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1821
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1822
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1823
<i>Zip88E</i><sup><i>Δ/Δ</i></sup> larvae have decreased <i>MtnB</i>:<i>EYFP</i> expression.
Published 2017“…C) There is an approximate 5 fold decrease in <i>MtnB</i>:<i>EYFP</i> expression in <i>Zip88E</i><sup><i>Δ/Δ</i></sup> larvae compared to controls when raised on basal media. …”
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1824
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1825
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1826
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1827
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1828
Primary small molecule screen to identify attenuators of CSE-induced decrease in size and increase in MUC5AC.
Published 2023“…Hit compounds at 1 and 10μM concentrations that <b>B)</b> increased spheroid size (swell) or <b>C)</b> decreased MUC5AC staining in the lumen relative to DMSO and CSE 3%-treated bronchospheres. …”
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1829
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1830
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1831
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1832
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1833
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1834
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1835
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1836
LiCl administered via 0.5% LiCl food pellets for 4 wks decreases GFAP levels in <i>Gfap</i>-R236H/+ mice.
Published 2015“…<p>(A) Survival analysis for mice treated with 0.5% LiCl in food pellets for 4 wks. 94.7% (36/38) R236H/+ mice survived LiCl treatment while 100% of mice in other groups survived. …”
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1837
Delphinidin alters VEGF-A splicing to increase VEGF-A<sub>165</sub>b and decrease total VEGF-A expression.
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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1838
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1839
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1840
Experimental and Computational Insight into the Mechanism of NO Binding to Ferric Microperoxidase. The Likely Role of Tautomerization to Account for the pH Dependence
Published 2021“…From the pH dependence of the second-order rate constant for NO binding (<i>k</i><sub>on</sub>), we determined individual rate constants characterizing forms <b>1</b>–<b>3</b>, revealing only a ca. 10-fold decrease in the NO binding rate on going from <b>1</b> (<i>k</i><sub>on</sub><sup>(<b>1</b>)</sup> = 3.8 × 10<sup>6</sup> M<sup>–1</sup> s<sup>–1</sup>) to <b>2</b> (<i>k</i><sub>on</sub><sup>(<b>2</b>)</sup> = 4.0 × 10<sup>5</sup> M<sup>–1</sup> s<sup>–1</sup>) and the inertness of <b>3</b>. …”