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931.
Rebecca W.Y. Chan Lee Serpas Meng Ni Stefano Volpi Linda T. Hiraki Lai-Shan Tam Ali Rashidfarrokhi Priscilla C.H. Wong Lydia H.P. Tam Yueyang Wang Peiyong Jiang Alice S.H. Cheng Wenlei Peng Diana S.C. Han Patty P.P. Tse Pik Ki Lau Wing-Shan Lee Alberto Magnasco Elisa Buti Vanja Sisirak Nora AlMutairi K.C. Allen Chan Rossa W.K. Chiu Boris Reizis Y.M. Dennis Lo 《American journal of human genetics》2020,107(5):882
932.
Debora B. Petropolis Daniela M. Faust Matthieu Tolle Lise Rivière Tanguy Valentin Christine Neuveut Nora Hernandez-Cuevas Alexandre Dufour Jean-Christophe Olivo-Marin Nancy Guillen 《PloS one》2016,11(2)
Human liver infection is a major cause of death worldwide, but fundamental studies on infectious diseases affecting humans have been hampered by the lack of robust experimental models that accurately reproduce pathogen-host interactions in an environment relevant for the human disease. In the case of liver infection, one consequence of this absence of relevant models is a lack of understanding of how pathogens cross the sinusoidal endothelial barrier and parenchyma. To fill that gap we elaborated human 3D liver in vitro models, composed of human liver sinusoidal endothelial cells (LSEC) and Huh-7 hepatoma cells as hepatocyte model, layered in a structure mimicking the hepatic sinusoid, which enable studies of key features of early steps of hepatic infection. Built with established cell lines and scaffold, these models provide a reproducible and easy-to-build cell culture approach of reduced complexity compared to animal models, while preserving higher physiological relevance compared to standard 2D systems. For proof-of-principle we challenged the models with two hepatotropic pathogens: the parasitic amoeba Entamoeba histolytica and hepatitis B virus (HBV). We constructed four distinct setups dedicated to investigating specific aspects of hepatic invasion: 1) pathogen 3D migration towards hepatocytes, 2) hepatocyte barrier crossing, 3) LSEC and subsequent hepatocyte crossing, and 4) quantification of human hepatic virus replication (HBV). Our methods comprise automated quantification of E. histolytica migration and hepatic cells layer crossing in the 3D liver models. Moreover, replication of HBV virus occurs in our virus infection 3D liver model, indicating that routine in vitro assays using HBV or others viruses can be performed in this easy-to-build but more physiological hepatic environment. These results illustrate that our new 3D liver infection models are simple but effective, enabling new investigations on infectious disease mechanisms. The better understanding of these mechanisms in a human-relevant environment could aid the discovery of drugs against pathogenic liver infection. 相似文献
933.
Spatial Distribution of an Uranium-Respiring Betaproteobacterium at the Rifle,CO Field Research Site
Nicole M. Koribanics Steven J. Tuorto Nora Lopez-Chiaffarelli Lora R. McGuinness Max M. H?ggblom Kenneth H. Williams Philip E. Long Lee J. Kerkhof 《PloS one》2015,10(4)
The Department of Energy’s Integrated Field-Scale Subsurface Research Challenge Site (IFRC) at Rifle, Colorado was created to address the gaps in knowledge on the mechanisms and rates of U(VI) bioreduction in alluvial sediments. Previous studies at the Rifle IFRC have linked microbial processes to uranium immobilization during acetate amendment. Several key bacteria believed to be involved in radionuclide containment have been described; however, most of the evidence implicating uranium reduction with specific microbiota has been indirect. Here, we report on the cultivation of a microorganism from the Rifle IFRC that reduces uranium and appears to utilize it as a terminal electron acceptor for respiration with acetate as electron donor. Furthermore, this bacterium constitutes a significant proportion of the subsurface sediment community prior to biostimulation based on TRFLP profiling of 16S rRNA genes. 16S rRNA gene sequence analysis indicates that the microorganism is a betaproteobacterium with a high similarity to Burkholderia fungorum. This is, to our knowledge, the first report of a betaproteobacterium capable of uranium respiration. Our results indicate that this microorganism occurs commonly in alluvial sediments located between 3-6 m below ground surface at Rifle and may play a role in the initial reduction of uranium at the site. 相似文献
934.
Sanford D. Markowitz Nora L. Nock Stephanie L. Schmit Zsofia K. Stadler Vijai Joseph Lu Zhang Joseph E. Willis Peter Scacheri Martina Veigl Mark D. Adams Leon Raskin John F. Sullivan Kelly Stratton Jinru Shia Nathan Ellis Hedy S. Rennert Christopher Manschreck Li Li Kenneth Offit Robert C. Elston Gadi Rennert Stephen B. Gruber 《PloS one》2016,11(1)
We tested for germline variants showing association to colon cancer metastasis using a genome-wide association study that compared Ashkenazi Jewish individuals with stage IV metastatic colon cancers versus those with stage I or II non-metastatic colon cancers. In a two-stage study design, we demonstrated significant association to developing metastatic disease for rs60745952, that in Ashkenazi discovery and validation cohorts, respectively, showed an odds ratio (OR) = 2.3 (P = 2.73E-06) and OR = 1.89 (P = 8.05E-04) (exceeding validation threshold of 0.0044). Significant association to metastatic colon cancer was further confirmed by a meta-analysis of rs60745952 in these datasets plus an additional Ashkenazi validation cohort (OR = 1.92; 95% CI: 1.28–2.87), and by a permutation test that demonstrated a significantly longer haplotype surrounding rs60745952 in the stage IV samples. rs60745952, located in an intergenic region on chromosome 4q31.1, and not previously associated with cancer, is, thus, a germline genetic marker for susceptibility to developing colon cancer metastases among Ashkenazi Jews. 相似文献
935.
Sabrina L. Samudio-Ruiz rea M. Allan Carlos Fernando Valenzuela Nora I. Perrone-Bizzozero Kevin K. Caldwell 《Journal of neurochemistry》2009,109(5):1311-1323
The dentate gyrus (DG) is the central input region to the hippocampus and is known to play an important role in learning and memory. Previous studies have shown that prenatal alcohol is associated with hippocampal-dependent learning deficits and a decreased ability to elicit long-term potentiation (LTP) in the DG in adult animals. Given that activation of the extracellular signal-regulated kinase 1/2 (ERK1/2) signaling cascade by NMDA receptors is required for various forms of learning and memory, as well as LTP, in hippocampal regions, including the DG, we hypothesized that fetal alcohol-exposed adult animals would have deficits in hippocampal NMDA receptor-dependent ERK1/2 activation. We used immunoblotting and immunohistochemistry techniques to detect NMDA-stimulated ERK1/2 activation in acute hippocampal slices prepared from adult fetal alcohol-exposed mice. We present the first evidence linking prenatal alcohol exposure to deficits in NMDA receptor-dependent ERK1/2 activation specifically in the DG of adult offspring. This deficit may account for the LTP deficits previously observed in the DG, as well as the life-long cognitive deficits, associated with prenatal alcohol exposure. 相似文献
936.
937.
938.
Zusammenfassung 1. Aus 200 verschiedenen Stellen eines Wiesengebietes mit dem Ausmaß von 10×100 m waren 600 Bodenproben untersucht worden. In 367 Proben (61,1%) wurde der NematodeDiploscapter coronata festgestellt.2. Der NematodeD. coronata verbraucht die vegetativen Teile der im Boden lebenden keratinophilen PilzeKeratinomyces ajelloi, Trichophyton terrestre, Arthroderma tuberculatum undChrysosporium sp. Dies verläuft auch in unsterilen Bodenproben. In denen, wo das Vorkommen desD. coronata besonders stark war, verhinderte er das Wachstum der Dermatophyten auch dann, wenn in die Bodenproben weitere sterile Haare zugegeben wurden.3. Die Ergebnisse zeigen, daß die Mikrofauna des Bodens grundsätzlich die Verbreitung der keratinophilen Pilze auch in unsterilen Bodenproben regulieren kann.
Summary 1. 600 soil samples from 200 different spots of one meadow covering the area 10 by 100 m were examined. In 367 samples (61.1%) the nematodeDiploscapter coronata was found.2. The nematodeDiploscapter coronata consumes the vegetative parts of the keratinophilic soil fungiKeratinomyces ajelloi, Trichophyton terrestre, Chrysosporium keratinophilum andArthroderma tuberculatum even in non-sterile soil samples. In samples in which its occurrence was especially frequent it stopped the growth of dermatophytes even if sterile human hair had been added to the sample.3. The results show that the soil microfauna can considerably regulate the spreading of keratinophilic fungi even in non-sterile soil samples.相似文献
939.
The Effect of 1-Naphthaleneacetic Acid on the Endogenous Cytokinin Content of Aseptically Cultured Bark Segments of Salix babylonica 总被引:5,自引:0,他引:5
The formation of an undifferentiated wound callus from the cambialregion of bark explants of Salix babylonica was accompaniedby an increase in the endogenous cytokinin levels of the tissueduring the first six days of culture. Treatment of the explantswith 1-naphthaleneacetic acid decreased the level of extractablecytokinin. This decrease was not accompanied by a reductionin the cell number nor in the growth of the explants as reflectedby changes in dry weight. The significance of these findingsis discussed with reference to the known effects of auxin oncytokinin synthesis and degradation. (Received May 23, 1981; Accepted August 11, 1981) 相似文献
940.
Prenatal Ethanol Exposure Decreases GAP-43 Phosphorylation and Protein Kinase C Activity in the Hippocampus of Adult Rat Offspring 总被引:3,自引:0,他引:3
Nora I. Perrone-Bizzozero Tove V. Isaacson Gregory M. O. Keidan Cheryl Eriqat Karina F. Meiri Daniel D. Savage Andrea M. Allan 《Journal of neurochemistry》1998,71(5):2104-2111
Abstract: Consumption of moderate quantities of ethanol during pregnancy produces deficits in long-term potentiation in the hippocampal formation of adult offspring. Protein kinase C (PKC)-mediated phosphorylation of the presynaptic protein GAP-43 is critical for the induction of long-term potentiation. We tested the hypothesis that this system is affected in fetal alcohol-exposed (FAE) rats by measuring GAP-43 phosphorylation and PKC activity in the hippocampus of adult offspring of rat dams that had consumed one of three diets throughout gestation: (a) a 5% ethanol liquid diet, which produced a maternal blood ethanol concentration of 83 mg/dl (FAE); (b) an isocalorically equivalent 0% ethanol diet (pair-fed); or (c) lab chow ad libitum. Western blot analysis using specific antibodies to PKC-phosphorylated GAP-43 revealed that FAE rats had an ∼50% reduction in the proportion of phosphorylated GAP-43. Similarly, we found that PKC-mediated incorporation of 32 P into GAP-43 was reduced by 85% in hippocampal slices from FAE rats compared with both control groups. FAE animals also showed a 50% reduction in total hippocampal PKC activity, whereas the levels of six major PKC isozymes did not change in any of the diet groups. These results suggest that GAP-43 phosphorylation deficits in rats prenatally exposed to moderate levels of ethanol are not due to alterations in the expression of either the enzyme or substrate protein, but rather to a defect in kinase activation. 相似文献