MARINA FARREL CORTES

(Fonte: Lattes)
Índice h a partir de 2011
7
Projetos de Pesquisa
Unidades Organizacionais
Instituto Central, Hospital das Clínicas, Faculdade de Medicina
LIM/49 - Laboratório de Protozoologia, Hospital das Clínicas, Faculdade de Medicina

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Agora exibindo 1 - 9 de 9
  • article 12 Citação(ões) na Scopus
    Alternative drugs against multiresistant Gram-negative bacteria
    (2020) PERDIGAO NETO, Lauro Vieira; OLIVEIRA, Maura Salaroli; ORSI, Tatiana D'Annibale; PRADO, Gladys Villas Boas do; MARTINS, Roberta Cristina Ruedas; LEITE, Gleice Cristina; MARCHI, Ana Paula; LIRA, Esther Sant'Ana de; CORTES, Marina Farrel; ESPINOZA, Evelyn Patricia Sanchez; CARRILHO, Claudia Maria Dantas de Maio; BOSZCZOWSKI, Icaro; GUIMARAES, Thais; COSTA, Silvia Figueiredo; LEVIN, Anna S.
    Objectives: Enterobacterales and other non-fermenting Gram-negative bacteria have become a threat worldwide owing to the frequency of multidrug resistance in these pathogens. On the other hand, efficacious therapeutic options are quickly diminishing. The aims of this study were to describe the susceptibility of 50 multiresistant Gram-negative bacteria, mostly pan-resistant, against old and less-used antimicrobial drugs and to investigate the presence of antimicrobial resistance genes. Methods: A total of 50 genetically distinct isolates were included in this study, including 14 Acinetobacter baumannii (belonging to ST79, ST317, ST835 and ST836), 1 Pseudomonas aeruginosa (ST245), 8 Serratia marcescens and 27 Klebsiella pneumoniae (belonging to STII, ST340, ST258, ST16, ST23, ST25, ST101, ST234, ST437 and ST442). The isolates were submitted to antimicrobial susceptibility testing and whole-genome sequencing to evaluate lineages and resistance genes. Results: Our results showed that some strains harboured carbapenemase genes, e.g. bla(K)(PC-)(2) (28/50; 56%) and bla(OXA-23) (11/50; 22%), and other resistance genes encoding aminoglycoside-modifying enzymes (49/50; 98%). Susceptibility rates to tigecycline (96%) in all species (except P. aeruginosa), to minocycline (100%) and doxycycline (93%) in A. baumannii, to ceftazidime/avibactam in S. marcescens (100%) and K. pneumoniae (96%), and to fosfomycin in S. marcescens (88%) were high. Chloramphenicol and quinolones (6% susceptibility each) did not perform well, making their use in an empirical scenario unlikely. Conclusions: This study involving genetically distinct bacteria showed promising results for tigecycline for all Gram-negative bacteria (except P. aeruginosa), and there was good activity of minocycline against A. baumannii, ceftazidime/avibactam against Enterobacterales, and fosfomycin against S. marcescens. (C) 2020 The Author(s).
  • article 4 Citação(ões) na Scopus
    Phenotypic and genotypic characteristics of a carbapenem-resistant Serratia marcescens cohort and outbreak: describing an opportunistic pathogen
    (2022) PRADO, Gladys; MENDES, Elisa Teixeira; MARTINS, Roberta Cristina Ruedas; PERDIGAO-NETO, Lauro Vieira; FREIRE, Maristela Pinheiro; MARCHI, Ana Paula; CORTES, Marina Farrel; LIMA, Victor Augusto Camarinha de Castro; ROSSI, Flavia; GUIMARAES, Thais; LEVIN, Anna Sara; COSTA, Silvia Figueiredo
    Serratia marcescens is an emerging opportunistic pathogen with high genetic diversity. This article describes the microbiological characteristics of isolates and the risk factors for infections caused by carbapenem-resistant S. marcescens. A retrospective study of patients colonized (n=43) and infected (n= 20) with carbapenem-resistant S. marcescens over a 3-year period was conducted. Polymerase chain reaction for carbapenemase genes and molecular typing of all available strains was performed. Forty-two isolates were analysed, including three environmental samples identified during an outbreak. Thirty-five carbapenem-resistant S. marcescens carried bla KPC-2, one isolate was bla(NDM)-positive and four isolates carried bla(OXA)-101. The genomes were grouped into three clusters with 100% bootstrap; three patterns of mutations on ompC and ompF were found. The strains carried virulence genes related to invasion and haemolysis, and the environmental strains presented fewer mutations on the virulence genes than the clinical strains. Multi-variate analysis showed that previous use of polymyxin (P= 0.008) was an independent risk factor for carbapenem-resistant S. marcescens infection. This study highlighted that bla KPC-2 in association with ompC or ompF mutation was the most common mechanism of resistance in the study hospital, and that previous use of polymyxin was an independent risk factor for carbapenem-resistant S. marcescens. There was a predominant clone, including the environmental isolates, suggesting that crosstransmission was involved in the dissemination of this pathogen.
  • article 8 Citação(ões) na Scopus
    Colistin-resistant Escherichia coli belonging to different sequence types: genetic characterization of isolates responsible for colonization, community- and healthcare-acquired infections
    (2021) PAIVA, Yrving; NAGANO, Debora Satie; COTIA, Andre Luis Franco; GUIMARAES, Thais; MARTINS, Roberta Cristina Ruedas; PERDIGAO NETO, Lauro Vieira; CORTES, Marina Farrel; MARCHI, Ana Paula; CORSCADDEN, Louise; MACHADO, Anna Silva; PAULA, Alexandre Inacio de; FRANCO, Lucas Augusto Moyses; NEVES, Patricia Regina; LEVIN, Anna Sara; COSTA, Silvia Figueiredo
    The plasmid-mediated colistin-resistance gene named mcr-1 has been recently described in different countries and it became a public health challenge. Of note, few studies have addressed the spread of Escherichia coli harboring the mcr-1 gene in both, community and hospital settings. A total of seven colistin-resistant E. coli carrying mcr-1, collected from 2016 to 2018, from community (n=4), healthcare-acquired infections (n=2) and colonization (n=1) were identified in three high complexity hospitals in Sao Paulo, Brazil. These colistin-resistant isolates were screened for mcr genes by PCR and all strains were submitted to Whole Genome Sequencing and the conjugation experiment. The seven strains belonged to seven distinct sequence types (ST744, ST131, ST69, ST48, ST354, ST57, ST10), and they differ regarding the resistance profiles. Transference of mcr-1 by conjugation to E. coli strain C600 was possible in five of the seven isolates. The mcr-1 gene was found in plasmid types IncX4 or IncI2. Three of the isolates have ESBL-encoding genes (bla(CTX-M-2), n=2; bla(CTX-M-8), n=1). We hereby report genetically distinct E. coli isolates, belonging to seven STs, harboring the mcr-1 gene, associated to community and healthcare-acquired infections, and colonization in patients from three hospitals in Sao Paulo. These findings point out for the potential spread of plasmid-mediated colistin-resistance mechanism in E. coli strains in Brazil.
  • article 0 Citação(ões) na Scopus
    Neisseria gonorrhoeae arthritis in a patient with systemic lupus: resistance and virulence profiles
    (2023) TONACIO, Adriana Coracini; MARCHI, Ana Paula; BAZZO, Maria Luiza; LEMOS, Gabriela Takeshigue; BAMPI, Jose Victor Bortolotto; ESPINOZA, Evelyn Patricia Sanchez; DUARTE, Edson Luiz Tarsia; MARTINS, Roberta Cristina Ruedas; COSTA-LOURENCO, Ana Paula Ramalho da; OLIVEIRA, Vitor Falcao de; CORTES, Marina Farrel; SANTOS, Sania Alves dos; NETO, Lauro Vieira Perdigao; BONELLI, Raquel Regina; ELMORE, Maria Rita; ROSSI, Flavia; HUGHES, Gwenda; COSTA, Silvia Figueiredo
    In this study, we describe a case report of gonococcal arthritis in a Systemic Lupus Erythematosus patient. Although several mechanisms favor disseminated gonococcal infection (DGI) in patients immunosup-pressed by SLE, this association is rarely reported in literature. We performed whole genome sequencing (WGS) of the etiologic agent involved and molecular analysis using a global collection of Neisseria gonorrhoeae strains. Ours is the only sample derived from synovial fluid identified in this collection, the others being from the usual anatomical sites. Antimicrobial susceptibility was determined by disk diffusion and Etest, and WGS was conducted to determine multilocus sequence typing profiles, group isolates based on core genome single nucleotide polymorphisms (SNP), and identify virulence genes and antimicrobial resistance determinants. The N. gonorrhoeae samples in the global collection were highly heterogeneous. The SNP tree had a total 19,532 SNPs in 320 samples. Our sample displayed resistance to ciprofloxacin (MIC = 2 mg/mL) and tetracycline (zone diameter = 0 mm) belonged to ST 1588 and was not closely related to any isolate in the global collection of N. gonorrhoeae strains. The isolate had genetic features related to beta-lactam, tetracycline and quinolone resistance. Seventy-one virulence genes were identified in our sample, belonging to the following classes: adherence, efflux pump, immune modulator, invasion, iron uptake, protease and stress adaptation. Moreover, no virulence genes for immune evasion and toxin were identified.(c) 2022 Institut Pasteur.
  • article 5 Citação(ões) na Scopus
    Carbapenem-resistant Klebsiella pneumoniae colonization and infection is associated with lower overall survival in a cohort of haematopoietic stem-cell transplantation patients: mechanism of resistance and virulence by whole-genome sequencing
    (2021) HIGASHINO, Hermes Ryoiti; MARCHI, Ana Paula; MARTINS, Roberta Cristina Ruedas; CARVALHO, Laina Bubach; PERDIGAO NETO, Lauro Vieira; CORTES, Marina Farrel; OLIVEIRA, Fernando Nivaldo de; DUARTE, Edson Luiz Tarsia; GUIMARAES, Thais; ROSSI, Flavia; FERREIRA, Aliana M.; ROCHA, Vanderson; COSTA, Silvia Figueiredo
    Carbapenem-resistant Klebsiella pneumoniae (CRK) infections are a growing concern in immunocompromised patients. The aim of the present study was to evaluate the impact of CRK colonization and infection in overall mortality for haematopoietic stem-cell transplant (HSCT) patients. We also aimed to investigate resistance and virulence profiles of CRK isolates and assess their epidemiological and genetic relatedness. Patients in the HSCT unit were screened for colonization with CRK with weekly rectal swab or stool cultures and placed under contact precautions. We defined CRK colonization as positive culture from a swab or stool sample grown in MacConkey agar with meropenem at 1 mu g ml(-1). Demographic and clinical data were retrieved from the patients' charts and electronic records. According to resistance mechanisms and pulsed field gel electrophoresis profile, isolates were selected based on whole-genome sequencing (WGS) using MiSeq Illumina. Outcomes were defined as overall mortality (death up to D+100), and infection-related death (within 14 days of infection). We report a retrospective cohort of 569 haematopoietic stem-cell transplant patients with 105 (18.4 %) CRK colonizations and 30 (5.3 %) infections. blaKPC was the most frequent carbapenemase in our cohort with three isolates co-harbouring blaKPC and blaNDM. We found no difference in virulence profiles from the CRK isolates. There were also no significant differences in virulence profiles among colonization and infection isolates regarding genes encoding for type 1 and 3 fimbriae, siderophores, lipopolysaccharide and colibactin. In clonality analysis by PFGE and WGS, isolates were polyclonal and ST340 was the most prevalent. Overall survival at D+100 was 75.4% in in CRK-colonized (P=0.02) and 35.7 % in infected patients and significantly lower than non-colonized patients (85.8 %; P<0.001). We found a higher overall mortality associated with colonization and infection; KPC was the main resistance mechanism for carbapenems. The polyclonal distribution of isolates and findings of CRK infection in patients not previously colonized suggest the need to reinforce antibiotic stewardship.
  • article 1 Citação(ões) na Scopus
    Virulomic Analysis of Multidrug-Resistant Klebsiella pneumoniae Isolates and Experimental Virulence Model Using Danio rerio (Zebrafish)
    (2022) DUARTE, Edson Luiz Tarsia; RIZEK, Camila Fonseca; ESPINOZA, Evelyn Sanchez; MARCHI, Ana Paula; NOGUERA, Saidy Vasconez; CORTES, Marina Farrel; FERNANDES, Bianca H. Ventura; GUIMARAES, Thais; CARRILHO, Claudia M. D. de Maio; V, Lauro Perdigao Neto; TRINDADE, Priscila A.; COSTA, Silvia Figueiredo
    This study evaluates a possible correlation between multidrug-resistant Klebsiella pneumoniae strains and virulence markers in a Danio rerio (zebrafish) model. Whole-genome sequencing (WGS) was performed on 46 strains from three Brazilian hospitals. All of the isolates were colistin-resistant and harbored bla(KPC-2). Ten different sequence types (STs) were found; 63% belonged to CC258, 22% to ST340, and 11% to ST16. The virulence factors most frequently found were type 3 fimbriae, siderophores, capsule regulators, and RND efflux-pumps. Six strains were selected for a time-kill experiment in zebrafish embryos: infection by ST16 was associated with a significantly higher mortality rate when compared to non-ST16 strains (52% vs. 29%, p = 0.002). Among the STs, the distribution of virulence factors did not differ significantly except for ST23, which harbored a greater variety of factors than other STs but was not related to a higher mortality rate in zebrafish. Although several virulence factors are described in K. pneumoniae, our study found ST16 to be the only significant predictor of a virulent phenotype in an animal model. Further research is needed to fully understand the correlation between virulence and sequence types.
  • article 1 Citação(ões) na Scopus
    Genetic description of VanD phenotype vanA genotype in vancomycin-resistant Enterococcus faecium isolates from a Bone Marrow Transplantation Unit
    (2022) MARCHI, Ana Paula; PERDIGAO NETO, Lauro Vieira; CORTES, Marina Farrel; LIMA, Victor Augusto Camarinha de Castro; MARTINS, Roberta Cristina Ruedas; FRANCO, Lucas Augusto Moyses; ROSSI, Flavia; ROCHA, Vanderson; LEVIN, Anna S.; COSTA, Silvia Figueiredo
    Background Vancomycin-resistant Enterococcus faecium (VREfm) is an important agent of hospital-acquired infection. VanA phenotype is characterized by resistance to high levels of vancomycin and teicoplanin and is encoded by the vanA gene, whereas VanD phenotype is characterized by resistance to vancomycin and susceptibility or intermediate resistance to teicoplanin; however, some isolates carry a VanD phenotype with a vanA genotype, but there are many gaps in the knowledge about the genetic mechanisms behind this pattern. Objective To characterize the genetic structure, clonality, and mobile genetic elements of VRE isolates that display a VanD-vanA phenotype. Results All vanA VRE-fm isolates displayed minimum inhibitory concentration (MIC) for vancomycin > 32 mu g/mL and intermediate or susceptible MIC range for teicoplanin (8-16 mu g/mL). The isolates were not clonal, and whole-genome sequencing analysis showed that they belonged to five different STs (ST478, ST412, ST792, ST896, and ST1393). The absence of some van complex genes were observed in three isolates: Ef5 lacked vanY and vanZ, Ef2 lacked vanY, and Ef9 lacked orf1 and orf2; moreover, another three isolates had inverted positions of orf1, orf2, vanR, and vanS genes. IS1542 was observed in all isolates, whereas IS1216 in only five. Moreover, presence of other hypothetical protein-encoding genes located downstream the vanZ gene were observed in six isolates. Conclusion VRE isolates can display some phenotypes associated to vanA genotype, including VanA and VanB, as well as VanD; however, further studies are needed to understand the exact role of genetic variability, rearrangement of the transposon Tn1546, and presence of insertion elements in isolates with this profile.
  • article 1 Citação(ões) na Scopus
    Chlorhexidine susceptibility and Eagle effect in planktonic cells and biofilm of nosocomial isolates
    (2023) MARCHI, Ana Paula; CORTES, Marina Farrel; NOGUERA, Saidy Vasconez; ROSSI, Flavia; LEVIN, Anna Sara; COSTA, Silvia Figueiredo; NETO, Lauro Vieira Perdigao
    The aim of this study is to evaluate the chlorhexidine gluconate (CHG) susceptibility in both planktonic cells and biofilm of 32 Gram-negative (Gn) and 6 Gram-positive (Gp) isolates by minimal inhibitory concentration (2-256 mu g/mL for Gn and 2-32 mu g/mL for Gp), minimal bactericidal concentration (4-256 mu g/mL for Gn and 2-32 mu g/mL for Gp) in planktonic cells, and minimal biofilm elimination concentration (128 >= 16,384 mu g/mL in Gn and 32 >= 16,384 mu g/mL in Gp) in biofilm environment. Our study showed that Gn isolates have higher minimal concentrations than Gp and bacteria in biofilms are more tolerant than planktonic ones. No correlation between MBC or MBEC and biofilm formation was statistically confirmed. The Eagle effect, previously described for antimicrobials and antifungals, was evidenced in this work for CHG, an antiseptic. Besides that, the phenomenon was described in 23/38 isolates (60.5%), raising minimal concentration up to >= 16,384 mu g/mL. Our study showed that clinical isolates have a high ability to form biofilm allowing them to tolerate CHG concentrations as high as the ones used in clinical practice. Therefore, attention should be given to the occurrence of this phenomenon to avoid false susceptibility results.
  • article 0 Citação(ões) na Scopus
    Colonization by Extended-Spectrum β-Lactamase-Producing Enterobacterales and Bacteremia in Hematopoietic Stem Cell Transplant Recipients
    (2024) GONCALVES, Luiza Arcas; ANJOS, Beatriz Barbosa; TAVARES, Bruno Melo; MARCHI, Ana Paula; CORTES, Marina Farrel; HIGASHINO, Hermes Ryoiti; MORAES, Bruna del Guerra de Carvalho; BAMPI, Jose Victor Bortolotto; PINHEIRO, Liliane Dantas; SPADAO, Fernanda de Souza; ROCHA, Vanderson; GUIMARAES, Thais; COSTA, Silvia Figueiredo
    Background: Assessing the risk of multidrug-resistant colonization and infections is pivotal for optimizing empirical therapy in hematopoietic stem cell transplants (HSCTs). Limited data exist on extended-spectrum beta-lactamase-producing Enterobacterales (ESBL-E) colonization in this population. This study aimed to assess whether ESBL-E colonization constitutes a risk factor for ESBL-E bloodstream infection (BSI) and to evaluate ESBL-E colonization in HSCT recipients. Methods: A retrospective analysis of ESBL-E colonization and BSI in HSCT patients was conducted from August 2019 to June 2022. Weekly swabs were collected and cultured on chromogenic selective media, with PCR identifying the beta-lactamase genes. Pulsed-field gel electrophoresis (PFGE) and whole-genome sequencing (WGS) assessed the colonizing strains' similarities. Results: Of 222 evaluated HSCT patients, 59.45% were colonized by ESBL-E, with 48.4% at admission. The predominant beta-lactamase genes were blaTEM (52%) and blaSHV (20%). PFGE analysis did not reveal predominant clusters in 26 E. coli and 15 K. pneumoniae strains. WGS identified ST16 and ST11 as the predominant sequence types among K. pneumoniae. Thirty-three patients developed thirty-five Enterobacterales-BSIs, with nine being third-generation cephalosporin-resistant. No association was found between ESBL-E colonization and ESBL-BSI (p = 0.087). Conclusions: Although the patients presented a high colonization rate of ESBL-E upon admission, no association between colonization and infection were found. Thus, it seems that ESBL screening is not a useful strategy to assess risk factors and guide therapy for ESBL-BSI in HSCT-patients.