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a nn » a non (Expand Search), a n (Expand Search), _ nn (Expand Search)
point decrease » point increase (Expand Search)
fold decrease » fold increase (Expand Search), fold increased (Expand Search)
nn decrease » _ decrease (Expand Search), mean decrease (Expand Search), gy decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
a nn » a non (Expand Search), a n (Expand Search), _ nn (Expand Search)
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941
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942
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943
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944
Ether induces proteotoxic stress, leading to a decrease in Trx protein and an increase in Hsp90 clients that are joint targets of Trx and Ubx.
Published 2024“…<b>(F)</b> Representative images of Acridine Orange-stained <i>yw</i> embryos for the following cases: no treatment (up left), 5-min immersion in Citrasolv solution [<a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.3002629#pbio.3002629.ref046" target="_blank">46</a>] (up right), 5-min immersion in ether liquid (bottom right), and 1.5-h exposure to ether vapor (bottom left). …”
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945
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946
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947
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948
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949
HRMECs treated with 3-Deazaneplanocin A (DZNep) chemical inhibitor demonstrated increased miR-200b and decreased VEGF expression.
Published 2015“…[NG = 5mM D-glucose, HG = 25mM D-glucose, NG+DMSO = 5mM D-glucose + 0.05% DMSO, HG+DMSO = 25mM D-glucose + 0.05% DMSO, NG+DZNEP = 5mM D-glucose + 5μM DZNep, HG+DZNEP = 25mM + 5μM DZNep; identical letters represent groups that are not significantly different; p < 0.05; n = 6; data expressed as mean ± SEM, normalized to β-actin for VEGF and U6 for miR-200b, expressed as a fold change of NG].…”
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950
Nitric Oxide Oxidatively Nitrosylates Ni(I) and Cu(I) <i>C</i>-Organonitroso Adducts
Published 2009“…[Me<sub>2</sub>NN]Cu(NCMe) reacts with 0.5 equiv of ArNO in ether to give the dinuclear adducts {[Me<sub>2</sub>NN]Cu}<sub>2</sub>(μ-η<sup>2</sup>:η<sup>1</sup>-ONAr) (<b>2a</b> and <b>2b</b>), which exhibit η<sup>2</sup> and η<sup>1</sup> bonding of the ArNO moiety with separate [Me<sub>2</sub>NN]Cu fragments possessing N−O distances of 1.375(6) Å (<b>2a</b>) and 1.368(2) Å (<b>2b</b>). …”
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951
Nitric Oxide Oxidatively Nitrosylates Ni(I) and Cu(I) <i>C</i>-Organonitroso Adducts
Published 2009“…[Me<sub>2</sub>NN]Cu(NCMe) reacts with 0.5 equiv of ArNO in ether to give the dinuclear adducts {[Me<sub>2</sub>NN]Cu}<sub>2</sub>(μ-η<sup>2</sup>:η<sup>1</sup>-ONAr) (<b>2a</b> and <b>2b</b>), which exhibit η<sup>2</sup> and η<sup>1</sup> bonding of the ArNO moiety with separate [Me<sub>2</sub>NN]Cu fragments possessing N−O distances of 1.375(6) Å (<b>2a</b>) and 1.368(2) Å (<b>2b</b>). …”
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952
Nitric Oxide Oxidatively Nitrosylates Ni(I) and Cu(I) <i>C</i>-Organonitroso Adducts
Published 2009“…[Me<sub>2</sub>NN]Cu(NCMe) reacts with 0.5 equiv of ArNO in ether to give the dinuclear adducts {[Me<sub>2</sub>NN]Cu}<sub>2</sub>(μ-η<sup>2</sup>:η<sup>1</sup>-ONAr) (<b>2a</b> and <b>2b</b>), which exhibit η<sup>2</sup> and η<sup>1</sup> bonding of the ArNO moiety with separate [Me<sub>2</sub>NN]Cu fragments possessing N−O distances of 1.375(6) Å (<b>2a</b>) and 1.368(2) Å (<b>2b</b>). …”
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953
Nitric Oxide Oxidatively Nitrosylates Ni(I) and Cu(I) <i>C</i>-Organonitroso Adducts
Published 2009“…[Me<sub>2</sub>NN]Cu(NCMe) reacts with 0.5 equiv of ArNO in ether to give the dinuclear adducts {[Me<sub>2</sub>NN]Cu}<sub>2</sub>(μ-η<sup>2</sup>:η<sup>1</sup>-ONAr) (<b>2a</b> and <b>2b</b>), which exhibit η<sup>2</sup> and η<sup>1</sup> bonding of the ArNO moiety with separate [Me<sub>2</sub>NN]Cu fragments possessing N−O distances of 1.375(6) Å (<b>2a</b>) and 1.368(2) Å (<b>2b</b>). …”
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954
Nitric Oxide Oxidatively Nitrosylates Ni(I) and Cu(I) <i>C</i>-Organonitroso Adducts
Published 2009“…[Me<sub>2</sub>NN]Cu(NCMe) reacts with 0.5 equiv of ArNO in ether to give the dinuclear adducts {[Me<sub>2</sub>NN]Cu}<sub>2</sub>(μ-η<sup>2</sup>:η<sup>1</sup>-ONAr) (<b>2a</b> and <b>2b</b>), which exhibit η<sup>2</sup> and η<sup>1</sup> bonding of the ArNO moiety with separate [Me<sub>2</sub>NN]Cu fragments possessing N−O distances of 1.375(6) Å (<b>2a</b>) and 1.368(2) Å (<b>2b</b>). …”
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955
Nitric Oxide Oxidatively Nitrosylates Ni(I) and Cu(I) <i>C</i>-Organonitroso Adducts
Published 2009“…[Me<sub>2</sub>NN]Cu(NCMe) reacts with 0.5 equiv of ArNO in ether to give the dinuclear adducts {[Me<sub>2</sub>NN]Cu}<sub>2</sub>(μ-η<sup>2</sup>:η<sup>1</sup>-ONAr) (<b>2a</b> and <b>2b</b>), which exhibit η<sup>2</sup> and η<sup>1</sup> bonding of the ArNO moiety with separate [Me<sub>2</sub>NN]Cu fragments possessing N−O distances of 1.375(6) Å (<b>2a</b>) and 1.368(2) Å (<b>2b</b>). …”
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956
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957
A PPARα Promoter Variant Impairs ERR-Dependent Transactivation and Decreases Mortality after Acute Coronary Ischemia in Patients with Diabetes
Published 2010“…<em>PPARA</em> A for both ERR-α and -γ (3.1 vs.1.9-fold; P<0.05). …”
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958
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959
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960
Albumin Decrease Is Associated with Spontaneous Preterm Delivery within 48 h in Women with Threatened Preterm Labor
Published 2015“…SWATH methodology quantified 258 proteins (using ≥2 peptides) and 5 proteins (ALBU, ANXA6, HNRPK, HSP90A, and PDIA1) were differentially expressed (<i>p</i> < 0.05, Mann–Whitney <i>U</i>). iTRAQ workflow identified 765 proteins; 354 proteins were quantified and 14 proteins (MIF, UBIQ, HXK3, ALBU, HNRPD, ST1A2, RS15A, RAP1B, CAN1, IQGA2, ST1A1, COX5A, ADDA, and UBQL1) were significantly different between the two groups of women (<i>p</i> < 0.05, Mann–Whitney <i>U</i>). …”