Showing 141 - 160 results of 29,768 for search '(( 50 ms decrease ) OR ((( 50 a decrease ) OR ( 16 ((we decrease) OR (mean decrease)) ))))', query time: 0.76s Refine Results
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    The primers related to FAM50A. by Longhai Li (4052044)

    Published 2025
    “…Knockdown of FAM50A decreased cell proliferation ability, the proportion of EdU positive cells, and the number of CRC cell colonies, whereas overexpressing FAM50A promoted proliferative phenotypes. …”
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    Inclusion of TPP side chains result in decreased melanoma cell mitochondria membrane potential, oxygen consumption, and increased DHE oxidation. by Kyle C. Kloepping (9928265)

    Published 2020
    “…<p>(A) A375 melanoma cells were treated with 0.5 μM, 1.0 μM, or 2.0 μM 5-, 10-, or 16-TPP for 1 h and analyzed for mitochondria membrane potential by the JC-1 method (* significant relative to control; p<0.05; n = 2 from 2 separate experiments; N = 4). …”
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    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”
  18. 158

    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”
  19. 159

    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”
  20. 160

    Nanodomains and Their Temperature Dependence in a Phosphonium-Based Ionic Liquid: A Single-Molecule Tracking Study by Jemima Opare-Addo (14657955)

    Published 2024
    “…The slow population accounts for 16%, with a diffusion coefficient of 0.104 μm<sup>2</sup>/s, while the fast population constitutes 84% with a diffusion coefficient of 0.634 μm<sup>2</sup>/s. …”