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Home / Archives for Fanning S

Fanning S

Characterization of antimicrobial resistance of Salmonella enterica food and animal isolates from Colombia: identification of a qnrB19-mediated quinolone resistance marker in two novel serovars

  • Autores: Aarestrup FM, Amaral L, Fanning S, Karczmarczyk M, Leonard N, Martins M, Mattar S, McCusker M
  • Ano de Publicação: 2010
  • Journal: FEMS microbiology letters
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/?term=Characterization+of+antimicrobial+resistance+of+Salmonella+enterica+food+and+animal+isolates+from+Colombia%3A+identification+of+a+qnrB19-mediated+quinolone+resistance+marker+in+two+novel+serovars

Ninety-three Salmonella isolates recovered from commercial foods and exotic animals in Colombia were studied. The serotypes, resistance profiles and where applicable the quinolone resistance genes were determined. Salmonella Anatum (n=14), Uganda (19), Braenderup (10) and Newport (10) were the most prevalent serovars, and resistance to tetracycline (18.3%), ampicillin (17.2%) and nalidixic acid (14%) was most […]
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Identification of efflux pump-mediated multidrug-resistant bacteria by the ethidium bromide-agar cartwheel method.

  • Autores: Amaral L, Costa SS, Couto I, Fanning S, Martins M, Pacheco T, Pagès JM, Viveiros M
  • Ano de Publicação: 2011
  • Journal: In vivo
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/?term=Identification+of+efflux+pump+mediated+multi-drug+resistant+bacteria+by+the+ethidium+bromide-agar+cartwheel+method

BACKGROUND/AIM:
Bacterial multidrug resistance may be mediated by the overexpression of efflux pumps. Conventional evaluation of efflux activity using efflux pump substrates, such as ethidium bromide, requires specialised instrumentation. The agar-based method, previously reported, has been modified to evaluate as many as twelve bacterial strains and has been termed the ethidium bromide-agar cartwheel method.
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Genetic response of Salmonella enterica serotype Enteritidis to thioridazine rendering the organism resistant to the agent.

  • Autores: Amaral L, Cerca P, Costa SS, Couto I, Fanning S, Machado L, Martins A, Martins M, McCusker M, Molnar J, Ntokou E, Rodrigues L, Spengler G, Viveiros M
  • Ano de Publicação: 2012
  • Journal: International Journal of Antimicrobial Agents
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/?term=Genetic+response+of+Salmonella+enterica+serotype+Enteritidis+to+thioridazine+rendering+the+organism+resistant+to+the+agent

Thioridazine (TZ)-induced accumulation of the universal efflux pump substrate ethidium bromide and its subsequent efflux by Salmonella strains with various degrees of overexpressed efflux pumps takes place automatically at pH 7.4, is independent of a metabolic source, is not affected by a proton ionophore and is precluded by palmitic acid.
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Phenothiazines, bacterial efflux pumps and targeting the macrophage for enhanced killing of intracellular XDRTB

  • Autores: Amaral L, Couto I, Dastidar S, Fanning S, Kristiansen JE, Martins A, Martins M, McCusker M, Molnar J, Pagès JM, Ramos J, Rodrigues L, Spengler G, Viveiros M
  • Ano de Publicação: 2010
  • Journal: In vivo
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/?term=Phenothiazines%2C+bacterial+efflux+pumps+and+targeting+the+macrophage+for+enhanced+killing+of+intracellular+XDRTB

Phenothiazines have their primary effects on the plasma membrane of prokaryotes and eukaryotes. Among the components of the prokaryotic plasma membrane affected are efflux pumps, their energy sources, energy providing enzymes such as ATPases, and genes that regulate and code for permeability aspects of the bacterium.
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Mechanisms of fluoroquinolone resistance in Escherichia coli isolates from food-producing animals.

  • Autores: Fanning S, Karczmarczyk M, Leonard N, Martins M, Quinn T
  • Ano de Publicação: 2011
  • Journal: Applied and Environmental Microbiology
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/21856834

Eleven multidrug-resistant Escherichia coli isolates (comprising 6 porcine and 5 bovine field isolates) displaying fluoroquinolone (FQ) resistance were selected from a collection obtained from the University Veterinary Hospital (Dublin, Ireland). MICs of nalidixic acid and ciprofloxacin were determined by Etest.
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Antibiotic Transport and Efflux: New Strategies to Combat Bacterial Resistance (ATENS).

  • Autores: Amaral L, Fanning S, Hajos G, Henderson P, Luisi B, Pagès JM, Pascu ML
  • Ano de Publicação: 2011
  • Journal: Letters Drug Design Discovery
  • Link: https://apps.webofknowledge.com/full_record.do?product=UA&search_mode=GeneralSearch&qid=15&SID=2ExAqmsJ7vIMOy1UmoG&page=1&doc=1

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Mechanisms of Antibiotic Resistance in Salmonella: Efflux Pumps, Genetics, Quorum Sensing and Biofilm Formation.

  • Autores: Amaral L, Fanning S, Martins M, McCusker M
  • Ano de Publicação: 2011
  • Journal: Letters in Drug Design & Discovery
  • Link: https://apps.webofknowledge.com/full_record.do?product=UA&search_mode=GeneralSearch&qid=4&SID=2ExAqmsJ7vIMOy1UmoG&page=1&doc=1

Multidrug resistance (MDR) to antibiotics presents a serious therapeutic problem in the treatment of bacterial infections. The importance of this mechanism of resistance in clinical settings is reflected in the increasing number of reports of multidrug resistant isolates. In Salmonella enterica, the most common etiological agent of food borne salmonellosis worldwide, MDR is becoming a major concern.
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Direct modification of bioactive phenothiazines by exposure to laser radiation.

  • Autores: Amaral L, Andrei IR, Boni M, Fanning S, Martins A, Militaru A, Molnar J, Nastasa V, Pascu A, Pascu ML, Smarandache A, Staicu A, Viveiros M
  • Ano de Publicação: 2011
  • Journal: Recent Patents on Anti-Infective Drug Discovery
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/?term=Direct+modification+of+bioactive+phenothiazines+by+exposure+to+laser+radiation.

Whereas exposure of combinations of a phenothiazine and bacterium to incoherent UV increases the activity of the phenothiazine, exposure of the phenothiazine alone does not yield an increase of its activity. Because the laser beam energy is greater than that produced by the incoherent UV sources, exposure of phenothiazines to specific lasers may yield molecules with altered activities over that of the unexposed parent.
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An original deal for new molecule: reversal of efflux pump activity, a rational strategy to combat gram-negative resistant bacteria.

  • Autores: Amaral L, Fanning S, Pagès JM
  • Ano de Publicação: 2011
  • Journal: Current Medicinal Chemistry
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/?term=n+original+deal+for+new+molecule%3A+reversal+of+efflux+pump+activity%2C+a+rational+strategy+to+combat+gram-negative+resistant+bacteria

The worldwide dissemination of «multi-drug resistant» (MDR) pathogens has severely reduced the efficacy of our antibiotic arsenal and increased the frequency of therapeutic failure. MDR bacteria over-express efflux pumps and this active mechanism can extrude all classes of antibiotics from the cell.
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Ethidium bromide efflux by Salmonella: modulation by metabolic energy, pH, ions and phenothiazines

  • Autores: Amaral L, Cerca P, Couto I, Fanning S, Machado L, Martins A, Pagès JM, Spengler G, Viveiros M
  • Ano de Publicação: 2011
  • Journal: International Journal of Antimicrobial Agents
  • Link: http://www.ncbi.nlm.nih.gov/pubmed/?term=Ethidium+bromide+efflux+by+Salmonella%3A+modulation+by+metabolic+energy%2C+pH%2C+ions+and+phenothiazines

The main efflux pump of Salmonella enterica serotype Enteritidis, which obtains its energy for the extrusion of noxious agents from the proton-motive force, was studied with the aid of an ethidium bromide (EtBr) semi-automated method under conditions that define the role of metabolic energy, ions and pH in the extrusion of the universal substrate EtBr.
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