922 resultados para CGH microarray


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Le Staphylococcus aureus résistant à la méthicilline (SARM) est un enjeu majeur en santé publique. Il est responsable d’une grande variété d’infections. Les “Livestock Associated-MRSA” (LA-MRSA) sont des SARM ayant comme origine les animaux de production tels le porc ou la volaille. Ils constituent un risque de transmission à l’humain via la chaîne alimentaire. Les LA-MRSA peuvent former du biofilm ce qui augmente leur tolérance aux stress environnementaux. Le biofilm est partiellement régulé par le système Agr. Il n’existe aucune donnée sur les ‘LA-MRSA’ d’origine aviaire au Québec. Les objectifs de ce projet étaient : (i) de déterminer la prévalence de ces SARM dans la viande de poulet et le poulet à griller de la province de Québec et (ii) de caractériser les isolats retrouvés. La collecte d’échantillons s’est effectuée dans 43 épiceries (309 cuisses et pilons de poulet) et dans deux abattoirs (échantillons nasaux et fécaux de 200 poulets) de la Montérégie. La prévalence de SARM a été évaluée à 1.29% (IC 95%: 0.35-3.28) et 0% dans la viande et les oiseaux respectivement. Les isolats testés se sont révélés résistants aux bêta-lactamines (n=15), à la tétracycline (n=10), à l’oxytétracycline (n=10), à la spectinomycine (n=10) et à la tobramycine (n=1). Le typage a révélé deux clones différents (ST398-V, n=10; et ST8-IVa ’USA300’, n=5). La présence de gènes de résistance aux antibiotiques (blaZ, blaR, blaI, erm(A), lnu(A), aad(D), fosB, tet(K), tet(L) et spc) ainsi que plusieurs gènes codant pour l’évasion du système immunitaire (IEC), la production de toxines ou encore pour la production de biofilm ont aussi été détectés. Une forte production de biofilm a été observée pour la majorité des isolats (n=11) à l’exception de certains isolats ST398. Le taux d’expression du système Agr n’a révélé aucune différence particulière entre les SARM testés. Pour conclure, nos données indiquent une faible prévalence de SARM chez la volaille et la viande de poulet. Les isolats ont été catégorisés en deux génotypes, dont un portant plus de gènes de résistance aux antibiotiques (ST398) et l’autre possédant plus de gènes de virulence (ST8).

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Background: Porcine reproductive and respiratory syndrome virus (PRRSV) is one of the most important pathogens in the swine industry and causes important economic losses. No effective antiviral drugs against it are commercially available. We recently reported that the culture supernatant of Actinobacillus pleuropneumoniae, the porcine pleuropneumonia causative agent, has an antiviral activity in vitro against PRRSV in SJPL cells. Objectives of this study were (i) to identify the mechanism behind the antiviral activity displayed by A. pleuropneumoniae and (ii) to characterize the active molecules present in the bacterial culture supernatant. Methods: Antibody microarray analysis was used in order to point out cellular pathways modulated by the A. pleuropneumoniae supernatant. Subsequent, flow cytometry analysis and cell cycle inhibitors were used to confirm antibody microarray data and to link them to the antiviral activity of the A. pleuropneumoniae supernatant. Finally, A. pleuropneumoniae supernatant characterization was partially achieved using mass spectrometry. Results: Using antibody microarray, we observed modulations in G2/M-phase cell cycle regulation pathway when SJPL cells were treated with A. pleuropneumoniae culture supernatant. These modulations were confirmed by a cell cycle arrest at the G2/M-phase when cells were treated with the A. pleuropneumoniae culture supernatant. Furthermore, two G2/M-phase cell cycle inhibitors demonstrated the ability to inhibit PRRSV infection, indicating a potential key role for PRRSV infection. Finally, mass spectrometry lead to identify two molecules (m/z 515.2 and m/z 663.6) present only in the culture supernatant. Conclusions: We demonstrated for the first time that A. pleuropneumoniae is able to disrupt SJPL cell cycle resulting in inhibitory activity against PRRSV. Furthermore, two putative molecules were identified from the culture supernatant. This study highlighted the cell cycle importance for PRRSV and will allow the development of new prophylactic or therapeutic approaches against PRRSV.

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Le cancer de l’ovaire (COv) est le cancer gynécologique le plus létal chez la femme et les traitements existants, chirurgie et chimiothérapie, ont peu évolué au cours des dernières décennies. Nous proposons que la compréhension des différents destins cellulaires tels que la sénescence que peuvent choisir les cellules du cancer de l’ovaire en réponse à la chimiothérapie pourrait conduire à de nouvelles opportunités thérapeutiques. La sénescence cellulaire a été largement associée à l’activité de la protéine TP53, qui est mutée dans plus de 90% des cas de cancer de l’ovaire séreux de haut grade (COv-SHG), la forme la plus commune de la maladie. Dans nos travaux, à partir d’échantillons dérivés de patientes, nous montrons que les cultures primaires du cancer de l’ovaire séreux de haut grade exposées au stress ou à des drogues utilisées en chimiothérapie entrent en senescence grâce à l’activité d’un isoforme du gène CDKN2A (p16INK4A). Dans ces cellules, nous avons évalué les caractéristiques fondamentales de la sénescence cellulaire tels que les altérations morphologiques, l’activité béta galactosidase associée à la sénescence, les dommages à l’ADN, l’arrêt du cycle cellulaire et le phénotype sécrétoire associé à la sénescence. En utilisant des micromatrices tissulaires construites à partir d’échantillons humains de COv-SHG pré- et post-chimiothérapie, accompagnées de leurs données cliniques, nous avons quantifié des marqueurs de sénescence incluant une diminution de la prolifération cellulaire quelques semaines après chimiothérapie. De façon intéressante, l’expression de p16INK4A dans les échantillons de COv-SHG prétraitement corrèle avec une survie prolongée des patientes suite au traitement. Ceci suggère ainsi pour la première fois un impact biologique bénéfique pour la présence de cellules cancéreuses qui sont capable d’activer la sénescence, particulièrement pour le traitement du cancer de l’ovaire. Dans le but de complémenter les thérapies actuelles avec des approches de manipulation pharmacologique de la sénescence, nos résultats suggèrent qu’il serait important de déterminer l’impact positif ou négatif de la sénescence induite par la thérapie sur la progression de la maladie et la survie, pour chaque type de cancer de façon indépendante.

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Microarray data analysis is one of data mining tool which is used to extract meaningful information hidden in biological data. One of the major focuses on microarray data analysis is the reconstruction of gene regulatory network that may be used to provide a broader understanding on the functioning of complex cellular systems. Since cancer is a genetic disease arising from the abnormal gene function, the identification of cancerous genes and the regulatory pathways they control will provide a better platform for understanding the tumor formation and development. The major focus of this thesis is to understand the regulation of genes responsible for the development of cancer, particularly colorectal cancer by analyzing the microarray expression data. In this thesis, four computational algorithms namely fuzzy logic algorithm, modified genetic algorithm, dynamic neural fuzzy network and Takagi Sugeno Kang-type recurrent neural fuzzy network are used to extract cancer specific gene regulatory network from plasma RNA dataset of colorectal cancer patients. Plasma RNA is highly attractive for cancer analysis since it requires a collection of small amount of blood and it can be obtained at any time in repetitive fashion allowing the analysis of disease progression and treatment response.

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MicroRNAs are short non-coding RNAs that can regulate gene expression during various crucial cell processes such as differentiation, proliferation and apoptosis. Changes in expression profiles of miRNA play an important role in the development of many cancers, including CRC. Therefore, the identification of cancer related miRNAs and their target genes are important for cancer biology research. In this paper, we applied TSK-type recurrent neural fuzzy network (TRNFN) to infer miRNA–mRNA association network from paired miRNA, mRNA expression profiles of CRC patients. We demonstrated that the method we proposed achieved good performance in recovering known experimentally verified miRNA–mRNA associations. Moreover, our approach proved successful in identifying 17 validated cancer miRNAs which are directly involved in the CRC related pathways. Targeting such miRNAs may help not only to prevent the recurrence of disease but also to control the growth of advanced metastatic tumors. Our regulatory modules provide valuable insights into the pathogenesis of cancer

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Die Amöbe Dictyostelium discoideum ist ein genetisch leicht manipulierbarer Organismus und dient als Modell für verschiedene zelluläre Prozesse, wie z.B. der Endocytose. Hierbei konnte vieles über die Funktion von beteiligten Proteinen anhand von Untersuchungen an spezifischen Mutanten gelernt werden. Bei AlyA handelt es sich um D. discoideum spezifisches Lysozym. GFP-modifiziertes AlyA lokalisiert in Phagosomen und in einer neuen Klasse von Vesikeln lysososomaler Enzyme. Über Rescue Mutanten konnte der Phänotyp alyA138 Knockout Mutanten, einer erhöhten Phagocytoserate einhergehend mit einem verbesserten Wachstum auf Bakterienrasen, der gerettet werden. In AlyA Null Zellen wurde eine erhöhte Expression von Gp70, einer lysosomalen Esterase, gefunden. Die Überexpression von Gp70 alleine führt mit geringen Unterschieden zu einem Phänotyp ähnlich der alyA Knockout Mutante. Demzufolge scheinen beide Enzyme eine Funktion in einer gemeinsamen Signalskaskade, ausgehend von der Degradation internalisierter Bakterien hin zu einer erhöhten Phagocytoserate, zu haben. Eine erhöhte Lysozymaktivität in Gp70 Überexprimierern wurde nicht gefunden. Mit H5 konnte mittels Microarray Analysen ein Protein identifiziert werden, welches in den alyA138 Knockout Zellen, jedoch nicht in Gp70 Überexprimierern, verstärkt exprimiert wird. Eine Funktion in einer Signalkette zwischen AlyA und Gp70, wie die erhöhte Expression vermuten lässt, konnte jedoch nicht bestätigt werden. So führt die Überexpression von H5 weder zu einer erhöhten Phagocytoserate noch zu einer verstärkten Expression von Gp70. Mittels der Microarray Analysen konnten weiterhin acht Gene identifiziert werden, die in den beiden Mutanten schwächer exprimiert vorliegen. Knockaout Mutanten zweier dieser Gene, sse346 und ssj758, wurden untersucht. Sse346 Null Zellen zeigen eine erhöhte Phagocytoserate einhergehend mit effizienterem Wachstum auf Bakterienrasen, während das Fehlen von Ssj758 nur zu vergrößerten Plaquedurchmessern führte. Beide proteine haben demnach eine Funktion in der postulierten Signalkaskade. Diese scheint, ausgehend von der Überexpression von Gp70, zweigeteilt zu verlaufen.

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DNA methyltransferases of type Dnmt2 are a highly conserved protein family with enigmatic function. The aim of this work was to characterize DnmA, the Dnmt2 methyltransferase in Dictyostelium discoideum, and further to investigate its implication in DNA methylation and transcriptional gene silencing. The genome of the social amoeba Dictyostelium encodes DnmA as the sole DNA methyltransferase. The enzyme bears all ten characteristic DNA methyltransferase motifs in its catalytic domain. The DnmA mRNA was found by RT-PCR to be expressed during vegetative growth and down regulated during development. Investigations using fluorescence microscopy showed that both DnmA-myc and DnmA-GFP fusions predominantly localised to the nucleus. The function of DnmA remained initially unclear, but later experiment revealed that the enzyme is an active DNA methyltransferase responsible for all DNA (cytosine) methylation in Dictyostelium. Neither in gel retardation assays, nor by the yeast two hybrid system, clues on the functionality of DnmA could be obtained. However, immunological detection of the methylation mark with an α - 5mC antibody gave initial evidence that the DNA of Dictyostelium was methylated. Furthermore, addition of 5-aza-cytidine as demethylating agent to the Dictyostelium medium and subsequent in vitro incubation of the DNA isolated from these cells with recombinant DnmA showed that the enzyme binds slightly better to this target DNA. In order to investigate further the function of the protein, a gene knock-out for dnmA was generated. The gene was successfully disrupted by homologous recombination, the knock-out strain, however, did not show any obvious phenotype under normal laboratory conditions. To identify specific target sequences for DNA methylation, a microarray analysis was carried out. Setting a threshold of at least 1.5 fold for differences in the strength of gene expression, several such genes in the knock-out strain were chosen for further investigation. Among the up-regulated genes were the ESTs representing the gag and the RT genes respectively of the retrotransposon skipper. In addition Northern blot analysis confirmed the up-regulation of skipper in the DnmA knock-out strain. Bisufite treatment and sequencing of specific DNA stretches from skipper revealed that DnmA is responsible for methylation of mostly asymmetric cytosines. Together with skipper, DIRS-1 retrotransposon was found later also to be methylated but was not present on the microarray. Furthermore, skipper transcription was also up-regulated in strains that had genes disrupted encoding components of the RNA interference pathway. In contrast, DIRS 1 expression was not affected by a loss of DnmA but was strongly increased in the strain that had the RNA directed RNA polymerase gene rrpC disrupted. Strains generated by propagating the usual wild type Ax2 and the DnmA knock-out cells over 16 rounds in development were analyzed for transposon activity. Northern blot analysis revealed activation for skipper expression, but not for DIRS-1. A large number of siRNAs were found to be correspondent to the DIRS-1 sequence, suggesting concerted regulation of DIRS-1 expression by RNAi and DNA methylation. In contrast, no siRNAs corresponding to the standard skipper element were found. The data show that DNA methylation plays a crucial role in epigenetic gene regulation in Dictyostelium and that different, partially overlapping mechanisms control transposon silencing for skipper and DIRS-1. To elucidate the mechanism of targeting the protein to particular genes in the Dictyostelium genome, some more genes which were up-regulated in the DnmA knock-out strain were analyzed by bisulfite sequencing. The chosen genes are involved in the multidrug response in other species, but their function in Dictyostelium is uncertain. Bisulfite data showed that two of these genes were methylated at asymmetrical C-residues in the wild type, but not in DnmA knock-out cells. This suggested that DNA methylation in Dictyostelium is involved not only in transposon regulation but also in transcriptional silencing of specific genes.

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Dictyostelium discoideum ernährt sich in seinem natürlichen Habitat, dem Waldboden, vorwiegend von Bakterien. Diese werden aus der Umgebung über Phagozytose aufgenommen und unter anderem mit Hilfe von Lysozymen verdaut. Eines dieser Lysozyme, AlyA, wurde bereits in vorhergehenden Arbeiten detailliert untersucht. Sein Fehlen resultierte in einer zeitabhängigen Vergrößerung der Fresshöfe in Bakterienrasen. Zusätzlich waren in diesen Knockout-Mutanten auch die Phagozytoserate und die Expression eines zweiten lysosomalen Enzyms (Gp70) erhöht. Die Überexpression dieser Esterase in wildtypischen Zellen bewirkte ebenfalls, dass Partikel aus der Umgebung effektiver aufgenommen werden konnten. Da die AlyA-Mutanten und die Gp70-Überexprimierer ähnliche Phänotypen zeigten, die Proteine aber in unterschiedlichen lysosomalen Vesikeln lokalisieren, müssen weitere Proteine an der Ausbildung der Phänotypen beteiligt sein. Aus diesem Grund wurden die Genexpressionen beider Mutanten verglichen. Über Microarray-Analysen sollten auf diese Weise weitere Proteine identifiziert werden, die eine Weiterleitung des Signals von AlyA über Gp70 bis hin zur Plasmamembran vermitteln. Einigen der potentiellen Kandidaten konnte anhand der Untersuchung von Mutanten bereits eine Weiterleitung des Signals zwischen Gp70 und der erhöhten Phagozytose an der Plasmamembran zugeordnet werden. Um jedoch mehr über die Signalkette oberhalb von Gp70 zu erfahren, wurden im Rahmen dieser Arbeit drei Proteine untersucht. Die Expression von DD3-3, SSD673 und SSD485 war in den AlyA-Mutanten erhöht, in den Gp70-Überexprimierern jedoch unverändert. Durch Herstellung und Untersuchung von überexprimierenden Mutanten wurde die Wirkung jedes Proteins auf die Gp70-Expression, das Phagozytoseverhalten und den Durchmesser der Fresshöfe analysiert. Die Markierung der Kandidaten mit dem Myc-Epitop sollte deren subzelluläre Lokalisation klären. Für DD3-3-überexpimierende Klone konnte in dieser Arbeit allerdings keine Veränderung gegenüber wildtypischen Zellen festgestellt werden. Sie zeigt allerdings, dass Medium von SSD673-überexprimierenden Zellen die Phagozytoserate wildtypischer Zellen leicht erhöht. Eine starke SSD673myc-Expression führte auch zu einer verstärkten Aufnahme von Hefezellen. Die Gp70-Expression in Gesamtzelllysaten der SSD673-Mutanten blieb jedoch unverändert. Wurde in Wildtypzellen hingegen SSD485 im Übermaß exprimiert, so führte dies zu einer verstärkten Partikelaufnahme. Diese entwickelte sich ähnlich den AlyA-Knockout-Mutanten in Abhängigkeit der Zeit und ging mit einer erhöhten Gp70-Expression einher. In dieser Arbeit konnte folglich zwei von drei Proteinen eine positive Wirkung auf die Phagozytose nachgewiesen werden. SSD485-Mutanten erfüllten darüber hinaus die Bedingungen für eine Weiterleitung des AlyA-Signals von SSD485 auf Gp70 bis hin zu einer erhöhten Phagozytose.

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While protein microarray technology has been successful in demonstrating its usefulness for large scale high-throughput proteome profiling, performance of antibody/antigen microarrays has been only moderately productive. Immobilization of either the capture antibodies or the protein samples on solid supports has severe drawbacks. Denaturation of the immobilized proteins as well as inconsistent orientation of antibodies/ligands on the arrays can lead to erroneous results. This has prompted a number of studies to address these challenges by immobilizing proteins on biocompatible surfaces, which has met with limited success. Our strategy relates to a multiplexed, sensitive and high-throughput method for the screening quantification of intracellular signalling proteins from a complex mixture of proteins. Each signalling protein to be monitored has its capture moiety linked to a specific oligo ‘tag’. The array involves the oligonucleotide hybridization-directed localization and identification of different signalling proteins simultaneously, in a rapid and easy manner. Antibodies have been used as the capture moieties for specific identification of each signaling protein. The method involves covalently partnering each antibody/protein molecule with a unique DNA or DNA derivatives oligonucleotide tag that directs the antibody to a unique site on the microarray due to specific hybridization with a complementary tag-probe on the array. Particular surface modifications and optimal conditions allowed high signal to noise ratio which is essential to the success of this approach.

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Emergent molecular measurement methods, such as DNA microarray, qRTPCR, and many others, offer tremendous promise for the personalized treatment of cancer. These technologies measure the amount of specific proteins, RNA, DNA or other molecular targets from tumor specimens with the goal of “fingerprinting” individual cancers. Tumor specimens are heterogeneous; an individual specimen typically contains unknown amounts of multiple tissues types. Thus, the measured molecular concentrations result from an unknown mixture of tissue types, and must be normalized to account for the composition of the mixture. For example, a breast tumor biopsy may contain normal, dysplastic and cancerous epithelial cells, as well as stromal components (fatty and connective tissue) and blood and lymphatic vessels. Our diagnostic interest focuses solely on the dysplastic and cancerous epithelial cells. The remaining tissue components serve to “contaminate” the signal of interest. The proportion of each of the tissue components changes as a function of patient characteristics (e.g., age), and varies spatially across the tumor region. Because each of the tissue components produces a different molecular signature, and the amount of each tissue type is specimen dependent, we must estimate the tissue composition of the specimen, and adjust the molecular signal for this composition. Using the idea of a chemical mass balance, we consider the total measured concentrations to be a weighted sum of the individual tissue signatures, where weights are determined by the relative amounts of the different tissue types. We develop a compositional source apportionment model to estimate the relative amounts of tissue components in a tumor specimen. We then use these estimates to infer the tissuespecific concentrations of key molecular targets for sub-typing individual tumors. We anticipate these specific measurements will greatly improve our ability to discriminate between different classes of tumors, and allow more precise matching of each patient to the appropriate treatment

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La captación de glucosa y su conversión en lactato juega un papel fundamental en el metabolismo tumoral, independientemente de la concentración de oxígeno presente en el tejido (efecto Warburg). Sin embrago, dicha captación varía de un tipo tumoral a otro, y dentro del mismo tumor, situación que podría depender de las características microambientales tumorales (fluctuaciones de oxígeno, presencia de otros tipos celulares) y de factores estresores asociados a los tratamientos. Se estudió el efecto de la hipoxia-reoxigenación (HR) y las radiaciones ionizantes (RI) sobre la captación de glucosa, en cultivos de líneas tumorales MCF-7 y HT-29, cultivadas de forma aislada o en cocultivo con la línea celular EAhy296. Se encontró que la captación de glucosa en HR es diferente para lo descrito en condiciones de hipoxia permanente y que es modificada en el cocultivo. Se identificaron poblaciones celulares dentro de la misma línea celular, de alta y baja captación de glucosa, lo que implicaría una simbiosis metabólica de la célula como respuesta adaptativa a las condiciones tumorales. Se evaluó la expresión de NRF2 y la translocación nuclear de NRF2 y HIF1a, como vías de respuesta a estrés celular e hipoxia. La translocación nuclear de las proteínas evaluadas explicaría el comportamiento metabólico de las células tumorales de seno, pero no de colon, por lo cual deben existir otras vías metabólicas implicadas. Las diferencias en el comportamiento de las células tumorales en HR en relación con hipoxia permitirá realizar planeaciones dosimétricas más dinámicas, que reevalúen las condiciones de oxigenación tumoral constantemente.

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La seguridad del paciente constituye una prioridad y un reto para los organismos Gubernamentales y para las instituciones de salud tanto a nivel nacional como internacional (Sescam, 2007), quienes han emprendido una búsqueda de soluciones por medio de diferentes metodologías y estrategias que permitan reducir al máximo los riesgos de la atención de salud para el paciente (Ministerio de Sanidad y Consumo, 2002). Aunque se cuenta con mejores sistemas o metodología de análisis y sistemas de notificación la persistencia del fenómeno es constante. ( Requena, Aranaz, Gea, Limón, Miralles, & Vitaller , 2010). En esta tesis se plantea una nueva alternativa de gestión en la seguridad del paciente a través de la Teoría de Restricciones (TOC) para emprender acciones que permitan analizar el sistema bajo esta nueva metodología, intervenir de manera oportuna, impactar y estimular al personal de salud a trabajar en la búsqueda del mejoramiento continuo para el establecimiento de un sistema efectivo de gestión de la seguridad del paciente y una cultura de seguridad de los trabajadores de la institución de salud.

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ANTECEDENTES: El aislamiento de células fetales libres o ADN fetal en sangre materna abre una ventana de posibilidades diagnósticas no invasivas para patologías monogénicas y cromosómicas, además de permitir la identificación del sexo y del RH fetal. Actualmente existen múltiples estudios que evalúan la eficacia de estos métodos, mostrando resultados costo-efectivos y de menor riesgo que el estándar de oro. Este trabajo describe la evidencia encontrada acerca del diagnóstico prenatal no invasivo luego de realizar una revisión sistemática de la literatura. OBJETIVOS: El objetivo de este estudio fue reunir la evidencia que cumpla con los criterios de búsqueda, en el tema del diagnóstico fetal no invasivo por células fetales libres en sangre materna para determinar su utilidad diagnóstica.  MÉTODOS: Se realizó una revisión sistemática de la literatura con el fin de determinar si el diagnóstico prenatal no invasivo por células fetales libres en sangre materna es efectivo como método de diagnóstico.  RESULTADOS: Se encontraron 5,893 artículos que cumplían con los criterios de búsqueda; 67 cumplieron los criterios de inclusión: 49.3% (33/67) correspondieron a estudios de corte transversal, 38,8% (26/67) a estudios de cohortes y el 11.9% (8/67) a estudios casos y controles. Se obtuvieron resultados de sensibilidad, especificidad y tipo de prueba. CONCLUSIÓN: En la presente revisión sistemática, se evidencia como el diagnóstico prenatal no invasivo es una técnica feasible, reproducible y sensible para el diagnóstico fetal, evitando el riesgo de un diagnóstico invasivo.

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Rhizobium leguminosarum bv. viciae forms nitrogen-fixing nodules on several legumes, including pea (Pisum sativum) and vetch (Vicia cracca), and has been widely used as a model to study nodule biochemistry. To understand the complex biochemical and developmental changes undergone by R. leguminosarum bv. viciae during bacteroid development, microarray experiments were first performed with cultured bacteria grown on a variety of carbon substrates (glucose, pyruvate, succinate, inositol, acetate, and acetoacetate) and then compared to bacteroids. Bacteroid metabolism is essentially that of dicarboxylate-grown cells (i.e., induction of dicarboxylate transport, gluconeogenesis and alanine synthesis, and repression of sugar utilization). The decarboxylating arm of the tricarboxylic acid cycle is highly induced, as is gamma-aminobutyrate metabolism, particularly in bacteroids from early (7-day) nodules. To investigate bacteroid development, gene expression in bacteroids was analyzed at 7, 15, and 21 days postinoculation of peas. This revealed that bacterial rRNA isolated from pea, but not vetch, is extensively processed in mature bacteroids. In early development (7 days), there were large changes in the expression of regulators, exported and cell surface molecules, multidrug exporters, and heat and cold shock proteins. fix genes were induced early but continued to increase in mature bacteroids, while nif genes were induced strongly in older bacteroids. Mutation of 37 genes that were strongly upregulated in mature bacteroids revealed that none were essential for nitrogen fixation. However, screening of 3,072 mini-Tn5 mutants on peas revealed previously uncharacterized genes essential for nitrogen fixation. These encoded a potential magnesium transporter, an AAA domain protein, and proteins involved in cytochrome synthesis.

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DNA microarrays can be used to measure environmental stress responses. If they are to be predictive of environmental impact, we need to determine if altered gene expression translates into negative impacts on individuals and populations. A large cDNA microarray (14000 spots) was created to measure molecular stress responses to cadmium in Daphnia magna,the most widely used aquatic indicator species, and relate responses to population growth rate (pgr). We used the array to detect differences in the transcription of genes in juvenile D. magna (24 h old) after 24 h exposure to a control and three cadmium concentrations (6, 20, and 37 mu g Cd2+ L-1). Stress responses at the population level were estimated following a further 8 days exposure. Pgr was approximately linear negative with increasing cadmium concentration over this range. The microarray profile of gene expression in response to acute cadmium exposure begins to provide an overview of the molecular responses of D. magna, especially in relation to growth and development. Of the responding genes, 29% were involved with metabolism including carbohydrate, fat and peptide metabolism, and energy production, 31% were involved with transcription/translation, while 40% of responding genes were associated with cellular processes like growth and moulting, ion transport, and general stress responses (which included oxidative stress). Our production and application of a large Daphnia magna microarray has shown that measured gene responses can be logically linked to the impact of a toxicant such as cadmium on somatic growth and development, and consequently pgr.