Showing 4,541 - 4,560 results of 27,187 for search '(( 50 ((a decrease) OR (mean decrease)) ) OR ( 5 ((teer decrease) OR (nn decrease)) ))', query time: 0.68s Refine Results
  1. 4541

    Relationship between UCS, E, and water content. by Weisheng Zhao (3746023)

    Published 2025
    “…Based on the mechanical test results, reducing humidity can decrease the loss of uniaxial compressive strength (UCS) caused by moisture absorption from approximately 50% to 15.48%. …”
  2. 4542

    Hygroscopic experimental device. by Weisheng Zhao (3746023)

    Published 2025
    “…Based on the mechanical test results, reducing humidity can decrease the loss of uniaxial compressive strength (UCS) caused by moisture absorption from approximately 50% to 15.48%. …”
  3. 4543

    Nucleoid morphology disruption causes aberrant plasmid focus positioning. by Robert Ietswaart (676757)

    Published 2014
    “…<p>(<b>A</b>) Fluorescence localization of ParB-GFP (green) and Hoechst DNA stain (blue) in <i>mukE</i>, <i>mukF</i>, <i>matP</i> mutants and wild-type cells treated with 50 µg/ml nalidixic acid (Nal). …”
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  8. 4548

    Placenta-Enriched LincRNAs <i>MIR503HG</i> and <i>LINC00629</i> Decrease Migration and Invasion Potential of JEG-3 Cell Line by Bruna Rodrigues Muys (2588305)

    Published 2016
    “…Further analysis, using a cancer cell lines panel, showed that <i>MIR503HG and LINC00629</i> were expressed in 50% and 100% of the cancer cell lines, respectively. …”
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  11. 4551

    Addressing a Trapped High-Energy Water: Design and Synthesis of Highly Potent Pyrimidoindole-Based Glycogen Synthase Kinase-3β Inhibitors by Stanislav Andreev (11067165)

    Published 2021
    “…Surprisingly, our results demonstrate that this high-energy water was not displaced by our potent inhibitor (<i>S</i>)-3-(3-((7-ethynyl-9<i>H</i>-pyrimido­[4,5-<i>b</i>]­indol-4-yl)­(methyl)­amino)­piperidin-1-yl)­propanenitrile (<b>(<i>S</i>)</b>-<b>15</b>, IC<sub>50</sub> value of 6 nM). Instead, only a subtle shift in the location of this water molecule resulted in a dramatic decrease in the energy of this high-energy hydration site, as shown by the WaterMap analysis combined with microsecond timescale molecular dynamics simulations. …”
  12. 4552

    Addressing a Trapped High-Energy Water: Design and Synthesis of Highly Potent Pyrimidoindole-Based Glycogen Synthase Kinase-3β Inhibitors by Stanislav Andreev (11067165)

    Published 2021
    “…Surprisingly, our results demonstrate that this high-energy water was not displaced by our potent inhibitor (<i>S</i>)-3-(3-((7-ethynyl-9<i>H</i>-pyrimido­[4,5-<i>b</i>]­indol-4-yl)­(methyl)­amino)­piperidin-1-yl)­propanenitrile (<b>(<i>S</i>)</b>-<b>15</b>, IC<sub>50</sub> value of 6 nM). Instead, only a subtle shift in the location of this water molecule resulted in a dramatic decrease in the energy of this high-energy hydration site, as shown by the WaterMap analysis combined with microsecond timescale molecular dynamics simulations. …”
  13. 4553
  14. 4554

    Effect of anti-miR-146a LNA or miR-146a mimic upon IL-1β-induced release of inflammatory molecules. by Anand Iyer (135705)

    Published 2012
    “…Data are expressed relative to unstimulated control cells (mean ± SEM from three separate experiments). In comparison with IL-1ß alone, cultures stimulated with IL-1ß and transfected with LNA-anti miR-146a exhibited significant increase of IL-6 and IP-10 release, whereas transfection of glial cells with miR-146a mimic significantly decreased the levels of IL-6, IL-8, G-CSF, IFN-γ, IP-10, MIP-1β, and TNF-α (* p<0.05). …”
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  20. 4560