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1.
Braz. j. biol ; 82: 1-9, 2022. graf, ilus, tab
Article in English | LILACS, VETINDEX | ID: biblio-1468466

ABSTRACT

Background: Pseudomonas aeruginosa is a common opportunistic pathogenic bacterium with the ability to develop a strong communication pathway by quorum sensing system and different virulent factors. Among the various important secretions of P. aeruginosa rhamnolipid is important biological detergent, believed to be involved in the development of the biofilm and intercellular communication. It readily dissolves the lung surfactants that are then easily catalyzed by the phospholipases and in this way is involved in the acute pulmonary infection. Objective: research work was designed to investigate virulence and gene associated with virulence in P. aeruginosa responsible for pulmonary infections. Methods: In current study polymerase chain reaction (PCR) was used for the detection of the rhlR (rhamnolipid encoding) gene of isolated strains. A number of assays were performed that ensured its virulent behavior. Disc diffusion method was used to check its antibiotic resistance. Isolated strains were resistant to a number of antibiotics applied. Result: It was found that males are more prone to respiratory infections as compared to females. Male members with age of 44-58 and 59-73 are at a higher risk, while females with age of 44-58 are also at a risk of pulmonary infections. Antibiotic resistance was observed by measuringzone of inhibition in strains GCU-SG-M4, GCU-SG-M3, GCU-SG-M5, GCU-SG-M2, GCU-SG-M1 and GCU-SG-M6. GCU-SG-M2 was resistant to fluconazole (FLU), clarithromycin (CLR), cefixime (CFM) and Penicillin (P10). No zone of inhibition was observed. But it showed unusual diffused zone around the Ak and MEM antibiotic discs. rhl R gene and 16s rRNA gene were characterized and analyzed. Conclusion: Findings from current study would help[...].


Antecedentes: Pseudomonas aeruginosa é uma bactéria patogênica oportunista comum, com a capacidade de desenvolver uma forte via de comunicação pelo sistema de detecção de quorum e diferentes fatores virulentos. Entre as várias secreções importantes de P. aeruginosa rhamnolipid, há um importante detergente biológico, que se acredita estar envolvido no desenvolvimento do biofilme e na comunicação intercelular. Dissolve rapidamente os surfactantes pulmonares que são facilmente catalisados pelas fosfolipases e, dessa maneira, estão envolvidos na infecção pulmonar aguda. Objetivo: O trabalho de pesquisa foi desenhado para investigar a virulência e o gene associado à virulência em P. aeruginosa responsável por infecções pulmonares. Métodos: No presente estudo, a reação em cadeia da polimerase (PCR) foi utilizada para a detecção do gene rhlR (codificação ramnolipídeo) de cepas isoladas. Foram realizados vários ensaios que garantiram seu comportamento virulento. O método de difusão em disco foi utilizado para verificar sua resistência a antibióticos. As estirpes isoladas foram resistentes a vários antibióticos aplicados. Resultado: Verificou-se que os homens são mais propensos a infecções respiratórias em comparação às mulheres. Membros do sexo masculino com idade entre 44 e 58 e 59 e 73 anos correm maior risco, enquanto mulheres com idade entre 44 e 58 anos também correm risco de infecções pulmonares. A resistência aos antibióticos foi observada medindo a zona de inibição nas cepas GCU-SG-M4, GCU-SG-M3, GCU-SG-M5, GCU-SG-M2, GCU-SG-M1 e GCU-SG-M6. O GCU-SG-M2 foi resistente ao fluconazol (FLU), claritromicina (CLR), cefixima (CFM) e penicilina (P10). Nenhuma zona de inibição foi observada. Mas se notou uma zona difusa incomum ao redor dos discos antibióticos Ak e MEM. Os genes rhl R e 16s rRNA foram caracterizados e analisados. Conclusão: As conclusões do presente estudo ajudariam a aumentar a conscientização sobre a resistência a antibióticos de, [...].


Subject(s)
Humans , Sputum , Drug Resistance, Bacterial , Risk Factors , Pseudomonas Infections/pathology , Pseudomonas Infections/blood , Pseudomonas aeruginosa/genetics , Pseudomonas aeruginosa/virology , Respiratory System , In Vitro Techniques
2.
Braz. j. biol ; 82: 1-6, 2022. graf
Article in English | LILACS, VETINDEX | ID: biblio-1468537

ABSTRACT

The effects of Calcium (Ca+²) on virulence and some parameters should be analyzed in this study. Pseudomonas aeruginosa Gram (-) and Bacillus cereus Gram (+) were used. Both bacteria are soil bacteria. In this study; the effect of Ca+² on protease, amylase, LasB elastolytic assay, H2O2, pyorubin and biofilm on metabolites of these bacteria were investigated during 24 hour time. In this study, the effect of Ca+² on the production of some secondary metabolites on P. aeruginosa and B. cereus was investigated and presented for the first time by us.


Os efeitos do cálcio (Ca+²) na virulência e alguns parâmetros devem ser analisados neste estudo. Pseudomonas aeruginosa Gram (-) e Bacillus cereus Gram (+) foram usados. Ambas as bactérias são bactérias do solo. Neste estudo, o efeito do Ca+² sobre a protease, amilase, ensaio elastolítico LasB, H2O2, piorubina e biofilme nos metabólitos dessas bactérias foram investigados durante 24 horas. Neste estudo, o efeito do Ca+² na produção de alguns metabólitos secundários em P. aeruginosa e B. cereus foi investigado e apresentado pela primeira vez por nós.


Subject(s)
Bacillus cereus/enzymology , Bacillus cereus/chemistry , Bacillus cereus/virology , Calcium/analysis , Pseudomonas aeruginosa/enzymology , Pseudomonas aeruginosa/chemistry , Pseudomonas aeruginosa/virology
3.
Braz. arch. biol. technol ; 62: e19180503, 2019. graf
Article in English | LILACS | ID: biblio-1011535

ABSTRACT

Abstract In this review, we explore some aspects of Pseudomonas aeruginosa virulence factors that are related to disease development in healthy organisms and resistance to antibiotics. This pathogen is one of the most clinically and epidemiologically important bacteria in Brazil, being the major cause of opportunistic infections. Among the virulence factors, biofilm formation acting of manner different in the organism. Furthermore, we review several P. aeruginosa genes that act in antimicrobial resistance, such as β-lactamases against β-lactamers. The resistance to pied-lactamases in P. aeruginosa is associated to resistance to the broad-spectrum cephalosporin. On the other hand, there is a group of synthetic broad-spectrum antibiotics acting on DNA synthesis is the quinolones that destroy the microorganism. We also explore the occurence of super bacterium: P. aerufinosa carrying genes blaKPC and blaNDM, which are associated with patient death above the average of other bacterial infections in hospitals. Those genes encode carbapenemases that can potentially hydrolyse all β-lactam antibiotics


Subject(s)
Pseudomonas aeruginosa/virology , Virulence Factors , beta-Lactamases/physiology , Biofilms , Anti-Infective Agents
4.
Braz. j. med. biol. res ; 46(8): 689-695, ago. 2013. tab, graf
Article in English | LILACS | ID: lil-684530

ABSTRACT

Some clinical isolates of Pseudomonas aeruginosa stored in our culture collection did not grow or grew poorly and showed lysis on the culture plates when removed from the collection and inoculated on MacConkey agar. One hypothesis was that bacteriophages had infected and killed those clinical isolates. To check the best storage conditions to maintain viable P. aeruginosa for a longer time, clinical isolates were stored at various temperatures and were grown monthly. We investigated the presence of phage in 10 clinical isolates of P. aeruginosa stored in our culture collection. Four strains of P. aeruginosa were infected by phages that were characterized by electron microscopy and isolated to assess their ability to infect. The best condition to maintain the viability of the strains during storage was in water at room temperature. Three Siphoviridae and two Myoviridae phages were visualized and characterized by morphology. We confirmed the presence of bacteriophages infecting clinical isolates, and their ability to infect and lyse alternative hosts. Strain PAO1, however, did not show lysis to any phage. Mucoid and multidrug resistant strains of P. aeruginosa showed lysis to 50% of the phages tested.


Subject(s)
Humans , Bacteriolysis/physiology , Bacteriophages/isolation & purification , Pseudomonas aeruginosa/virology , Bacteriological Techniques , Biological Specimen Banks , Bacteriophages/ultrastructure , Culture Media , Drug Resistance, Multiple, Bacterial , Microscopy, Electron , Myoviridae/isolation & purification , Pseudomonas aeruginosa/classification , Pseudomonas aeruginosa/isolation & purification , Siphoviridae/isolation & purification , Viral Plaque Assay , Virulence
5.
Rio de Janeiro; s.n; 2011. 109 p. ilus, graf.
Thesis in Portuguese | LILACS | ID: lil-619454

ABSTRACT

Pseudomonas aeruginosa é um importante agente de pneumonia, particularmente em pacientes submetidos à ventilação mecânica, que pode evoluir para sepse, com elevadas taxas de letalidade. Na sepse, o processo inflamatório sistêmico exacerbado favorece o desequilíbrio entre as vias de coagulação e fibrinólise e a instalação de um estado pró-coagulante, com o aparecimento de trombose microvascular, coagulação intravascular disseminada e falência de múltiplos órgãos. Conhecendo a potente atividade pró-inflamatória da toxina ExoU produzida por P. aeruginosa, decorrente de sua atividade fosfolipásica A2, o objetivo desta tese foi investigar seu potencial de indução de alterações hemostáticas relacionadas à patogênese da sepse. Utilizando modelo de sepse em camundongos inoculados, por via intratraqueal, com suspensões de P. aeruginosa produtora de ExoU (PA103) ou de cepa com deleção do gene exoU, não produtora da toxina, foi mostrado que ExoU determinou maior gravidade da infecção, maior taxa de letalidade, leucopenia, trombocitose, hiperpermeabilidade vascular e transudação plasmática, evidenciadas, respectivamente, pela maior concentração de proteínas nos lavados broncoalveolares (LBAs) e acúmulo do corante Azul de Evans, previamente inoculado nos animais, por via endovenosa, no parênquima renal. ExoU favoreceu, também, a ativação plaquetária, confirmada pela maior concentração de plaquetas expressando P-seletina em sua supefície, maior número de micropartículas derivadas de plaquetas e maior concentração plasmática de tromboxano A2. A histopatologia dos pulmões e rins dos animais infectados com PA103 confirmou a formação de microtrombos, que não foram detectados nos animais controles ou infectados com a cepa mutante. Nos pulmões, a produção de ExoU determinou intensa resposta inflamatória com maior concentração de leucócitos totais e polimorfonucleados, interleucina-6 e fator de necrose tumoral-alfa nos LBAs. A análise imunohistoquímica mostrou intensa deposição...


Pseudomonas aeruginosa is an important agent of pneumonia, mainly in patients undergoing mechanical ventilation, which can progress to sepsis with high mortality rates. In sepsis, the systemic inflammatory process favors exacerbated imbalance between the coagulation and fibrinolysis pathways and the installation of a procoagulant state, leading to microvascular thrombosis, disseminated intravascular coagulation and multiple organ failure. Knowing the powerful proinflammatory activity of the P. aeruginosa toxin ExoU, secondary to its phospholipase A2 activity, the goal of this study was to investigate the ExoU potential to induce hemostatic changes related to sepsis pathogenesis. By using a murine model of pneumosepsis, obtained by the intratracheal injection of suspensions of the ExoU-producing PA103 P. aeruginosa strain or of its isogenic mutant PA103 exoU, defective in the toxin synthesis, ExoU was shown to enhance the severity of the infection and to induce higher mice mortality rate as well as leukopenia, thrombocytosis, vascular hyperpermeability and plasma transudation, evidenced, respectively, by the higher protein concentration in the bronchoalveolar lavage fluids (BALF) and accumulation of Evans blue dye, previously intravenous infectioned, in mice renal parenchyma. ExoU also favored platelet activation, evidenced by the higher concentration of platelets expressing P-selectin on their surface, greater number of platelet-derived microparticles and increased plasma concentration of thromboxane A2. Histopathology of the lungs and kidneys of PA103 - infected animals confirmed the formation of microthrombi, which were not detected in controls or in animals infected with the bacterial mutant. In lungs, ExoU induced an intense inflammatory response with high concentrations of total and polymorphonuclear leukocytes, interleukin-6 and tumor necrosis factor-alfa in mice BALF. Immunohistochemical analysis showed intense fibrin deposition in the alveoli...


Subject(s)
Humans , Animals , Male , Female , Mice , Blood Coagulation , Platelet Activating Factor/antagonists & inhibitors , Platelet Activating Factor/metabolism , Pseudomonas Infections/complications , Pseudomonas Infections/blood , Plasminogen Activator Inhibitor 1/blood , Bacterial Proteins/metabolism , Pseudomonas aeruginosa/metabolism , Pseudomonas aeruginosa/virology , Sepsis/blood , Platelet Activation , Pneumonia, Bacterial/blood , Sepsis/etiology
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