961 resultados para Microbiota auricular
Resumo:
La malaltia de Crohn és una malaltia inflamatòria intestinal en la qual s´ha observat que la densitat i la diversitat bacteriana difereixen dels subjectes sans. En els últims anys s’estan emprant tractaments biològics com els anti-TNFα (Adalimumab) de manera alternativa a tractaments ja existents. Els resultats obtinguts després de l’anàlisi de la composició bacteriana de la mucosa intestinal de pacients amb Malaltia de Crohn tractats amb Adalimumab, són esperançadors ja que apunten a una recuperació del patró normal a través de la recuperació d’espècies pròpies de persones sanes i la desaparició d’aquelles més prevalents en malalts de Crohn.
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La fibril•lació auricular és una complicació freqüent en el postoperatori de cirurgia cardíaca que empitjora el pronòstic d'aquest procediment. Per aquest motiu decidim realitzar un estudi prospectiu observacional amb la finalitat de detectar factors relacionats amb l'aparició de fibril•lació auricular postquirúrgica, en el qual es van incloure 101 pacients intervinguts de cirurgia cardíaca en un període de 3 mesos. Es van recollir dades preoperatòries i intraoperatòries, així com complicacions postquirúrgiques. Es va objectivar associació estadística entre l'aparició de fibril•lació auricular i el tipus i durada de la cirurgia, així com augment en les complicacions i en l'estada mitjana.
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BACKGROUND A recent study using a rat model found significant differences at the time of diabetes onset in the bacterial communities responsible for type 1 diabetes modulation. We hypothesized that type 1 diabetes in humans could also be linked to a specific gut microbiota. Our aim was to quantify and evaluate the difference in the composition of gut microbiota between children with type 1 diabetes and healthy children and to determine the possible relationship of the gut microbiota of children with type 1 diabetes with the glycemic level. METHODS A case-control study was carried out with 16 children with type 1 diabetes and 16 healthy children. The fecal bacteria composition was investigated by polymerase chain reaction-denaturing gradient gel electrophoresis and real-time quantitative polymerase chain reaction. RESULTS The mean similarity index was 47.39% for the healthy children and 37.56% for the children with diabetes, whereas the intergroup similarity index was 26.69%. In the children with diabetes, the bacterial number of Actinobacteria and Firmicutes, and the Firmicutes to Bacteroidetes ratio were all significantly decreased, with the quantity of Bacteroidetes significantly increased with respect to healthy children. At the genus level, we found a significant increase in the number of Clostridium, Bacteroides and Veillonella and a significant decrease in the number of Lactobacillus, Bifidobacterium, Blautia coccoides/Eubacterium rectale group and Prevotella in the children with diabetes. We also found that the number of Bifidobacterium and Lactobacillus, and the Firmicutes to Bacteroidetes ratio correlated negatively and significantly with the plasma glucose level while the quantity of Clostridium correlated positively and significantly with the plasma glucose level in the diabetes group. CONCLUSIONS This is the first study showing that type 1 diabetes is associated with compositional changes in gut microbiota. The significant differences in the number of Bifidobacterium, Lactobacillus and Clostridium and in the Firmicutes to Bacteroidetes ratio observed between the two groups could be related to the glycemic level in the group with diabetes. Moreover, the quantity of bacteria essential to maintain gut integrity was significantly lower in the children with diabetes than the healthy children. These findings could be useful for developing strategies to control the development of type 1 diabetes by modifying the gut microbiota.
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BACKGROUND Several evidences indicate that gut microbiota is involved in the control of host energy metabolism. OBJECTIVE To evaluate the differences in the composition of gut microbiota in rat models under different nutritional status and physical activity and to identify their associations with serum leptin and ghrelin levels. METHODS IN A CASE CONTROL STUDY, FORTY MALE RATS WERE RANDOMLY ASSIGNED TO ONE OF THESE FOUR EXPERIMENTAL GROUPS: ABA group with food restriction and free access to exercise; control ABA group with food restriction and no access to exercise; exercise group with free access to exercise and feed ad libitum and ad libitum group without access to exercise and feed ad libitum. The fecal bacteria composition was investigated by PCR-denaturing gradient gel electrophoresis and real-time qPCR. RESULTS In restricted eaters, we have found a significant increase in the number of Proteobacteria, Bacteroides, Clostridium, Enterococcus, Prevotella and M. smithii and a significant decrease in the quantities of Actinobacteria, Firmicutes, Bacteroidetes, B. coccoides-E. rectale group, Lactobacillus and Bifidobacterium with respect to unrestricted eaters. Moreover, a significant increase in the number of Lactobacillus, Bifidobacterium and B. coccoides-E. rectale group was observed in exercise group with respect to the rest of groups. We also found a significant positive correlation between the quantity of Bifidobacterium and Lactobacillus and serum leptin levels, and a significant and negative correlation among the number of Clostridium, Bacteroides and Prevotella and serum leptin levels in all experimental groups. Furthermore, serum ghrelin levels were negatively correlated with the quantity of Bifidobacterium, Lactobacillus and B. coccoides-Eubacterium rectale group and positively correlated with the number of Bacteroides and Prevotella. CONCLUSIONS Nutritional status and physical activity alter gut microbiota composition affecting the diversity and similarity. This study highlights the associations between gut microbiota and appetite-regulating hormones that may be important in terms of satiety and host metabolism.
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Anophelines harbour a diverse microbial consortium that may represent an extended gene pool for the host. The proposed effects of the insect microbiota span physiological, metabolic and immune processes. Here we synthesise how current metagenomic tools combined with classical culture-dependent techniques provide new insights in the elucidation of the role of the Anopheles-associated microbiota. Many proposed malaria control strategies have been based upon the immunomodulating effects that the bacterial components of the microbiota appear to exert and their ability to express anti-Plasmodium peptides. The number of identified bacterial taxa has increased in the current “omics” era and the available data are mostly scattered or in “tables” that are difficult to exploit. Published microbiota reports for multiple anopheline species were compiled in an Excel® spreadsheet. We then filtered the microbiota data using a continent-oriented criterion and generated a visual correlation showing the exclusive and shared bacterial genera among four continents. The data suggested the existence of a core group of bacteria associated in a stable manner with their anopheline hosts. However, the lack of data from Neotropical vectors may reduce the possibility of defining the core microbiota and understanding the mosquito-bacteria interactive consortium.
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Obesity and its associated disorders are a major public health concern. Although obesity has been mainly related with perturbations of the balance between food intake and energy expenditure, other factors must nevertheless be considered. Recent insight suggests that an altered composition and diversity of gut microbiota could play an important role in the development of metabolic disorders. This review discusses research aimed at understanding the role of gut microbiota in the pathogenesis of obesity and type 2 diabetes mellitus (TDM2). The establishment of gut microbiota is dependent on the type of birth. With effect from this point, gut microbiota remain quite stable, although changes take place between birth and adulthood due to external influences, such as diet, disease and environment. Understand these changes is important to predict diseases and develop therapies. A new theory suggests that gut microbiota contribute to the regulation of energy homeostasis, provoking the development of an impairment in energy homeostasis and causing metabolic diseases, such as insulin resistance or TDM2. The metabolic endotoxemia, modifications in the secretion of incretins and butyrate production might explain the influence of the microbiota in these diseases.
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We appreciate the interest shown by Vidal-Pérez et al. in our article published recently in Revista Española de Cardiología,1 which provides us with an opportunity to present some interesting additional information not included in the article itself. We agree on the importance of knowing the thromboembolic risk of the population included in the OFRECE study, both for patients with a diagnosis of atrial fibrillation and for the general population. In our study, the mean (standard deviation) CHADS2 and CHAD2DS2-VASc of patients with atrial fibrillation was 2.3 (1.3) and 3.8 (1.6), respectively. In the general population, the mean (standard deviation) CHADS2 and CHAD2DS2-VASc of patients with atrial fibrillation was 0.8 (1) and 1.8 (1.5), respectively. The distribution of both scales is in agreement with that of the Val-FAAP and AFABE studies,2, 3 although the similarity is greater in the 2 population-based studies (Figure). These data are, we believe, relevant because they show that the level of risk in the population with atrial fibrillation is very similar to that of the populations included in clinical trials with new oral anticoagulants. In addition, an increasing body of evidence suggests that thromboembolic risk, as measured with these scales in the population without a diagnosis of atrial fibrillation, is associated with the onset of events.
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NOD2 functions as an intracellular sensor for microbial pathogen and plays an important role in epithelial defense. The loss-of-function mutation of NOD2 is strongly associated with human Crohn's disease (CD). However, the mechanisms of how NOD2 maintains the intestinal homeostasis and regulates the susceptibility of CD are still unclear. Here we found that the numbers of intestinal intraepithelial lymphocytes (IELs) were reduced significantly in Nod2(-/-) mice and the residual IELs displayed reduced proliferation and increased apoptosis. Further study showed that NOD2 signaling maintained IELs via recognition of gut microbiota and IL-15 production. Notably, recovery of IELs by adoptive transfer could reduce the susceptibility of Nod2(-/-) mice to the 2,4,6-trinitrobenzene sulfonic acid (TNBS)-induced colitis. Our results demonstrate that recognition of gut microbiota by NOD2 is important to maintain the homeostasis of IELs and provide a clue that may link NOD2 variation to the impaired innate immunity and higher susceptibility in CD.
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Aquest és un estudi prospectiu observacional de cohorts de 59 malalts amb fibril•lació auricular no primària tractats amb ablació epicàrdica de venes pulmonars amb ultrasons. Els objectius van ser avaluar l’efectivitat de l’ablació, establir les diferències dels resultats entre una fibril•lació auricular paroxística i una crònica i establir les diferències dels resultats segons la patologia cardíaca primària. L’efectivitat de l’ablació per mantenir ritme sinusal a l’any fou del 65,3%. Per la fibril•lació auricular paroxística l’efectivitat al mes fou del 82,4% i del 41,7% per la crònica (p=0,005) i a l’any del 82,4% i del 56,3% respectivament (p=0,068).
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Purpose: To report on the clinical and electrophysiological findings in a patient with oculo-auricular syndrome due to HMX1 mutation, with a follow-up of 12 years. Background: Oculo-auricular syndrome (MIM: 612109) is a rare developmental recessive condition affecting the eye and external ear that results from a mutation in the HMX1 gene. Previously described ocular abnormalities include bilateral microcornea, posterior synechiae, cataract, chorioretinal colobomas and rod-cone dystrophy. Methods: Retrospective chart review of an affected boy followed over a period of 12 years who had serial complete ophthalmologic examinations, fundus photographs, Goldmann perimetry and full-field electroretinograms (ERG). Results: Initial ERG tracings revealed generalized rod more than cone dysfunction. Thereafter, a rapid deterioration in rod and cone function was detected on follow up ERGs. Conclusion: The retinal degeneration in the recessively inherited oculo-auricular syndrome is a progressive rod-cone dystrophy. Visual prognosis is guarded considering the progressive nature of the retinal dystrophy in early infancy.
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Objective: Reconstruction of alar structures of the nose remains difficult. The result has to be not only functional but also aesthetic. Different solutions to reconstruct alar defects are feasible. A good result that meets the specific demands on stability, aesthetics, and stable architecture without shrinkage of the area is not easily achieved. Method: A perichondrial cutaneous graft (PCCG), a graft consisting of a perichondral layer, fatty tissue, and skin that is harvested retroauriculary, is combined with an attached cartilage strip. Case Result: A 72-year-old patient suffering from basal cell carcinoma of the ala of the nose underwent the reconstructive procedure with a good result in 1 year in terms of stability, color match, and graft take. Conclusion: First, a strip of cartilage had been included in a PCCG where tumor resection required sacrifice of more than 50% of the alar rim. The case shows that one can consider a cartilage strip-enhanced PCCG graft to reconstruct alar defects.
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Epidemiological data point toward a critical period in early life during which environmental cues can set an individual on a trajectory toward respiratory health or disease. The neonatal immune system matures during this period, although little is known about the signals that lead to its maturation. Here we report that the formation of the lung microbiota is a key parameter in this process. Immediately following birth, neonatal mice were prone to develop exaggerated airway eosinophilia, release type 2 helper T cell cytokines and exhibit airway hyper-responsiveness following exposure to house dust mite allergens, even though their lungs harbored high numbers of natural CD4(+)Foxp3(+)CD25(+)Helios(+) regulatory T (Treg) cells. During the first 2 weeks after birth, the bacterial load in the lungs increased, and representation of the bacterial phyla shifts from a predominance of Gammaproteobacteria and Firmicutes towards Bacteroidetes. The changes in the microbiota were associated with decreased aeroallergen responsiveness and the emergence of a Helios(-) Treg cell subset that required interaction with programmed death ligand 1 (PD-L1) for development. Absence of microbial colonization(10) or blockade of PD-L1 during the first 2 weeks postpartum maintained exaggerated responsiveness to allergens through to adulthood. Adoptive transfer of Treg cells from adult mice to neonates before aeroallergen exposure ameliorated disease. Thus, formation of the airway microbiota induces regulatory cells early in life, which, when dysregulated, can lead to sustained susceptibility to allergic airway inflammation in adulthood.
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Neste estudo foram avaliados atributos qualitativos e quantitativos da microbiota do solo, visando monitorar alterações por diferentes manejos do solo e das culturas. As avaliações foram feitas em um ensaio a campo, conduzido há 14 anos em Londrina, PR, sob plantio convencional (PC) ou plantio direto (PD) e com sucessão (S) (soja/trigo) ou rotação (R) (tremoço/milho/aveia-preta/soja/trigo/soja/trigo/soja) de culturas, quando todos os sistemas estavam com soja no estádio de florescimento pleno. Os incrementos no C e N da biomassa microbiana (CBM e NBM) no PD foram de 114 e 157 %, respectivamente, em comparação ao PC; além disso, o quociente metabólico (qCO2) foi inferior em 37 % no PD, indicando maior eficiência metabólica da microbiota do solo. Não foram detectadas diferenças nesses atributos em função dos sistemas de rotação e sucessão de culturas. A diversidade genética da comunidade bacteriana total do solo foi superior no PD e inferior no PC com sucessão de culturas. Em relação à fixação biológica do N2, a massa, o N total e a fração de N-ureídos acumulados na parte aérea e a eficiência dos nódulos em fixar N2 foram superiores no PD. A diversidade genética dos rizóbios foi afetada, principalmente, pelo manejo das culturas, sendo superior com a rotação, provavelmente pelo maior número de espécies de plantas. Contudo, com a rotação ocorreu decréscimo na eficiência do processo de fixação biológica do N2, o que pode estar relacionado com os teores mais elevados de N no solo, ou com a menor pressão de seleção por bactérias eficientes. Desse modo, para microrganismos do solo com função específica, como os rizóbios, a diversidade genética pode ser distinta da funcionalidade.
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A aplicação de biossólidos de Estações de Tratamento de Esgotos (ETEs) em solos agrícolas e florestais tem sido uma das práticas alternativas preconizadas para a reciclagem desses resíduos orgânicos. No entanto, alguns biossólidos de ETEs podem conter metais e, ou, xenobiontes que poderiam afetar a microbiota. Neste trabalho, os impactos da aplicação de biossólidos das ETEs de Barueri e Franca (SP), com alta e baixa concentração de metais, respectivamente, na microbiota de um solo argiloso (Nitossolo Vermelho eutroférrico típico) e um arenoso (Neossolo Quartzarênico órtico típico) foram determinados em condições de microcosmos. Imediatamente após a adição de diferentes doses de biossólidos ao solo, e depois de 4, 8, 16, 32 e 64 dias de incubação, a respiração basal (RB), C na biomassa microbiana (CB), quociente metabólico (qCO2) e relação CB/C-orgânico do solo (CB/Corg) foram avaliados. No geral, a RB foi maior nos solos com maiores quantidades de biossólidos, sendo os maiores acréscimos verificados logo após a aplicação dos biossólidos. No solo arenoso, decréscimos significativos do CB foram observados nos tratamentos com as doses mais elevadas de biossólidos. O qCO2 foi maior nos solos com doses mais elevadas de biossólidos, mas diminuiu com o aumento do período de incubação. Independentemente do tipo de solo, CB/Corg foi maior nos solos que não receberam biossólidos, em relação aos solos que receberam biossólidos ricos em metais. A relação CB/Corg nos solos tratados com biossólidos ricos em metais diminuiu significativamente entre 4 e 16 dias de incubação, não sofrendo alterações posteriormente. Esses dados indicam que a aplicação de biossólidos nos solos analisados, independentemente do teor de metais, pode causar um estresse transiente na comunidade microbiana, dependendo da dose aplicada, e que alterações na estrutura das comunidades microbianas podem estar ocorrendo.
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A atividade metabólica dos microrganismos é um dos principais processos reguladores das transformações de nutrientes no solo. No entanto, a atividade microbiana do solo é influenciada por fatores como a disponibilidade de nutrientes, incluindo o P. Este trabalho teve como objetivo avaliar o efeito da adição de P (de 50 a 500 mg kg-1 de P no solo) na atividade respiratória da microbiota e nos teores de glicose extra e intracelular em um Latossolo Vermelho distrófico fase Cerrado. As amostras de solo foram avaliadas quanto ao C liberado (C-CO2) pela atividade microbiana; pelo C orgânico total e pela glicose extra e intracelular. Durante o período de incubação (31 dias), a adição de P aumentou a atividade respiratória diária de 6,30 para 23,59 (mg kg-1 dia-1 de C-CO2 no solo), quando comparado com o controle. No entanto, a relação entre C-CO2 liberado por dia, por unidade de P adicionado, diminuiu, mostrando uma redução da eficiência na utilização do P adicionado. O teor de glicose extracelular no solo foi menor do que o encontrado intracelularmente. Ao final de 31 dias de incubação, o teor de glicose intracelular reduziu-se em decorrência da adição de P no solo, sugerindo maior consumo de glicose pelos microrganismos nas condições de adição do nutriente. Houve correlação negativa (r= -0,98, p < 0,01) entre a respiração diária e a glicose intracelular. Aos 31 dias de incubação, o CO total do solo diminuiu com a adição de 500 mg kg-1 de P no solo. A estreita relação entre o aumento da atividade e a diminuição de glicose intracelular sugere que a resposta da microbiota à adição de P pode estar associada ao conteúdo do açúcar no solo.