987 resultados para PULMONARY INFECTION


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Although cystic fibrosis pulmonary infection is polymicrobial, routine laboratory methods focus on the detection of a small number of known pathogens. Recently, the use of strict anaerobic culture techniques and molecular technologies have identified other potential pathogens including anaerobic bacteria. Determining the role of all bacteria in a complex bacterial community and how they interact is extremely important; individual bacteria may affect how the community develops, possess virulence factors, produce quorum-sensing signals, stimulate an immune response or transfer antibiotic resistance genes, which could all contribute to disease progression. There are many challenges to managing cystic fibrosis lung infection but as knowledge about the airway microbiome continues to increase, this may lead to advances in the therapeutic management of the disease. © 2011 Future Medicine Ltd.

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Background
Chronic Pseudomonas aeruginosa pulmonary infection is associated with a decline in lung function and reduced survival in people with Cystic Fibrosis (CF). Damaging inflammatory and immunological mediators released in the lungs can be used as markers of chronic infection, inflammation and lung tissue damage.

Methods
Clinical samples were collected from CF patients and healthy controls. Serum IgG and IgA anti-Pseudomonas antibodies, sputum IL-8 and TNFα, plasma IL-6 and urine TNFr1 were measured by ELISA. Sputum neutrophil elastase (NE), cathepsin S and cathepsin B were measured by spectrophotometric and fluorogenic assays. The relationship between IgG and IgA, inflammatory mediators and long-term survival was determined.

Results
IgG and IL-6 positively correlated with mortality. However, multivariate analysis demonstrated that after adjusting for FEV1, IgG was not independently related to mortality. A relationship was observed between IgG and IL-6, TNFα, TNFr1 and between IgA and IL8, cathepsin S and cathepsin B.

Conclusions
These data indicate that biomarkers of inflammation are not independent predictors of survival in people with CF.

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Pseudomonas aeruginosa is an important cause of pulmonary infection in cystic fibrosis (CF). Its correct identification ensures effective patient management and infection control strategies. However, little is known about how often CF sputum isolates are falsely identified as P. aeruginosa. We used P. aeruginosa-specific duplex real-time PCR assays to determine if 2,267 P. aeruginosa sputum isolates from 561 CF patients were correctly identified by 17 Australian clinical microbiology laboratories. Misidentified isolates underwent further phenotypic tests, amplified rRNA gene restriction analysis, and partial 16S rRNA gene sequence analysis. Participating laboratories were surveyed on how they identified P. aeruginosa from CF sputum. Overall, 2,214 (97.7%) isolates from 531 (94.7%) CF patients were correctly identified as P. aeruginosa. Further testing with the API 20NE kit correctly identified only 34 (59%) of the misidentified isolates. Twelve (40%) patients had previously grown the misidentified species in their sputum. Achromobacter xylosoxidans (n = 21), Stenotrophomonas maltophilia (n = 15), and Inquilinus limosus (n = 4) were the species most commonly misidentified as P. aeruginosa. Overall, there were very low rates of P. aeruginosa misidentification among isolates from a broad cross section of Australian CF patients. Additional improvements are possible by undertaking a culture history review, noting colonial morphology, and performing stringent oxidase, DNase, and colistin susceptibility testing for all presumptive P. aeruginosa isolates. Isolates exhibiting atypical phenotypic features should be evaluated further by additional phenotypic or genotypic identification techniques.

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Nontypable Haemophilus influenzae (NTHi) is a major cause of opportunistic respiratory tract disease, and initiates infection by colonizing the nasopharynx. Bacterial surface proteins play determining roles in the NTHi-airways interplay, but their specific and relative contribution to colonization and infection of the respiratory tract has not been addressed comprehensively. In this study, we focused on the ompP5 and hap genes, present in all H. influenzae genome sequenced isolates, and encoding the P5 and Hap surface proteins, respectively. We employed isogenic single and double mutants of the ompP5 and hap genes generated in the pathogenic strain NTHi375 to evaluate P5 and Hap contribution to biofilm growth under continuous flow, to NTHi adhesion, and invasion/phagocytosis on nasal, pharyngeal, bronchial, alveolar cultured epithelial cells and alveolar macrophages, and to NTHi murine pulmonary infection. We show that P5 is not required for bacterial biofilm growth, but it is involved in NTHi interplay with respiratory cells and in mouse lung infection. Mechanistically, P5NTHi375 is not a ligand for CEACAM1 or α5 integrin receptors. Hap involvement in NTHi375-host interaction was shown to be limited, despite promoting bacterial cell adhesion when expressed in H. influenzae RdKW20. We also show that Hap does not contribute to bacterial biofilm growth, and that its absence partially restores the deficiency in lung infection observed for the ΔompP5 mutant. Altogether, this work frames the relative importance of the P5 and Hap surface proteins in NTHi virulence.

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Nontypeable Haemophilus influenzae (NTHi) is a frequent commensal of the human nasopharynx that causes opportunistic infection in immunocompromised individuals. Existing evidence associates lipooligosaccharide (LOS) with disease, but the specific and relative contributions of NTHi LOS modifications to virulence properties of the bacterium have not been comprehensively addressed. Using NTHi strain 375, an isolate for which the detailed LOS structure has been determined, we compared systematically a set of isogenic mutant strains expressing sequentially truncated LOS. The relative contributions of 2-keto-3-deoxyoctulosonic acid, the triheptose inner core, oligosaccharide extensions on heptoses I and III, phosphorylcholine, digalactose, and sialic acid to NTHi resistance to antimicrobial peptides (AMP), self-aggregation, biofilm formation, cultured human respiratory epithelial infection, and murine pulmonary infection were assessed. We show that opsX, lgtF, lpsA, lic1, and lic2A contribute to bacterial resistance to AMP; lic1 is related to NTHi self-aggregation; lgtF, lic1, and siaB are involved in biofilm growth; opsX and lgtF participate in epithelial infection; and opsX, lgtF, and lpsA contribute to lung infection. Depending on the phenotype, the involvement of these LOS modifications occurs at different extents, independently or having an additive effect in combination. We discuss the relative contribution of LOS epitopes to NTHi virulence and frame a range of pathogenic traits in the context of infection.

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Actinobacillus pleuropneumoniae (App) est l’agent étiologique de la pleuropneumonie porcine, une infection pulmonaire contagieuse chez les porcs. Parmi les nombreux mécanismes de virulence retrouvés chez les bactéries, la formation de biofilms joue souvent un rôle important dans la pathogenèse. Il a été récemment démontré qu’App avait la capacité de former des biofilms in vitro. Dans notre laboratoire, la formation de biofilms par App a été évaluée en microplaques dans différents milieux de culture. Nous avons démontré que la souche de référence de sérotype 1 est capable de former des biofilms. Le but de ce travail est d’identifier des gènes impliqués dans la biosynthèse et dans la régulation de l’expression des biofilms chez App. L’objectif de cette étude était de générer une banque de mutants d’App 4074NalR à l’aide du transposon mini-Tn10. Cette banque de 1200 mutants a été criblée à l’aide du modèle in vitro de formation de biofilms en microplaques et en tubes : 24 mutants démontrant une formation de biofilms modifiée par rapport à la souche mère App 4074NalR ont été sélectionnés et identifiés, nous permettant ainsi de localiser le site d’insertion du transposon. Une analyse a permis d’identifier de nouveaux gènes impliqués dans la biosynthèse et dans la régulation de l’expression des biofilms chez App. Notre criblage a permis d’identifier 16 gènes connus impliqués dans la formation de biofilms chez App (hns) ou chez d’autres pathogènes (potD2, ptsI, tig and rpmF) mais également de nouveaux gènes impliqués dans la formation de biofilm (APL_0049, APL_0637 and APL_1572). Une caractérisation plus poussée de ces gènes nous permettra d’améliorer la compréhension des mécanismes impliqués dans la formation de biofilm chez App.

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Introdução A pneumonia hospitalar é a principal causa de morte dentre as infecções hospitalares. A prevalência de pneumonia hospitalar em Unidades de Tratamento Intensivo (UTI) varia de 10 a 65%, com taxas de mortalidade que podem variar de 24 a 76%. A pneumonia associada à ventilação mecânica (PAV) é um determinante de mortalidade independente em pacientes submetidos à ventilação mecânica. A adequação do tratamento empírico precoce parece ser fundamental no prognóstico. Os critérios atualmente estabelecidos para avaliar adequação do tratamento empírico utilizam parâmetros clínicos, escores de gravidade e, principalmente, a sensibilidade do germe causador da infecção aos antibióticos administrados. Estes resultados balizam a necessidade de possíveis modificações no esquema antimicrobiano. A possibilidade de utilizar a Procalcitonina (PCT), a Proteína-C Reativa (CRP) e o escore SOFA (Avaliação de Falência de Órgãos Relacionada a Sepse), como indicadores de resposta do paciente, comparando seu status no dia do início do tratamento antimicrobiano (D0) com a evolução destes indicadores no quarto dia de tratamento (D4) abre a possibilidade de comparar o paciente com ele próprio, independente da exuberância da expressão da resposta inflamatória que ele possa desenvolver. Os resultados desta cinética entre D0 e D4 podem ser preditivos de gravidade de infecção, de eficiência antimicrobiana, e possivelmente de sobrevivência ou mortalidade hospitalar nos pacientes com suspeita de PAV. Objetivos Determinar e comparar o valor prognóstico de sobrevivência da cinética da PCT, da CRP, dos escores clínicos CPIS (Escore Clínico de Infecção Pulmonar) e SOFA, e do APACHE II (Avaliação da Fisiologia Aguda e da Saúde Crônica) na PAV entre o diagnóstico e o quarto dia de tratamento, quando a adequação do tratamento é avaliada. Pacientes e Métodos Realizamos um estudo de coorte prospectivo observacional que avaliou 75 pacientes internados no Centro de Tratamento Intensivo clínico-cirúrgico de adultos do Hospital de Clínicas de Porto Alegre que desenvolveram PAV no período de outubro de 2003 a agosto de 2005. Os pacientes com suspeita clínica de PAV que se adequaram aos critérios de inclusão e exclusão do estudo foram os candidatos a participar. Os familiares ou representantes dos pacientes receberam esclarecimentos por escrito acerca dos exames a serem realizados, bem como dos objetivos gerais da pesquisa. Os que aceitaram participar do estudo assinaram o termo de Consentimento Informado. O projeto foi aprovado pelo Comitê de Ética em Pesquisa do Hospital de Clínicas de Porto Alegre. No dia do diagnóstico de PAV foram coletados aspirado traqueal quantitativo, hemoculturas e sangue para a realização de dosagens de PCT, CRP, hemograma, plaquetas, creatinina, bilirrubinas, gasometria arterial e radiografia de tórax, com o objetivo de calcular o CPIS e o escore SOFA. No terceiro dia de tratamento foram novamente coletados aspirados traqueais quantitativos e os demais exames para o cálculo do CPIS. No quarto dia foi coletado sangue para dosagens de PCT, CRP e para os demais exames necessários para o cálculo do SOFA. Os pacientes foram acompanhados por 28 dias após o diagnóstico de PAV, quando foram considerados sobreviventes. Todos os pacientes que morreram antes do vigésimo oitavo dia foram considerados não-sobreviventes. Resultados Os níveis de PCT foram mais baixos nos sobreviventes em D0 (p=0.003) e em D4 (p=0.001). Os níveis de CRP não foram diferentes em sobreviventes e nãosobreviventes em D0 (p=0.77) e em D4 (p=0.14). O CPIS não pode diferenciar sobreviventes de não-sobrevientes em D0 (p=0.32) e em D3 (p=0.45). ΔCPIS decrescente não foi correlacionado a sobrevivência (p=0.59), o mesmo ocorrendo com CPIS <6 em D3 (p=0.79). Pacientes que morreram antes de D4 não puderam ter sua cinética calculada e foram considerados casos perdidos. Variáveis incluídas no modelo de regressão logística univariável para sobrevivência foram idade, APACHE II, ΔSOFA decrescente, ΔPCT decrescente e ΔCRP decrescente. Sobrevivência foi diretamente correlacionada a ΔPCT decrescente com RC = 5.67 (1.78;18.03) p = 0.003, ΔCRP com RC = 3.78 (1.24;11.50) p = 0.02, ΔSOFA decrescente com RC = 3.08 (1.02;9.26) p = 0.05 e escore APACHE II com RC = 0.92 (0.86;0.99) p = 0.02. O modelo de regressão logística multivariável para sobrevivência incluiu todas as variáveis participantes da análise univariável. Somente ΔPCT decrescente com RC = 4.43 (1.08;18.18) p = 0.04 e ΔCRP com RC = 7.40 (1.58;34.73) p = 0.01 permaneceram significativos. A avaliação da cinética dos marcadores inflamatórios e a associação com sobrevida no estudo mostraram que: - Em 95,1% dos sobreviventes houve queda dos níveis de PCT ou de CRP. - Em 61% dos sobreviventes ambos os níveis de PCT e de CRP caíram. Apenas 4,9% dos sobreviventes tiveram níveis de PCT e CRP crescentes. Com relação aos não-sobreviventes, 78.9% tiveram pelo menos um dos dois marcadores ou ambos com níveis crescentes. Conclusão As cinéticas da PCT e da CRP, obtidas pelas dosagens de seus níveis no dia do diagnóstico e no 4º dia de tratamento, podem predizer sobrevivência em pacientes com PAV. A queda dos níveis de pelo menos um destes marcadores ou de ambos indica maior chance de sobrevivência.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Trata-se de paciente do sexo feminino, com 59 anos de idade, procedente de Itaporanga (SP), diabética e nefropata crônica, internada em virtude de surtos de pielonefnte e insuficiência renal aguda. Dentre outras medidas terapêuticas, recebeu transfusão de sangue. Cerca de dois dias após a última transfusão (sangue oriundo de doador, posteriormente identificado como chagásico) encontraram-se formas tripomastigotas de Trypanosoma cruzi em lâmina preparada para execução de hemograma. Iniciou-se tratamento com Benzonidazol. A paciente cursou para, pleuropneumonia e de secreção purulenta cirúrgica isolou-se Klebsiella spp. A septicemia conduziu a paciente ao êxito letal. Nenhuma lesão tecidual foi observada no miocárdio, no sistema nervoso central, adrenal ou nos demais órgãos examinados.

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Paracoccidioides brasiliensis is an important fungal pathogen. The disease it causes, paracoccidioidomycosis (PCM), ranges from localized pulmonary infection to systemic processes that endanger the life of the patient. Paracoccidioides brasiliensis adhesion to host tissues contributes to its virulence, but we know relatively little about molecules and the molecular mechanisms governing fungal adhesion to mammalian cells. Triosephosphate isomerase (TPI: EC 5.3.1.1) of P. brasiliensis (PbTPI) is a fungal antigen characterized by microsequencing of peptides. The protein, which is predominantly expressed in the yeast parasitic phase, localizes at the cell wall and in the cytoplasmic compartment. TPI and the respective polyclonal antibody produced against this protein inhibited the interaction of P. brasiliensis to in vitro cultured epithelial cells. TPI binds preferentially to laminin, as determined by peptide inhibition assays. Collectively, these results suggest that TPI is required for interactions between P. brasiliensis and extracellular matrix molecules such as laminin and that this interaction may play an important role in the fungal adherence and invasion of host cells.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Cardiopulmonary bypass (CPB) is often associated with renal dysfunction, as measured by plasma creatinine levels and hemodialysis rates. Aim. To compare creatinine clearance (CrCl), estimated with the Cockroft and Gault formula, between patients undergoing off-pump coronary artery bypass grafting (OPCAB) versus on-pump CABG (on-CAB). Material and methods. Between April 2008 and April 2009, 119 patients underwent coronary bypass graft surgery. Fifty-eight (58) of these patients underwent OPCAB while 61 had on-CAB. Creatinine clearance, plasma creatinine levels, and clinical outcome were compared between the groups. A creatinine clearance value of 50 mL/minute was accepted as the lowest limit of normal renal function. Results. There were two hospital deaths caused by sepses after pulmonary infection. Creatinine clearance (Preoperative OPCAB 73,64±33,72 x on-CAB 75,70±34,30mL/min; discharge OPCAB 75,73±35,07 x on-CAB 79,07±34,71 mL/ min; p=0,609), and creatinine levels (Preoperative OPCAB 1,04±0,38 x on-CAB 1,13±0,53 mg/dL; discharge OPCAB 1,12±0,79 x on-CAB 1,04±0,29mg/dL; p=0,407) did not show statistically inter-group differences. Conclusion. Deterioration in renal function is associated with higher rates of postoperative complications. No significant difference in CrCl could be demonstrated between the groups.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Regulatory T (Treg) cells are fundamental in the control of immunity and excessive tissue pathology. In paracoccidioidomycosis, an endemic mycosis of Latin America, the immunoregulatory mechanisms that control the progressive and regressive forms of this infection are poorly known. Due to its modulatory activity on Treg cells, we investigated the effects of anti-CD25 treatment over the course of pulmonary infection in resistant (A/J) and susceptible (B10.A) mice infected with Paracoccidioides brasiliensis. We verified that the resistant A/J mice developed higher numbers and more potent Treg cells than susceptible B10.A mice. Compared to B10.A cells, the CD4(+)CD25(+)Foxp3(+) Treg cells of A/J mice expressed higher levels of CD25, CTLA4, GITR, Foxp3, LAP and intracellular IL-10 and TGF-beta. In both resistant and susceptible mice, anti-CD25 treatment decreased the CD4(+)CD25(+)Foxp3(+) Treg cell number, impaired indoleamine 2,3-dioxygenase expression and resulted in decreased fungal loads in the lungs, liver and spleen. In A/J mice, anti-CD25 treatment led to an early increase in T cell immunity, demonstrated by the augmented influx of activated CD4(+) and CD8(+) T cells, macrophages and dendritic cells to the lungs. At a later phase, the mild infection was associated with decreased inflammatory reactions and increased Th1/Th2/Th17 cytokine production. In B10.A mice, anti-CD25 treatment did not alter the inflammatory reactions but increased the fungicidal mechanisms and late secretion of Th1/Th2/Th17 cytokines. Importantly, in both mouse strains, the early depletion of CD25(+) cells resulted in less severe tissue pathology and abolished the enhanced mortality observed in susceptible mice. In conclusion, this study is the first to demonstrate that anti-CD25 treatment is beneficial to the progressive and regressive forms of paracoccidioidomycosis, potentially due to the anti-CD25-mediated reduction of Treg cells, as these cells have suppressive effects on the early T cell response in resistant mice and the clearance mechanisms of fungal cells in susceptible mice.