Showing 4,841 - 4,860 results of 31,153 for search '(( 50 ((nn decrease) OR (a decrease)) ) OR ( 5 ((wt decrease) OR (teer decrease)) ))', query time: 0.90s Refine Results
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    Propofol increased the number of the hippocampal pyramidal neurons and decreased the expression of the LC3-II protein and the number of lysosomes and autophagosomes in the ischemic... by Derong Cui (326839)

    Published 2013
    “…<p>I/R was induced by 2-vessel occlusion. Propofol 10, 50, or 100 mg/kg was administrated intraperitoneally and 3-MA (600 nM) was administered intracerebroventricularly 10 min after the onset of ischemia. (1) Sham-operated group (control group, Cont); (2) I/R group; (3) I/R+ 3-MA 600 nmol group; (4) I/R + propofol 10 mg/kg group; (5) I/R + propofol 50 mg/kg group; (6) I/R + propofol 100 mg/kg group; (7) I/R + vehicle (intralipid, 100 mg/kg) group. …”
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    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. 4853

    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. …”
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