276 resultados para nontuberculous mycobacteria


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Nos últimos anos tem sido observado um aumento de relatos de infecções associadas às micobactérias não tuberculosas (MNT). No entanto, o conhecimento da frequência e as espécies envolvidas nas infecções pulmonares no Brasil são limitados. Neste trabalho foi avaliada a ocorrência de espécies de MNT isoladas no Laboratório de Micobactérias do Instituto Evandro Chagas, Laboratório de Regional de Saúde Pública da Região Norte. Foram analisadas todas as MNT isoladas de espécimes clínicos pulmonares e não pulmonares de indivíduos com infecção, de acordo com os critérios da American Thoracic Society e Ministério da Saúde entre os anos de 2004 a 2007. As MNT foram caracterizadas por PCR-restriction analysis (PRA-hsp65) e sequenciamento dos genes do RNAr 16S, hsp65, rpoB. Foram identificados 51 indivíduos com infecção pulmonar, sendo as seguintes MNT envolvidas: M. abscessus (n=2), M. bolletii (n=4), M. massiliense (n=9), M. avium (n=5), M. colombiense (n=5), M. fortuitum (n=4), M. simiae (n=2), M. interjectum (n=4), M. intracellulare (n=5), M. kansasii (n=1), M. scrofulaceum (n=1) e M. terrae (n=1). Em oito indivíduos foram isoladas MNT não identificadas ao nível de espécie, podendo representar nova entidade taxonômica pertencente ao complexo M.simiae. O presente estudo descreveu a diversidade de MNT isoladas de espécimes clínicos pulmonares no estado do Pará, Região Amazônica Brasileira. O achado de casos infecções pulmonares diagnosticados e tratados sem sucesso por vários meses como tuberculose apontam para a necessidade de isolamento e identificação da micobactéria envolvida antes estabelecimento de falência terapêutica.

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Nos últimos anos tem sido observado um aumento de relatos de infecções causadas por micobactérias não tuberculosas (MNT). No entanto, dados sobre frequência e espécies envolvidas em infecções pulmonares no Brasil são limitados, principalmente em estados da Região Norte do Brasil. O conhecimento das espécies de MNT associadas às infecções pulmonares tem importância clínica e epidemiológica, sendo as técnicas moleculares ferramentas capazes de oferecer um diagnóstico espécie-específico, o qual é necessário para a instituição de terapia adequada. O presente trabalho descreve a diversidade de MNT isoladas de espécimes pulmonares encaminhados ao Instituto Evandro Chagas entre 1999 e 2011 para pesquisa de micobactérias. As MNT foram inicialmente caracterizadas por PCR-restriction analysis (PRA-hsp65) e reidentificadas por sequenciamento dos genes RNAr 16S, hsp65, rpoB e região ITS1. De acordo com os achados, o método de PRA-hsp65 mostrou-se uma ferramenta prática para identificação MNT, permitindo a distinção de uma grande variedade de espécies de forma rápida, simples e barata, em comparação com o sequenciamento. Além disso, como sugerido no presente estudo, de acordo com a diversidade de espécies local, este método pode ser passível de modificações para proporcionar maior poder discriminatório. Para isolados do complexo Mycobacterium avium (MAC), a aplicação da análise de sequência do gene rpoB não se mostrou como alternativa adequada para discriminação de isolados do Estado do Pará, gerando resultados discrepantes com baixa resolução taxonômica. Um espectro particular de MNT foi associado aos casos de infecção pulmonar na região, representado principalmente por espécies dos complexos M. chelonae-M. abscessus (M. abscessus, M. massiliense e M. bolletii), M. avium (M. avium, M. intracellulare e M. colombiense) e M. simiae (M. simiae e taxa não nomeados). Dentre esse último, duas potenciais espécies foram detectadas, M. paraensis sp. nov. e M. amazoniensis sp. nov., sendo propostas como novos membros do complexo M. simiae. Entre os indivíduos afetados, as principais características encontradas foram sexo feminino, a idade superior a 50 anos, etnia parda e história de infecção prévia por tuberculose. Embora este estudo não demonstre a real magnitude de infecções pulmonares por MNT no Estado do Pará, ele descreve a diversidade de espécies e claramente retrata a importância desse grupo na região, chegando a representar 13,5% dos isolamentos micobacterianos em um laboratório de referência. Conjuntamente a esse achado, a identificação de casos de MNT em indivíduos presuntivamente diagnosticados com TB, indica a necessidade de confirmação bacteriológica, especialmente nos casos de resistência primária ao esquema básico da tuberculose.

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As micobactérias não tuberculosas (MNT) estão amplamente presentes no ambiente, tendo sido isoladas em águas naturais, sistemas de distribuição de água, solo e animais. Caracterizam-se pela presença de ácido micólico na parede celular. Em geral, são adquiridas através de inalação de gotículas de água contendo micobactérias. Podem causar formas variadas de doença como linfadenite, pulmonar, cutânea e disseminada. São patógenos oportunistas, com patogenicidade variável, que requerem defeitos na imunidade local ou sistêmica, congênitos ou adquiridos para causar doenças em humanos. Foram avaliados aspectos epidemiológicos, clínicos e radiológicos de 44 casos de micobacteriose não tuberculosa na forma pulmonar no Hospital João de Barros Barreto (HUJBB) através de estudo retrospectivo e foram tratados e acompanhados 21/44 (47,7%) pacientes durante um período de seis a dezessete meses através de estudo do tipo coorte prospectivo. Os dados mostraram um incremento de mais de 100% no número de casos a partir do ano de 2010 em relação aos anos anteriores no HUJBB. As micobactérias mais isoladas foram M. intracellulare (22,7%) e M. massiliense (20,5%). As condições mais frequentemente associadas à doença incluíram tratamento prévio para tuberculose (93,2%), bronquiectasias (59%), HIV (11,4%), asma (9,1%) e doença pulmonar obstrutiva crônica (9,1%). Não foram observadas diferenças nos aspectos radiológicos entre as espécies, exceto na análise das radiografias de tórax, onde atelectasias foram mais frequentes nos grupo M. massiliense do que no grupo de M. abscessus. A resposta ao tratamento de acordo com a análise das culturas para micobactérias mostrou que em 58,8% dos casos ocorreu negativação, persistência da positividade em 11,7% e positividade após negativação inicial em 11,7%. Durante o período de acompanhamento, a taxa de óbito foi de 17,7%. Os dados sugerem que a forma pulmonar da micobacteriose não tuberculosa tem se tornado uma doença com importância cada vez maior em nossa região. Adicionalmente, a resposta ao tratamento tem sido bastante satisfatória quando comparada à literatura. Entretanto, é necessário um seguimento desses pacientes por período mais prolongado para estabelecer o real desfecho da nossa abordagem terapêutica.

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Abstract Background Identification of nontuberculous mycobacteria (NTM) based on phenotypic tests is time-consuming, labor-intensive, expensive and often provides erroneous or inconclusive results. In the molecular method referred to as PRA-hsp65, a fragment of the hsp65 gene is amplified by PCR and then analyzed by restriction digest; this rapid approach offers the promise of accurate, cost-effective species identification. The aim of this study was to determine whether species identification of NTM using PRA-hsp65 is sufficiently reliable to serve as the routine methodology in a reference laboratory. Results A total of 434 NTM isolates were obtained from 5019 cultures submitted to the Institute Adolpho Lutz, Sao Paulo Brazil, between January 2000 and January 2001. Species identification was performed for all isolates using conventional phenotypic methods and PRA-hsp65. For isolates for which these methods gave discordant results, definitive species identification was obtained by sequencing a 441 bp fragment of hsp65. Phenotypic evaluation and PRA-hsp65 were concordant for 321 (74%) isolates. These assignments were presumed to be correct. For the remaining 113 discordant isolates, definitive identification was based on sequencing a 441 bp fragment of hsp65. PRA-hsp65 identified 30 isolates with hsp65 alleles representing 13 previously unreported PRA-hsp65 patterns. Overall, species identification by PRA-hsp65 was significantly more accurate than by phenotype methods (392 (90.3%) vs. 338 (77.9%), respectively; p < .0001, Fisher's test). Among the 333 isolates representing the most common pathogenic species, PRA-hsp65 provided an incorrect result for only 1.2%. Conclusion PRA-hsp65 is a rapid and highly reliable method and deserves consideration by any clinical microbiology laboratory charged with performing species identification of NTM.

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PURPOSE OF REVIEW: Therapeutic inhibition of tumour necrosis factor-alpha strongly increases the risk of reactivation in latent tuberculosis infection. Recent blood tests based on antigen-specific T cell response and measuring production of interferon-gamma, so called interferon-gamma release assays (IGRAs), are promising novel tools to identify infected patients. The performance of diagnostic testing for latent tuberculosis infection in patients with rheumatic diseases will be discussed. RECENT FINDINGS: In patients with rheumatoid arthritis, IGRAs are more sensitive and more specific than traditional tuberculin skin testing. They are unaffected by Bacillus-Calmette-Guérin vaccination and most nontuberculous mycobacteria. Most comparative studies show a better performance of the IGRAs than tuberculin skin testing in terms of a higher specificity. The rate of indeterminate results may be affected by glucocorticoids and the underlying disease but appears independent of disease-modifying antirheumatic drugs. Despite using identical Mycobacterium tuberculosis antigens, the two commercially available tests show differences in clinical performance. SUMMARY: The current information about the performance of the tuberculin skin testing and the IGRAs in the detection of latent tuberculosis infection in patients with rheumatic diseases strongly suggest a clinically relevant advantage of the IGRAs. Their use will help to reduce overuse and underuse of preventive treatment in tumour necrosis factor inhibition.

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Healthcare-associated infections (HAI) are a major public health problem being Klebsiella pneumoniae and nontuberculous mycobacteria, both with high antibiotic resistance rates, among their etiological agent. Since biofilme assembly is pointed as one of the mechanisms involved in emergence of antibiotic resistance understanding bacteria organization within the biofilm and the identification of differences between planktonic and sessile forms of bacteria will be a step forward to fight HAI. In the present work we used SEM as a tool to characterize the internal structure of biofilm assembled on different surfaces. For SEM analysis, biofilms were allowed to form either on six-well cell culture plates, silicon or metallic disks placed inside the wells for different incubation periods at 37 °C. The biofilm assembled on the cell culture dish was for both secondary and backscattered electron analysis as described before. Biofilms assembled on silicon disks instead of being sectioned were prepared as metallographic samples, by grinding with grit SIC paper and polishing with diamond particles. Samples were cleaned (70% ethanol), dried with hot air, further coated and analysed. A preliminary study using FIB-SEM has been performed to access the ultrastructure of biofilms assembled on metallic surfaces. The results obtained showed that the same bacteria assembled biofilms with different ratios of biomass and extracellular matrix depending on the surface. SEM performed on thin sections of biofilms is a powerful tool to elucidate biofilm structure allowing the quantification of the major components. FIB-SEM is also a promising tool in this field.

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The prevalence of Mycobacterium bovis and other mycobacterial species in livestock specimens and milk was evaluated. An emphasis was placed upon the distribution of these organisms in milk that is readily available to the public that was either untreated, pasteurized, or treated using ultra high temperature. Twenty-two pathologic specimens from livestock (bovine, swine and bubaline) in five Brazilian states and 128 bovine milk samples from retail markets in the State of São Paulo were examined for mycobacteria. Identification was made by classical biochemical tests, thin layer chromatography of mycolic acids and polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) analysis. Mycobacteria were isolated from 15 (68.2%) caseous lesions and from 23 (18%) milk samples. Eleven isolates were identified as M. bovis, and the remaining 27 nontuberculous mycobacterial isolates were represented by five species and six unidentified rapidly growing mycobacterial strains. The data demonstrate that animal products in Brazil are frequent reservoirs of mycobacteria and may pose a risk to the public.

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Deoxyribonucleic acid modification in six strains of mycobacteria was investigated. The presence of 5-methylcytosine in the virulent strain Mycobacterium tuberculosis H37Rv and its absence in the avirulent strain M. tuberculosis H37Ra and other saprophytic, fast-growing mycobacteria appear to be the salient features. However, deoxyribonucleic acid from M. smegmatis SN2 lysogenized with the temperature phage I3 showed the presence of 5-methylcytosine. All of the strains had N6-methyladenine.

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Transduction of resistance to isoniazid and streptomycin as well as susceptibility to isoniazid in Mycobacterium smegmatis SN2 has been demonstrated. A method has been described for the selection of isoniazid-susceptible variants after transduction of susceptibility.

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In vitro transcription analysis is important to understand the mechanism of transcription. Various assays for the analysis of initiation, elongation and termination form the basis for better understanding of the process. Purified RNA polymerase (RNAP) with high specific activity is necessary to carry out variety of these specific reactions. The RNAP purified from Mycobacterium smegmatis from exponential phase showed low promoter specificity in promoter-polymerase interaction studies. This is due to the presence of a large number of sigma factors during exponential phase and under-representation of sigma(A) required for house-keeping transcription. We describe an in vivo reconstitution of RNAP holoenzyme with sigma(A) and its purification, which resulted in holoenzyme with stoichiometric sigma(A) content. The reconstituted holoenzyme showed enhanced promoter-specific binding and promoter-specific-transcription activity compared to the enzyme isolated using standard procedure. Such in vivo reconstitution of stoichiometric holoenzyme could facilitate promoter-specific transcription assays, especially in organisms which encode a large number of sigma factors.

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Single-stranded DNA-binding proteins (SSB) play an important role in most aspects of DNA metabolism including DNA replication, repair, and recombination. We report here the identification and characterization of SSB proteins of Mycobacterium smegmatis and Mycobacterium tuberculosis. Sequence comparison of M. smegmatis SSB revealed that it is homologous to M. tuberculosis SSB, except for a small spacer connecting the larger amino-terminal domain with the extreme carboxyl-terminal tail. The purified SSB proteins of mycobacteria bound single-stranded DNA with high affinity, and the association and dissociation constants were similar to that of the prototype SSB. The proteolytic signatures of free and bound forms of SSB proteins disclosed that DNA binding was associated with structural changes at the carboxyl-terminal domain. Significantly, SSB proteins from mycobacteria displayed high affinity for cognate RecA, whereas Escherichia coli SSB did not under comparable experimental conditions. Accordingly, SSB and RecA were coimmunoprecipitated from cell lysates, further supporting an interaction between these proteins in vivo. The carboxyl-terminal domain of M. smegmatis SSB, which is not essential for interaction with ssDNA, is the site of binding of its cognate RecA. These studies provide the first evidence for stable association of eubacterial SSB proteins with their cognate RecA, suggesting that these two proteins might function together during DNA repair and/or recombination.

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To gain insights into inefficient allele exchange in mycobacteria, we compared homologous pairing and strand exchange reactions promoted by RecA protein of Mycobacterium tuberculosis to those of Escherichia coli RecA protein. The extent of single-stranded binding protein (SSB)-stimulated formation of joint molecules by MtRecA was similar to that of EcRecA over a wide range of pH values. In contrast, strand exchange promoted by MtRecA was inhibited around neutral pH due to the formation of DNA networks. At higher pH, MtRecA was able to overcome this constraint and, consequently, displayed optimal strand exchange activity. Order of addition experiments suggested that SSB, when added after MtRecA, was vital for strand exchange. Significantly, with shorter duplex DNA, MtRecA promoted efficient strand exchange without network formation in a pH-independent fashion. Increase in the length of duplex DNA led to incomplete strand exchange with concomitant rise in the formation of intermediates and networks in a pH-dependent manner. Treatment of purified networks with S1 nuclease liberated linear duplex DNA and products, consistent with a model in which the networks are formed by the invasion of hybrid DNA by the displaced linear single-stranded DNA. Titration of strand exchange reactions with ATP or salt distinguished a condition under which the formation of networks was blocked, but strand exchange was not significantly affected. We discuss how these results relate to inefficient allele exchange in mycobacteria.

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Oxidative damage to DNA results in the occurrence of 7,8-dihydro-B-oxoguanine (8-oxoG) in the genome. In eubacteria, repair of such damage is initiated by two major base-excision repair enzymes, MutM and MutY. We generated a MutY-deficient strain of Mycobacterium smegmatis to investigate the role of this enzyme in DNA repair. The MutY deficiency in M. smegmatis did not result in either a noteworthy susceptibility to oxidative stress or an increase in the mutation rate. However, rifampicin resistant isolates of the MutY-deficient strain showed distinct mutations in the rifampicin-resistance-determining region of rpoB. Besides the expected C to A (or G to T) mutations, an increase in A to C (or T to G) mutations was also observed. Biochemical characterization of mycobacterial MutY (M. smegmatis and M. tuberculosis) revealed an expected excision of A opposite 8-oxoG in DNA. Additionally, excision of G and T opposite 8-oxoG was detected. MutY formed complexes with DNA containing 8-oxoG: A, 8-oxoG: G or 8-oxoG: T but not 8-oxoG : C pairs. Primer extension reactions in cell-free extracts of M. smegmatis suggested error-prone incorporation of nucleotides into the DNA. Based on these observations, we discuss the physiological role of MutY in specific mutation prevention in mycobacteria.

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Mycobacterial genomes are endowed with many eukaryote-like nucleotide cyclase genes encoding proteins that can synthesize 3',5'-cyclic AMP (cAMP). However, the roles of cAMP and the need for such redundancy in terms of adenylyl cyclase genes remain unknown. We measured cAMP levels in Mycobacterium smegmatis during growth and under various stress conditions and report the first biochemical and functional characterization of the MSMEG_3780 adenylyl cyclase, whose orthologs in Mycobacterium tuberculosis (Rv1647) and Mycobacterium leprae (ML1399) have been recently characterized in vitro. MSMEG_3780 was important for producing cAMP levels in the logarithmic phase of growth, since the {Delta}MSMEG_3780 strain showed lower intracellular cAMP levels at this stage of growth. cAMP levels decreased in wild-type M. smegmatis under conditions of acid stress but not in the {Delta}MSMEG_3780 strain. This was correlated with a reduction in MSMEG_3780 promoter activity, indicating that the effect of the reduction in cAMP levels on acid stress was caused by a decrease in the transcription of MSMEG_3780. Complementation of the {Delta}MSMEG_3780 strain with the genomic integration of MSMEG_3780 or the Rv1647 gene could restore cAMP levels during logarithmic growth. The Rv1647 promoter was also acid sensitive, emphasizing the biochemical and functional similarities in these two adenylyl cyclases. This study therefore represents the first detailed biochemical and functional analysis of an adenylyl cyclase that is important for maintaining cAMP levels in mycobacteria and underscores the subtle roles that these genes may play in the physiology of the organism.

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Mycobacterium tuberculosis is a successful pathogen that overcomes numerous challenges presented by the immune system of the host. This bacterium usually establishes a chronic infection in the host where it may silently persist inside a granuloma until, a failure in host defenses, leads to manifestation of the disease. None of the conventional anti-tuberculosis drugs are able to target these persisting bacilli. Development of drugs against such persisting bacilli is a constant challenge since the physiology of these dormant bacteria is still not understood at the molecular level. Some evidence suggests that the in vivo environment encountered by the persisting bacteria is anoxic and nutritionally starved. Based on these assumptions, anaerobic and starved cultures are used as models to study the molecular basis of dormancy. This review outlines the problem of persistence of M. tuberculosis and the various in vitro models used to study mycobacterial latency. The basis of selecting the nutritional starvation model has been outlined here. Also, the choice of M. smegmatis as a model suitable for studying mycobacterial latency is discussed. Lastly, general issues related to oxidative stress and bacterial responses to it have been elaborated. We have also discussed general control of OxyR-mediated regulation and emphasized the processes which manifest in the absence of functional OxyR in the bacteria. Lastly, a new class of protein called Dps has been reviewed for its important role in protecting DNA under stress.