Showing 46,841 - 46,860 results of 226,405 for search '(( a ((((teer decrease) OR (a decrease))) OR (linear decrease)) ) OR ( a large decrease ))', query time: 1.92s Refine Results
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    Activation of STAT3 and STAT1 dependent signaling following EGF treatment of HTR-8/SVneo cells. by Ankita Malik (1863829)

    Published 2017
    “…<p>HTR-8/SVneo cells were treated with EGF (10 ng/ml) for varying time periods followed by Western blot analysis to determine activation of STAT1 and STAT3 as described in <i>Materials and Methods</i>. Panel A represents the densitometric plot showing relative increase in phosphorylated STAT3 (ser 727 and tyr 705) levels in EGF treated cells with respect to untreated control as compared to total STAT3. …”
  11. 46851

    Lu<sub>8</sub>Te and Lu<sub>7</sub>Te. Novel Substitutional Derivatives of Lutetium Metal by Ling Chen (25698)

    Published 2003
    “…Lu<sub>7</sub>Te is produced by arc-melting of a suitable Lu−Lu<sub>2</sub>Te<sub>3</sub> mixture, with good crystals being formed by subsequent annealing at 1300 °C. …”
  12. 46852

    Transparent, Superhydrophobic Surface with Varied Surface Tension Responsiveness in Wettability Based on Tunable Porous Silica Structure for Gauging Liquid Surface Tension by Yan Wang (15435)

    Published 2017
    “…However, the SCA on the BC-silica surface decreases gradually except for γ ≈ 30.81 mN/m, and the SCA undergoes a sharp decline at γ ≈ 30.81 mN/m. …”
  13. 46853

    Transparent, Superhydrophobic Surface with Varied Surface Tension Responsiveness in Wettability Based on Tunable Porous Silica Structure for Gauging Liquid Surface Tension by Yan Wang (15435)

    Published 2017
    “…However, the SCA on the BC-silica surface decreases gradually except for γ ≈ 30.81 mN/m, and the SCA undergoes a sharp decline at γ ≈ 30.81 mN/m. …”
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    The Red Queen Model of Recombination Hotspots Evolution in the Light of Archaic and Modern Human Genomes by Yann Lesecque (660161)

    Published 2014
    “…There is evidence that the location of hotspots evolves rapidly, as a consequence of changes in PRDM9 DNA-binding domain. …”
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