Showing 1 - 20 results of 71,905 for search '(( 5 ((((026 decrease) OR (nn decrease))) OR (_ decrease)) ) OR ( _ teer decrease ))', query time: 0.51s Refine Results
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    BA attenuated the decrease in the integrity and increase in the permeability of the epithelial barrier injury induced by LPS in Caco2 cell monolayers. by Luqiong Liu (11537092)

    Published 2024
    “…<p>(<b>A)</b> Changes in TEER with increasing culture time on days 1–22. (<b>B)</b> BA alleviated the LPS-induced decrease in TEER in Caco2 cells after treatment for 24 h. …”
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    Y-27632 collaborated with BA to attenuate the increase in the integrity and decrease in the permeability of epithelial barrier injury induced by LPS in Caco2 monolayers. by Luqiong Liu (11537092)

    Published 2024
    “…<p>(<b>A)</b> Y-27632 collaborated with BA to attenuate the effect of LPS on TEER in Caco2 cells on days 1–22. (<b>B)</b> Y-27632 collaborated with BA to attenuate the effect of LPS on TEER in Caco2 cells on day 22. …”
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    Etesevimab in combination with JS026 neutralizing SARS-CoV-2 and its variants by Fengze Wang (10452968)

    Published 2022
    “…As an antiviral agent, numerous mAbs recognize the epitopes that overlap with ACE2-binding sites in the SARS-CoV-2-RBD. Some studies have shown that residual changes on the spike protein can significantly decrease the efficiency of neutralizing antibodies. …”
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    Transepithelial electrical resistance (TEER) (N = 6). by Shirko Marcel Shokr (19173337)

    Published 2024
    “…High values were detected with high glucose (SMC/wo PA/HIGH: 4.4 k*Ωcm<sup>2</sup>; SMC/PA/HIGH: 5.51 kΩ*cm<sup>2</sup>; ALI/wo PA/HIGH: 5.23 kΩ*cm<sup>2</sup>; ALI/PA/HIGH: 5.46 kΩ*cm<sup>2</sup>) and lower values with low glucose (SMC/wo PA/LOW: 1.59 kΩ*cm<sup>2</sup>; SMC/PA/LOW: 1.59 kΩ*cm<sup>2</sup>; ALI/wo PA/LOW: 3.58 kΩ*cm<sup>2</sup>; ALI/PA/LOW: 3.27 kΩ*cm<sup>2</sup>. …”
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    Global Land Use Change Impacts on Soil Nitrogen Availability and Environmental Losses by Jing Wang (6206297)

    Published 2025
    “…By compiling a global data set of 1,782 paired observations from 185 publications, we show that land use conversion from natural to managed ecosystems significantly reduced NNM by 7.5% (−11.5, −2.8%) and increased NN by 150% (86, 194%), indicating decreasing N availability while increasing potential N loss through denitrification and nitrate leaching. …”