin that hijacks the iron transport system of Gram-negative bacteria to facilitate cell entry and reach its target. …”
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  10. 118990
    por Chen, Yu, Miao, Qing, Hu, Bijie
    Publicado 2023
    “…[Figure: see text] (A and B) Relative abundance comparisons at the genus (A) and species (B) levels including major bacteria and fungi. In the histogram, microbial taxa that were overrepresented in the PNTM patients were depicted on the right (log2foldchange >0), and microbial taxa that were overrepresented in the PTB patients were depicted on the left (log2foldchange <0). …”
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  11. 118991
    “…BACKGROUND: Cefiderocol (CFDC) is a siderophore-conjugated cephalosporin with broad activity against Gram-negative bacteria including multi-drug resistant organisms. …”
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  12. 118992
    “…Recent IDSA guidance recommends narrower-spectrum beta-lactams for lower AmpC-induction risk bacteria, like Serratia. Prior studies focused on other Enterobacterales, with limited evidence on Serratia bacteremia. …”
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  13. 118993
    por Noguchi, Hideyo, Tilden, Evelyn B.
    Publicado 1926
    “…The Barber technique was utilized for isolation of the flagellates from flies, because of the very large number of bacteria found with them in these insects, and, in one or two instances, for the purification of impure cultures. …”
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  14. 118994
    por Brand, Richard A.
    Publicado 2008
    “…Their approach was based upon a concentration shown by Key et al. [5] to kill any bacteria. Their 22 patients were treated by preoperative sulfathiazole by mouth for three days prior to surgery (monitoring blood concentrations from 1 to 13 milligrams per 100 cubic centimeters), then thorough débridement (after injecting the sinuses with methylene blue to identify their extent), and the application of 1 to 2 grams of sulfathiazole powder to the wound using a nasal insufflator, followed by firm dressings and casting. …”
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  15. 118995
    “…We also found that farnesol (F) and xylitol (X) synergistically inhibited biofilm formation by SA, and indeed the ratio of SA in total bacteria at sites to which the FX cream containing F and X had been applied was significantly decreased 1 week later, accompanied with improvement of AD, when compared with that before application and at placebo sites. …”
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  16. 118996
    por Chalfie, Martin
    Publicado 2010
    “…Because of her engineering background, Euskirchen knew that the microscope in the Chalfie lab was not good enough to use for this type of experiment, so she captured images of green bacteria using the microscope from her former engineering lab. …”
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  17. 118997
    “…Before treatment with CARELA Solvent and CARELA HYDRO-DES, the initial contamination of the total count of bacterial colonies was 1,432 cfu/ml at 22°C and 846 cfu/ml at 36°C as well as >1,000 cfu/100 ml for molds. 1 h after the decontamination, no bacteria and molds could be detected in 1,000 ml of tap water. …”
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  18. 118998
    por Braslavsky, Ido, Drori, Ran
    Publicado 2013
    “…IBPs are found in a variety of organism, including fish(1), plants(2, 3), arthropods(4, 5), fungi(6), and bacteria(7). IBPs adsorb to the surfaces of ice crystals and prevent water molecules from joining the ice lattice at the IBP adsorption location. …”
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  19. 118999
    por Tamburini, Christian, Canals, Miquel, Durrieu de Madron, Xavier, Houpert, Loïc, Lefèvre, Dominique, Martini, Séverine, D'Ortenzio, Fabrizio, Robert, Anne, Testor, Pierre, Aguilar, Juan Antonio, Samarai, Imen Al, Albert, Arnaud, André, Michel, Anghinolfi, Marco, Anton, Gisela, Anvar, Shebli, Ardid, Miguel, Jesus, Ana Carolina Assis, Astraatmadja, Tri L., Aubert, Jean-Jacques, Baret, Bruny, Basa, Stéphane, Bertin, Vincent, Biagi, Simone, Bigi, Armando, Bigongiari, Ciro, Bogazzi, Claudio, Bou-Cabo, Manuel, Bouhou, Boutayeb, Bouwhuis, Mieke C., Brunner, Jurgen, Busto, José, Camarena, Francisco, Capone, Antonio, Cârloganu, Christina, Carminati, Giada, Carr, John, Cecchini, Stefano, Charif, Ziad, Charvis, Philippe, Chiarusi, Tommaso, Circella, Marco, Coniglione, Rosa, Costantini, Heide, Coyle, Paschal, Curtil, Christian, Decowski, Patrick, Dekeyser, Ivan, Deschamps, Anne, Donzaud, Corinne, Dornic, Damien, Dorosti, Hasankiadeh Q., Drouhin, Doriane, Eberl, Thomas, Emanuele, Umberto, Ernenwein, Jean-Pierre, Escoffier, Stéphanie, Fermani, Paolo, Ferri, Marcelino, Flaminio, Vincenzo, Folger, Florian, Fritsch, Ulf, Fuda, Jean-Luc, Galatà, Salvatore, Gay, Pascal, Giacomelli, Giorgio, Giordano, Valentina, Gómez-González, Juan-Pablo, Graf, Kay, Guillard, Goulven, Halladjian, Garadeb, Hallewell, Gregory, van Haren, Hans, Hartman, Joris, Heijboer, Aart J., Hello, Yann, Hernández-Rey, Juan Jose, Herold, Bjoern, Hößl, Jurgen, Hsu, Ching-Cheng, de Jong, Marteen, Kadler, Matthias, Kalekin, Oleg, Kappes, Alexander, Katz, Uli, Kavatsyuk, Oksana, Kooijman, Paul, Kopper, Claudio, Kouchner, Antoine, Kreykenbohm, Ingo, Kulikovskiy, Vladimir, Lahmann, Robert, Lamare, Patrick, Larosa, Giuseppina, Lattuada, Dario, Lim, Gordon, Presti, Domenico Lo, Loehner, Herbert, Loucatos, Sotiris, Mangano, Salvatore, Marcelin, Michel, Margiotta, Annarita, Martinez-Mora, Juan Antonio, Meli, Athina, Montaruli, Teresa, Moscoso, Luciano, Motz, Holger, Neff, Max, Nezri, Emma nuel, Palioselitis, Dimitris, Păvălaş, Gabriela E., Payet, Kevin, Payre, Patrice, Petrovic, Jelena, Piattelli, Paolo, Picot-Clemente, Nicolas, Popa, Vlad, Pradier, Thierry, Presani, Eleonora, Racca, Chantal, Reed, Corey, Riccobene, Giorgio, Richardt, Carsten, Richter, Roland, Rivière, Colas, Roensch, Kathrin, Rostovtsev, Andrei, Ruiz-Rivas, Joaquin, Rujoiu, Marius, Russo, Valerio G., Salesa, Francisco, Sánchez-Losa, Augustin, Sapienza, Piera, Schöck, Friederike, Schuller, Jean-Pierre, Schussler, Fabian, Shanidze, Rezo, Simeone, Francesco, Spies, Andreas, Spurio, Maurizio, Steijger, Jos J. M., Stolarczyk, Thierry, Taiuti, Mauro G. F., Toscano, Simona, Vallage, Bertrand, Van Elewyck, Véronique, Vannoni, Giulia, Vecchi, Manuela, Vernin, Pascal, Wijnker, Guus, Wilms, Jorn, de Wolf, Els, Yepes, Harold, Zaborov, Dmitry, De Dios Zornoza, Juan, Zúñiga, Juan
    Publicado 2013
    “…It episodically renews the deep water of the study area and conveys fresh organic matter that fuels the deep ecosystems. Luminous bacteria most likely are the main contributors to the observed deep-sea bioluminescence blooms. …”
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  20. 119000
    “…In addition to the loss of protective Th subsets, we previously showed that chronically HIV-1 infected individuals have an altered colonic mucosal microbiome, which is in part characterized by a lower relative abundance of bacteria that produce the short-chain fatty acid butyrate in conjunction with increased relative abundance of gram-negative pathobionts. …”
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