Showing 1 - 20 results of 72,653 for search '(( 10 ng decrease ) OR ( 5 ((mm decrease) OR (((_ decrease) OR (a decrease)))) ))', query time: 1.59s Refine Results
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    Glucose depletion decreases SBPM. by David S. Tourigny (7224299)

    Published 2019
    “…<b>B)</b> Synchronous burst frequency decreases following 10min incubation in the absence of extracellular glucose (25mM) and pyruvate (0.22mM), and significantly further still following a second 10min incubation. …”
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    mGluR5 receptor decreased glycinergic currents. by Zi-Yang Zhang (4988555)

    Published 2019
    “…<p>(<b>A–B</b>) Bath perfusion of DHPG for 3 min reduced GlyR-IPSCs (<b>A</b>; 70.2 ± 4.2% of baseline at 15–20 min post-DHPG, <i>t</i>[16] = 6.707, <i>p</i> < 0.001, paired Student <i>t</i> test), but not GABA<sub>A</sub>-receptor–mediated IPSCs (<b>B</b>; 102.9 ± 3.3% of baseline at 15–20 min post-DHPG, <i>t</i>[5] = 0.347, <i>p</i> = 0.743) in spinal slices of mice. …”
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    Delphinidin alters VEGF-A splicing to increase VEGF-A<sub>165</sub>b and decrease total VEGF-A expression. by Megan Stevens (3964886)

    Published 2019
    “…<p><b>A)</b> Treatment of podocytes with delphinidin chloride (10 μg/ml) under normal glucose (NG; 5 mM glucose + 25 mM mannitol) and high glucose (HG; 30 mM glucose, 1 ng/ml TNFα, 1 ng/ml IL-6, and 100 nM insulin) for 48 hrs increased the protein expression of VEGF-A<sub>165</sub>b relative to total VEGF-A<sub>165</sub> (quantified in <b>B</b>; *p<0.05 vs NG, †p<0.05 vs HG; n = 3 biological repeats; One-way ANOVA with Bonferroni post-hoc test for comparison between pairs; <b>A</b>—the same blot was first probed with VEGF-A<sub>165</sub>b before stripping and reprobing with panVEGF-A). …”
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    BA decreases mitochondrial membrane potential and superoxide production after one day of cell culture. by Bandik Föh (602419)

    Published 2022
    “…(G) Representative contour plots of CD138 and IL-10 GFP expression in isolated splenic B cells from IL-10 reporter mice after treatment with 0.5 mM BA and/or 100ng/ml PMA. …”
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    NgR1 KO mice exhibited an increase in excitatory synapses and a decrease in inhibitory synapses, indicating an imbalance of synaptic transmission. by Jinwei Zhang (462455)

    Published 2025
    “…The inhibitory synaptic density of NgR1 mice showed a significant decrease when compared to WT mice (***P <  0.001). …”