944 resultados para amniotic fluid


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The aim of this study was to determine the incidence of congenital toxoplasmosis (CT) and to assess the performances of prenatal and neonatal diagnoses. From 1994-2005, in Toulouse University Hospital, France, amniocentesis was performed on 352 pregnant women who were infected during pregnancy. All women were treated with spiramycin and pyrimethamine-sulfadoxine when prenatal diagnosis was positive. Among the 275 foetuses with follow-up, 66 (24%) were infected. The transmission rates of Toxoplasma gondii were 7%, 24% and 59% in the first, second and third trimesters, respectively. The sensitivity and specificity of PCR on amniotic fluid (AF) were 91% and 99.5%, respectively. One case was diagnosed by mouse inoculation with AF and six cases were diagnosed by neonatal or postnatal screening. The sensitivity and specificity of PCR on placentas were 52% and 99%, respectively. The sensitivity of tests for the detection of specific IgA and IgM in cord blood was 53% and 64%, respectively, and specificity values were 91% and 92%. In conclusion, PCR performed on AF had the highest levels of sensitivity and specificity for the diagnosis of CT. This permits an early diagnosis of most cases and should be recommended.

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In obstetrics, premature rupture of the membranes (PROM) is a frequent observation which is responsible for many premature deliveries. PROM is also associated with an increased risk of fetal and maternal infections. Early diagnosis is mandatory in order to decrease such complications. Despite that current biological tests allowing the diagnosis of PROM are both sensitive and specific, contamination of the samples by maternal blood can induce false positive results. Therefore, in order to identify new potential markers of PROM (present only in amniotic blood, and absent in maternal blood), proteomic studies were undertaken on samples collected from six women at terms (pairs of maternal plasma and amniotic fluid) as well as on four samples of amniotic fluid collected from other women at the 17(th) week of gestation. All samples (N = 16) were analyzed by two-dimensional (2-D) high-resolution electrophoresis, followed by sensitive silver staining. The gel images were studied using bioinformatic tools. Analyses were focused on regions corresponding to pI between 4.5 and 7 and to molecular masses between 20 and 50 kDa. In this area, 646 +/- 113 spots were detected, and 27 spots appeared to be present on the gels of amniotic fluid, but were absent on those of maternal plasma. Nine out of these 27 spots were also observed on the gels of the four samples of amniotic fluids collected at the 17(th) week of pregnancy. Five of these 9 spots were unambiguously detected on preparative 2-D gels stained by Coomassie blue, and were identified by mass spectrometry analyses. Three spots corresponded to fragments of plasma proteins, and 2 appeared to be fragments of proteins not known to be present in plasma. These 2 proteins were agrin (SWISS-PROT: O00468) and perlecan (SWISS-PROT: P98160). Our results show that proteomics is a valuable approach to identify new potential biological markers for future PROM diagnosis.

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An unusually high incidence of microcephaly in newborns has recently been observed in Brazil. There is a temporal association between the increase in cases of microcephaly and the Zika virus (ZIKV) epidemic. Viral RNA has been detected in amniotic fluid samples, placental tissues and newborn and fetal brain tissues. However, much remains to be determined concerning the association between ZIKV infection and fetal malformations. In this study, we provide evidence of the transplacental transmission of ZIKV through the detection of viral proteins and viral RNA in placental tissue samples from expectant mothers infected at different stages of gestation. We observed chronic placentitis (TORCH type) with viral protein detection by immunohistochemistry in Hofbauer cells and some histiocytes in the intervillous spaces. We also demonstrated the neurotropism of the virus via the detection of viral proteins in glial cells and in some endothelial cells and the observation of scattered foci of microcalcifications in the brain tissues. Lesions were mainly located in the white matter. ZIKV RNA was also detected in these tissues by real-time-polymerase chain reaction. We believe that these findings will contribute to the body of knowledge of the mechanisms of ZIKV transmission, interactions between the virus and host cells and viral tropism.

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Scrapie is a transmissible spongiform encephalopathy with a wide PrPres dissemination in many non-neural tissues and with high levels of transmissibility within susceptible populations. Mechanisms of transmission are incompletely understood. It is generally assumed that it is horizontally transmitted by direct contact between animals or indirectly through the environment, where scrapie can remain infectious for years. In contrast, in utero vertical transmission has never been demonstrated and has rarely been studied. Recently, the use of the protein misfolding cyclic amplification technique (PMCA) has allowed prion detection in various tissues and excretions in which PrPres levels have been undetectable by traditional assays. The main goal of this study was to detect PrPres in fetal tissues and the amniotic fluid from natural scrapie infected ewes using the PMCA technique. Six fetuses from three infected pregnant ewes in an advanced clinical stage of the disease were included in the study. From each fetus, amniotic fluid, brain, spleen, ileo-cecal valve and retropharyngeal lymph node samples were collected and analyzed using Western blotting and PMCA. Although all samples were negative using Western blotting, PrPres was detected after in vitro amplification. Our results represent the first time the biochemical detection of prions in fetal tissues, suggesting that the in utero transmission of scrapie in natural infected sheep might be possible.

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In vertebrates, early brain development takes place at the expanded anterior end of the neural tube. After closure of the anterior neuropore, the brain wall forms a physiologically sealed cavity that encloses embryonic cerebrospinal fluid (E-CSF), a complex and protein-rich fluid that is initially composed of trapped amniotic fluid. E-CSF has several crucial roles in brain anlagen development. Recently, we reported the presence of transient blood-CSF barrier located in the brain stem lateral to the ventral midline, at the mesencephalon and prosencephalon level, in chick and rat embryos by transporting proteins, water, ions and glucose in a selective manner via transcellular routes. To test the actual relevance of the control of E-CSF composition and homeostasis on early brain development by this embryonic blood-CSF barrier, we block the activity of this barrier by treating the embryos with 6-aminonicotinamide gliotoxin (6-AN). We demonstrate that 6-AN treatment in chick embryos blocks protein transport across the embryonic blood-CSF barrier, and that the disruption of the barrier properties is due to the cease transcellular caveolae transport, as detected by CAV-1 expression cease. We also show that the lack of protein transport across the embryonic blood-CSF barrier influences neuroepithelial cell survival, proliferation and neurogenesis, as monitored by neurepithelial progenitor cells survival, proliferation and neurogenesis. The blockage of embryonic blood-CSF transport also disrupts water influx to the E-CSF, as revealed by an abnormal increase in brain anlagen volume. These experiments contribute to delineate the actual extent of this blood-CSF embryonic barrier controlling E-CSF composition and homeostasis and the actual important of this control for early brain development, as well as to elucidate the mechanism by which proteins and water are transported thought transcellular routes across the neuroectoderm, reinforcing the crucial role of E-CSF for brain development.

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Interphase cytogenetics, utilizing fluorescence in situ hybridization (FISH) techniques, has been successfully applied to diffuse and solid tissue specimens. Most studies have been performed on isolated cells, such as blood or bone marrow cells; a few have been performed on cells from body fluids, such as amniotic fluid, urine, sperm, and sputum. Mechanically or chemically disaggregated cells from solid tissues have also been used as single cell suspensions for FISH. Additionally, intact organized tissue samples represented by touch preparations or thin tissue sections have been used, especially in cancer studies. Advantages and pitfalls of application of FISH methodology to each type of specimen and some significant biological findings achieved are illustrated in this overview.

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Babies with gastroschisis have high morbidity, which is associated with inflammatory bowel injury caused by exposure to amniotic fluid. The objective of this study was to identify components of the inflammatory response in the intestine and liver in an experimental model of gastroschisis in rats. The model was surgically created at 18.5 days of gestation. The fetuses were exposed through a hysterotomy and an incision at the right of the umbilicus was made, exposing the fetal bowel. Then, the fetus was placed back into the uterus until term. The bowel in this model had macro- and microscopic characteristics similar to those observed in gastroschisis. The study was conducted on three groups of 20 fetuses each: gastroschisis, control, and sham fetuses. Fetal body, intestine and liver weights and intestine length were measured. IL-1β, IL-6, IL-10, TNF-α, IFN-γ and NF-kappaB levels were assessed by ELISA. Data were analyzed statistically by ANOVA followed by the Tukey post-test. Gastroschisis fetuses had a decreased intestine length (means ± SD, 125 ± 25 vs 216 ± 13.9; P < 0.005) and increased intestine weight (0.29 ± 0.05 vs 0.24 ± 0.04; P < 0.005). Intestine length correlated with liver weight only in gastroschisis fetuses (Pearson’s correlation coefficient, r = 0.518, P = 0.019). There were no significant differences in the concentrations of IL-1β, TNF-α or IFN-γ in the intestine, whereas the concentration of NF-kappaB was increased in both the intestine and liver of fetuses with gastroschisis. These results show that the inflammatory response in the liver and intestine of the rat model of gastroschisis is accompanied by an increase in the amount of NF-kappaB in the intestine and liver.

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Multipotent mesenchymal stromal cells (MSCs) were first isolated from bone marrow and then from various adult tissues including placenta, cord blood, deciduous teeth, and amniotic fluid. MSCs are defined or characterized by their ability to adhere to plastic, to express specific surface antigens, and to differentiate into osteogenic, chondrogenic, adipogenic, and myogenic lineages. Although the molecular mechanisms that control MSC proliferation and differentiation are not well understood, the involvement of microRNAs has been reported. In the present study, we investigated the role of miR-125b during osteoblastic differentiation in humans. We found that miR-125b increased during osteoblastic differentiation, as well as Runx2 and ALPL genes. To study whether the gain or loss of miR-125b function influenced osteoblastic differentiation, we transfected MSCs with pre-miR-125b or anti-miR-125b and cultured the transfected cells in an osteoblastic differentiation medium. After transfection, no change was observed in osteoblastic differentiation, and Runx2, OPN, and ALPL gene expression were not changed. These results suggest that the gain or loss of miR-125b function does not influence levels of Runx2, OPN, and ALPL during osteoblastic differentiation.

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Le syndrome d’embolie de liquide amniotique (SELA) est une complication rare et souvent catastrophique de l’accouchement chez la femme caractérisée classiquement par une hypotension sévère, un arrêt cardiorespiratoire et une coagulation intra-vasculaire disséminée. Malheureusement, sa physiopathologie est encore mal connue. Le rôle des kinines n’a notamment pas été étudié. L’objectif de notre projet était de développer un modèle animal de SELA et d’étudier le rôle éventuel des kinines dans ce syndrome. Douze lapines en fin de gestation ont été incluses dans l’étude. Pour chacune d’entre-elles, le liquide amniotique était aspiré de chaque sac amniotique après une laparotomie. Six lapines recevaient un bolus de liquide amniotique injecté via la veine auriculaire alors que les six autres recevaient un bolus de saline. Parallèlement, les effets in vitro de liquide amniotique sur la coagulation étaient évalués par thrombelastographie (TEG) et comparés aux effets de la saline. L’injection de liquide amniotique n’a pas permis de reproduire les signes cliniques de SELA, n’a pas entrainé la génération de bradykinine, et n’a pas eu d’effet sur le temps de prothrombine, le temps de thromboplastine partielle activée, et l’activité du facteur VIII de. Une thrombocytopénie sévère et transitoire a cependant été notée 5 minutes après l’injection de liquide amniotique. De plus, en additionnant in vitro de liquide amniotique au sang on a observé un tracé de TEG hypercoagulable comparé à celui obtenu avec la saline. Le modèle n’ayant pas pu reproduire le SELA, le rôle des kinines dans ce syndrome reste à déterminer.

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Objetivo: Determinar los factores de riesgo de anteparto, intraparto y fetales asociados a asfixia perinatal en los recién nacidos del servicio de neonatología del Hospital Universitario Mayor Méderi de Bogotá, 2010-2011. Materiales y métodos: Estudio de casos y controles pareado por fecha de nacimiento, con una relación 1:5(51:306). Las asociaciones se evaluaron con la prueba de ji-cuadrado de Mantel y Haenszel o Test de Fisher para datos pareados, con OR e intervalo de confianza del 95%, el análisis multivariado con un modelo de regresión logística condicional. Resultados: Los factores de riesgo con asociación significativa fueron: - Ante parto: Antecedentes patológicos maternos (OR=6.00,IC95%:1.55-23.19,p=0.013), primigestación (OR=1.91,IC95%:1.02-3.56,p=0,090), -Intraparto: Abruptio de placenta (OR=25,00,IC95%:2.92-213.99,p=0.001), hemorragia del tercer trimestre (OR=12.50,IC95%:2.43-64.43,p=0.001), Oligohidramnios(OR=6.25,IC95%:1.68-23.28,p=0.001), taquicardia fetal (OR=7.66,IC95%:1.67-35.04,p=0.011), monitoreo fetal intraparto anormal (OR=10.33,IC95%:4.38-24.34,p=0.001), expulsivo prolongado(OR=13.00,IC95%:4.63-36.46,p=0.001), fiebre materna(p<0.001), corioamnionitis(p<0.001), convulsiones maternas(p<0.001), bradicardia fetal (p=<0.001), -Fetales: Género masculino(OR=1.87,IC95%:1.02-3.44,p=0.026), edad gestacional por BALLARD igual ó <36semanas(OR=4.78(IC95%:2.21-10.35,p=0.001), vía del nacimiento instrumentado(OR=18,80,IC95%:3.69-39.55,p=0.001), líquido amniótico hemorrágico o teñido de meconio(OR= 9.00,IC95%:3.01-26.85,p=0.001), circular de cordón(OR=9.00,IC95%:3.59-22.52,p=0.001), peso al nacer igual ó <2500 gramos (OR=8.88,IC95%:3.73-21.15,p=0.001). Los subrayados y el síndrome hipertensivo asociado al embarazo se encontraron significativos en análisis multivariado. Conclusiones: Los factores de riesgo para asfixia perinatal fueron: antecedentes patológicos maternos, primigestación, abruptio de placenta, hemorragia del tercer trimestre, oligohidramnios, monitoreo fetal intraparto anormal, taquicardia y bradicardia fetal, expulsivo prolongado, corioamnionitis, fiebre materna, convulsiones maternas, género masculino, edad gestacional por BALLARD igual ó <36 semanas, vía del nacimiento instrumentado, líquido amniótico hemorrágico o teñido de meconio, circular de cordón, peso al nacer igual ó <2500 gramos.