189 resultados para Genital mycobacterium tuberculosis


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In the present study we evaluated different systems for the expression of mycobacterial antigen P36 secreted by Mycobacterium bovis. P36 was detected by Western blot using a specific antiserum. The P36 gene was initially expressed in E. coli, under the control of the T7 promoter, but severe proteolysis prevented its purification. We then tried to express P36 in M. smegmatis and insect cells. For M. smegmatis, we used three different plasmid vectors differing in copy number and in the presence of a promoter for expression of heterologous proteins. P36 was detected in the cell extract and culture supernatant in both expression systems and was recognized by sera from M. bovis-infected cattle. To compare the expression level and compartmentalization, the MPB70 antigen was also expressed. The highest production was reached in insect cell supernatants. In conclusion, M. smegmatis and especially the baculovirus expression system are good choices for the production of proteins from pathogenic mycobacteria for the development of mycobacterial vaccines and diagnostic reagents.

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Two attenuated bacillus Calmette-Guérin (BCG) preparations derived from the same Moreau strain, Copenhagen but grown in Sauton medium containing starch and bacto-peptone (onco BCG, O-BCG), or asparagine (intradermal BCG, ID-BCG), exhibited indistinguishable DNA sequences and bacterial morphology. The number of viable bacilli recovered from spleen, liver and lungs was approximately the same in mice inoculated with the vaccines and was similarly reduced (over 90%) in mice previously immunized with either BCG vaccine. The humoral immune response evoked by the vaccines was, however, distinct. Spleen cell proliferation accompanying the growth of bacilli in tissue was significantly higher in mice inoculated with O-BCG. These cells proliferated in vitro upon challenge with the corresponding BCG extract. Previous cell treatment with mAb anti-CD4 T cells abolished this effect. Anti-BCG antibodies, as assayed either in serum by ELISA or by determining the number of antibody-producing spleen cells by the spot-ELISA method, were significantly higher in mice inoculated with ID-BCG. Anti-BCG antibodies were detected in all immunoglobulin classes, but they were more prevalent in IgG with the following distribution among its isotypes: IgG1>(IgG2a = IgG2b)>IgG3. When some well-characterized Mycobacterium tuberculosis antigens were used as substitutes for BCG extracts in ELISA, although antibodies against the 65-kDa and 96-kDa proteins were detected significantly, antibodies against the 71-kDa, 38-kDa proteins and lipoarabinomannan were only barely detected or even absent. These results indicate that BCG bacilli cultured in Sauton-asparagine medium permitted the multiplication of bacilli, tending to induce a stronger humoral immune response as compared with bacilli grown in Sauton-starch/bacto-peptone-enriched medium.

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Pathogens causing tuberculosis and other chronic infectious diseases of major public health importance commonly have complex mechanisms involved in their persistence in the host despite specific and sometimes strong immune responses. These diseases are also associated with the lack of efficient vaccines, difficult therapeutics and a high mortality rate among susceptible individuals. Here, we will review features of the host immune response that contribute to the occurrence of disease. In addition, we propose that the immune responses observed in tuberculosis cannot be interpreted solely on the basis of a Th1-Th2 counter-regulatory paradigm since there is growing evidence that natural regulatory T cells may play an important role in the regulation of host immune responses against Mycobacterium tuberculosis. Thus, the development of more effective vaccines against this bacterial disease should take into account the role of natural regulatory T cells in the progression to severe disease and persistence of infection. Finally, new treatments based on manipulation of regulatory T cells should be investigated.

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Costimulatory and antigen-presenting molecules are essential to the initiation of T cell immunity to mycobacteria. The present study analyzed by immunocytochemistry, using monoclonal antibodies and alkaline phosphatase-anti-alkaline phosphatase method, the frequency of costimulatory (CD86, CD40, CD40L, CD28, and CD152) and antigen-presenting (MHC class II and CD1) molecules expression on human lung cells recovered by sputum induction from tuberculosis (TB) patients (N = 22) and non-TB controls (N = 17). TB cases showed a statistically significant lower percentage of HLA-DR+ cells than control subjects (21.9 ± 4.2 vs 50.0 ± 7.2%, P < 0.001), even though similar proportions of TB cases (18/22) and control subjects (16/17, P = 0.36) had HLA-DR-positive-stained cells. In addition, fewer TB cases (10/22) compared to control subjects (16/17) possessed CD86-expressing cells (P = 0.04; OR: 0.05; 95%CI = 0.00-0.51), and TB cases expressed a lower percentage of CD86+ cells (P = 0.04). Moreover, TB patients with clinically limited disease (£1 lobe) on chest X-ray exhibited a lower percentage of CD86-bearing cells compared to patients with more extensive lung disease (>1 lobe) (P = 0.02). The lower expression by lung cells from TB patients of HLA-DR and CD86, molecules involved in antigen presentation and activation of T cells, may minimize T cell recognition of Mycobacterium tuberculosis, fostering an immune dysfunctional state and active TB.

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Mycobacterium tuberculosis kills more people than any other single pathogen, with an estimated one-third of the world's population being infected. Among those infected, only 10% will develop the disease. There are several demonstrations that susceptibility to tuberculosis is linked to host genetic factors in twins, family and associated-based case control studies. In the past years, there has been dramatic improvement in our understanding of the role of innate and adaptive immunity in the human host defense to tuberculosis. To date, attention has been paid to the role of genetic host and parasitic factors in tuberculosis pathogenesis mainly regarding innate and adaptive immune responses and their complex interactions. Many studies have focused on the candidate genes for tuberculosis susceptibility ranging from those expressed in several cells from the innate or adaptive immune system such as Toll-like receptors, cytokines (TNF-α, TGF-β, IFN-γ, IL-1b, IL-1RA, IL-12, IL-10), nitric oxide synthase and vitamin D, both nuclear receptors and their carrier, the vitamin D-binding protein (VDBP). The identification of possible genes that can promote resistance or susceptibility to tuberculosis could be the first step to understanding disease pathogenesis and can help to identify new tools for treatment and vaccine development. Thus, in this mini-review, we summarize the current state of investigation on some of the genetic determinants, such as the candidate polymorphisms of vitamin D, VDBP, Toll-like receptor, nitric oxide synthase 2 and interferon-γ genes, to generate resistance or susceptibility to M. tuberculosis infection.

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In the last several years, the use of dendritic cells has been studied as a therapeutic strategy against tumors. Dendritic cells can be pulsed with peptides or full-length protein, or they can be transfected with DNA or RNA. However, comparative studies suggest that transfecting dendritic cells with messenger RNA (mRNA) is superior to other antigen-loading techniques in generating immunocompetent dendritic cells. In the present study, we evaluated a new therapeutic strategy to fight tuberculosis using dendritic cells and macrophages transfected with Hsp65 mRNA. First, we demonstrated that antigen-presenting cells transfected with Hsp65 mRNA exhibit a higher level of expression of co-stimulatory molecules, suggesting that Hsp65 mRNA has immunostimulatory properties. We also demonstrated that spleen cells obtained from animals immunized with mock and Hsp65 mRNA-transfected dendritic cells were able to generate a mixed Th1/Th2 response with production not only of IFN-γ but also of IL-5 and IL-10. In contrast, cells recovered from mice immunized with Hsp65 mRNA-transfected macrophages were able to produce only IL-5. When mice were infected with Mycobacterium tuberculosis and treated with antigen-presenting cells transfected with Hsp65 mRNA (therapeutic immunization), we did not detect any decrease in the lung bacterial load or any preservation of the lung parenchyma, indicating the inability of transfected cells to confer curative effects against tuberculosis. In spite of the lack of therapeutic efficacy, this study reports for the first time the use of antigen-presenting cells transfected with mRNA in experimental tuberculosis.

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Resistance to Mycobacterium tuberculosis is a reality worldwide, and its diagnosis continues to be difficult and time consuming. To face this challenge, the World Health Organization has recommended the use of rapid molecular tests. We evaluated the routine use (once a week) of a line probe assay (Genotype MTBDRplus) for early diagnosis of resistance and for assessment of the main related risk factors over 2 years. A total of 170 samples were tested: 15 (8.8%) were resistant, and multidrug resistance was detected in 10 (5.9%). The sensitivity profile took 3 weeks (2 weeks for culture and 1 week for rapid testing). Previous treatment for tuberculosis and the persistence of positive acid-fast smears after 4 months of supervised treatment were the major risk factors observed. The use of molecular tests enabled early diagnosis of drug-resistant bacilli and led to appropriate treatment of the disease. This information has the potential to interrupt the transmission chain of resistant M. tuberculosis.

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Introduction: Tuberculosis is a common opportunistic infection in renal transplant patients. Objective: To obtain a clinical and laboratory description of transplant patients diagnosed with tuberculosis and their response to treatment during a period ranging from 2005 to 2013 at the Pablo Tobón Uribe Hospital. Methods: Retrospective and descriptive study. Results: In 641 renal transplants, tuberculosis was confirmed in 12 cases. Of these, 25% had a history of acute rejection, and 50% had creatinine levels greater than 1.5 mg/dl prior to infection. The disease typically presented as pulmonary (50%) and disseminated (33.3%). The first phase of treatment consisted of 3 months of HZRE (isoniazid, pyrazinamide, rifampicin and ethambutol) in 75% of the cases and HZME (isoniazid, pyrazinamide, moxifloxacin and ethambutol) in 25% of the cases. During the second phase of the treatment, 75% of the cases received isoniazid and rifampicin, and 25% of the cases received isoniazid and ethambutol. The length of treatment varied between 6 and 18 months. In 41.7% of patients, hepatotoxicity was associated with the beginning of anti-tuberculosis therapy. During a year-long follow-up, renal function remained stable, and the mortality rate was 16.7%. Conclusion: Tuberculosis in the renal transplant population studied caused diverse nonspecific symptoms. Pulmonary and disseminated tuberculosis were the most frequent forms and required prolonged treatment. Antituberculosis medications had a high toxicity and mortality. This infection must be considered when patients present with a febrile syndrome of unknown origin, especially during the first year after renal transplant.

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OBJETIVO: Investigar os principais aspectos da co-infecção pelo HIV e o Mycobacterium tuberculosis nos pacientes adultos assistidos pelo hospital de referência para doenças infecciosas do Estado do Ceará, Brasil, responsável pela notificação de 89,3% dos casos registrados no Estado, entre 1986-92. METODOLOGIA: Foram coletados dados de prontuários de pacientes maiores de 15 anos, com diagnóstico de AIDS, atendidos em hospital de referência estadual, região Nordeste do Brasil. A análise dos dados seguem o critério do Ministério da Saúde, para definição dessa doença. RESULTADOS: A tuberculose apresentou-se em 30,6% dos pacientes estudados (151/493) e foi diagnosticada até o primeiro ano após o diagnóstico da AIDS em 76,8% dos casos. Observou-se um tendência crescente na proporção de casos de tuberculose entre pacientes com AIDS conforme decresce o nível de escolaridade (<0,001). A forma extrapulmonar apresentou-se em 23,9% dos casos e a forma miliar em 25% destes casos, diferindo significativamente (p<0,001 para as duas proporções) dos casos com tuberculose sem infecção pelo HIV registrados no Estado, em 1992. CONCLUSÃO: O precoce desenvolvimento da tuberculose, a elevada presença de formas extrapulmonares e a alta letalidade indicam que as medidas de prevenção e controle da AIDS e da tuberculose não devem ser vistas separadamente.

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OBJETIVO: Padronizar reação em cadeia da polimerase para diagnóstico de tuberculose pulmonar, comparando os resultados obtidos com as técnicas microbiológicas clássicas, e analisar seu uso numa região de alta prevalência da tuberculose. MÉTODOS: Foram descontaminadas, após a baciloscopia, 42 amostras de escarro de pacientes. Em seguida, procedeu-se ao cultivo em Lowenstein-Jensen e à reação em cadeia da polimerase com "primers" que amplificam um fragmento de 123 pares de base do genoma do Mycobacterium tuberculosis. RESULTADOS: Das 42 amostras de escarro, 10 apresentaram cultura positiva para M. tuberculosis. Dez foram positivas à baciloscopia e 16 mostraram-se positivas na reação em cadeia da polimerase. A sensibilidade e especificidade do teste em relação à cultura foi de 90% e 81%, respectivamente. CONCLUSÕES: A reação em cadeia da polimerase tem sensibilidade comparável à da cultura e pode ser realizada em apenas um dia, resultando em tratamento precoce e melhor controle da doença. A padronização e avaliação de técnicas de biologia molecular no diagnóstico da tuberculose no Brasil é imprescindível na discussão da implantação deste exame na rotina diagnóstica em centros de referência.

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O progresso na compreensão dos mecanismos de resistência aos fármacos usados no tratamento da tuberculose tem permitido o desenvolvimento de novos métodos para a detecção da tuberculose resistente. A resistente aos fármacos representa uma ameaça para os programas de controle da tuberculose. Para tanto, é necessário conhecer o padrão de sensibilidade das linhagens para fornecer o tratamento adequado. Os estudos moleculares dos mecanismos de ação dos fármacos antituberculose têm elucidado as bases genéticas da resistência aos fármacos em Mycobacterium tuberculosis. Os mecanismos de resistência aos fármacos na tuberculose são causados por mutações cromossomais em diferentes genes da bactéria. Durante a exposição aos fármacos, há uma pressão seletiva favorecendo o desenvolvimento de linhagens resistentes. A tuberculose multirresistente é um problema nacional e internacional que traz sérias dificuldades para o controle global da doença. Realizou-se uma revisão sobre os mecanismos moleculares associados à resistência aos fármacos com ênfase nas novas perspectivas para detectar os isolados resistentes.

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OBJETIVO: Detectar doença ou infecção tuberculosa em comunicantes de pacientes com tuberculose pulmonar. MÉTODOS: Estudo descritivo, transversal, realizado em centro municipal de saúde da cidade do Rio de Janeiro, RJ, com 184 crianças e adolescentes, de 0 a 15 anos de idade, comunicantes de tuberculosos, no período de março de 1995 a março de 1997. Os comunicantes foram submetidos à avaliação clínico-radiológica, teste tuberculínico e baciloscopia de escarro, quando possível. Os doentes foram submetidos à quimioterapia anti-tuberculose e os infectados à quimioprofilaxia. Foi pesquisada a viragem tuberculínica nos comunicantes não reatores ao teste tuberculínico por meio de um segundo teste realizado após oito semanas e, quando presente, a quimioprofilaxia era instituída. RESULTADOS: A casuística foi composta por 98 meninos e 86 meninas, com idades variando entre 0 e 15 anos. Segundo o critério de Gomez, 26,9% das crianças eram desnutridas. Em relação à fonte de infecção, 170 (92,4%) foram intradomiciliares, das quais 66,5% eram os pais. A vacinação BCG foi constatada em 98,4% crianças e 14,7% haviam sido revacinadas. O teste tuberculínico foi reator forte em 110/181 crianças. Consideraram-se infectadas pelo M. tuberculosis 76 (41,3%) crianças e detectaram-se 25 (13,6%) casos de tuberculose pulmonar, dos quais sete (28%) estavam assintomáticos. Houve maior adoecimento quando o comunicante convivia com mais de uma fonte de infecção (p=0,02). CONCLUSÕES: A detecção de doença e de infecção tuberculosa foi elevada na população estudada. O controle de comunicantes deve ser enfatizado, pois permite o diagnóstico de tuberculose em crianças ainda assintomáticas e identifica infectados, os quais podem se beneficiar da quimioprofilaxia.

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Cerebrospinal fluid (CSF) samples from 2083 patients with acquired immunodeficiency syndrome (AIDS) and neurological complications were bacteriologically examined during a period of 7 years (1984-1990). The percentage of patients who had at least one bacterial agent cultured from the CSF was 6.2%. Mycobacterium tuberculosis was the most frequently isolated agent (4.3%), followed by Mycobacterium avium complex or MAC (0.7%), Pseudomonas spp (0.5%), Enterobacter spp (0.4%), and Staphylococcus aureus (0.3%). Among 130 culture positive patients, 89 (68.5%) had M. tuberculosis and 15 (11.6%) had MAC. The frequency of bacterial isolations increased from 1988 (5.2%) to 1990 (7.2%), partly due to the increase in MAC isolations. Bacterial agents were more frequently isolated from patients in the age group 21-30 years and from women (p<0.05).

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The hamster check pouch is an invagination of oral mucosa, characterized histologically as skin-like. In this paper we describe anatomical, histological and embriological features of the pouch and coment on the pouch as an immunologically privileged site since it lacks lymphatic drainage and has few Langerhans cells. We present the review from literature and our observations after inoculation in the pouch of mycobacteriae (BCG, Mycobacterium tuberculosis and Mycobacterium leprae) and a fungus (Paracoccidioides brasiliensis). Lesions in the pouch were granulomatous but smaller and long lasting; even granulomatous, the reaction was inefficient to control the proliferation of agents compared with inoculation in other sites, except for BCG. Appearance of immunity was also delayed or absent and, when it was detected, a sharp decrease in number of agents in pouch lesions was observed. These observations make the pouch an interesting site for the study of the role of immune system in infeccious diseases and in granuloma formation.

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The antimicrobial activity of plant hidroethanolic extracts on bacteria Gram positive, Gram negative, yeasts, Mycobacterium tuberculosis H37 and Mycobacterium bovis was evaluated by using the technique of Agar diffusion and microdilution in broth. Among the extracts evaluated by Agar diffusion, the extract of Bidens pilosa leaf presented the most expressive average of haloes of growth inhibition to the microorganisms, followed by the extract of B. pilosa flower, of Eugenia pyriformis' leaf and seed, of Plinia cauliflora leaf which statistically presented the same average of haloes inhibitory formation on bacteria Gram positive, Gram negative and yeasts. The extracts of Heliconia rostrata did not present activity. Mycobacterium tuberculosis H37 and Mycobacterium bovis(BCG) appeared resistant to all the extracts. The susceptibility profile of Candida albicans and Saccharomyces cerevisiae fungi were compared to one another and to the Gram positive Bacillus subtilis, Enterococcus faecalis and the Gram negative Salmonella typhimurium bacteria (p > 0.05). The evaluation of cytotoxicity was carried out on C6-36 larvae cells of the Aedes albopictus mosquito. The extracts of stem and flower of Heliconia rostrata, leaf and stem of Plinia cauliflora, seed of Anonna crassiflora and stem, flower and root of B. pilosa did not present toxicity in the analyzed concentrations. The highest rates of selectivity appeared in the extracts of stem of A. crassiflora and flower of B. pilosa to Staphylococcus aureus, presenting potential for future studies about a new drug development.