Showing 101 - 120 results of 64,138 for search '(( 5 nm decrease ) OR ( 5 ((ng decrease) OR (((teer decrease) OR (a decrease)))) ))', query time: 0.70s Refine Results
  1. 101

    Functional Plasmonic Microscope: Characterizing the Metabolic Activity of Single Cells via Sub-nm Membrane Fluctuations by Suraj D. Khochare (18288990)

    Published 2024
    “…A low-concentration dose showed a reduced fluctuation frequency with consistent fluctuation amplitudes, while the high-concentration dose showcased a decreasing trend in both cases. …”
  2. 102

    Functional Plasmonic Microscope: Characterizing the Metabolic Activity of Single Cells via Sub-nm Membrane Fluctuations by Suraj D. Khochare (18288990)

    Published 2024
    “…A low-concentration dose showed a reduced fluctuation frequency with consistent fluctuation amplitudes, while the high-concentration dose showcased a decreasing trend in both cases. …”
  3. 103

    Functional Plasmonic Microscope: Characterizing the Metabolic Activity of Single Cells via Sub-nm Membrane Fluctuations by Suraj D. Khochare (18288990)

    Published 2024
    “…A low-concentration dose showed a reduced fluctuation frequency with consistent fluctuation amplitudes, while the high-concentration dose showcased a decreasing trend in both cases. …”
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    Characterization of a native ASIC1a-type current in deep projection neurons from laminae V. by Magda Chafaï (15307098)

    Published 2023
    “…Extracellular applications of the ASIC1a inhibitory peptides PcTx1 (30nM) or mambalgin-1 (1μM) both decrease the amplitude of native pH6.6-induced currents. …”
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    Structure-Based Design of a Chemical Probe Set for the 5‑HT<sub>5A</sub> Serotonin Receptor by Anat Levit Kaplan (12126567)

    Published 2022
    “…Docking over 6 million molecules against a 5-HT<sub>5A</sub>R homology model identified 5 mid-μM ligands, one of which was optimized to <b>UCSF678</b>, a 42 nM arrestin-biased partial agonist at the 5-HT<sub>5A</sub>R with a more restricted off-target profile and decreased assay liabilities versus SB-699551. …”
  14. 114

    Structure-Based Design of a Chemical Probe Set for the 5‑HT<sub>5A</sub> Serotonin Receptor by Anat Levit Kaplan (12126567)

    Published 2022
    “…Docking over 6 million molecules against a 5-HT<sub>5A</sub>R homology model identified 5 mid-μM ligands, one of which was optimized to <b>UCSF678</b>, a 42 nM arrestin-biased partial agonist at the 5-HT<sub>5A</sub>R with a more restricted off-target profile and decreased assay liabilities versus SB-699551. …”
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