Showing 2,041 - 2,060 results of 102,687 for search '(( a web decrease ) OR ( 5 ((fold decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 1.54s Refine Results
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    TUDCA decreases MPO with improved mitochondrial biogenesis, mitochondria-ER contact, and alveolar formation of HOX neonatal rat lungs. by Kirkwood A. Pritchard Jr. (13449794)

    Published 2022
    “…<p>(<b>A</b>) The increased MPO levels in HOX neonatal lungs are decreased by TUDCA treatment (0.1±0.1-fold; n = 6, p<0.05). …”
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    Bortezomib in combination with the PLK1 inhibitor BI 2536 induces a significant downregulation of the total levels and phosphorylation of Bcr-Abl, a decrease of downstream phosphorylated STAT5 and a caspase-dependent cell death in TKIs-resistant and –sensitive K562 cell lines. by Octavian Bucur (470431)

    Published 2013
    “…K562 and K562-R cells were treated with 9nM bortezomib and 8nM BI 2536 for 60h, followed by the detection of Bcr-Abl and phosphorylated STAT5. The combined treatment resulted in a marked decrease of the total levels of Bcr-Abl, which correlates with a decrease in the phosphorylation of the downstream STAT5 protein, in both K562 and K562-R cells. β-Actin was used as an internal loading control. …”
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    Image2_A Novel Plant Leaf Patch Absorbed With IL-33 Antibody Decreases Venous Neointimal hyperplasia.TIFF by Boao Xie (11621803)

    Published 2021
    “…IL-33 plays a role in venous neointimal hyperplasia both in humans and rats; neutralization of IL-33 by IL-33 antibody can be a therapeutic method to decrease venous neointimal hyperplasia.…”
  12. 2052

    Image1_A Novel Plant Leaf Patch Absorbed With IL-33 Antibody Decreases Venous Neointimal hyperplasia.TIFF by Boao Xie (11621803)

    Published 2021
    “…IL-33 plays a role in venous neointimal hyperplasia both in humans and rats; neutralization of IL-33 by IL-33 antibody can be a therapeutic method to decrease venous neointimal hyperplasia.…”
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    Simulated Sea Level Rise in Coastal Peat Soils Stimulates Mercury Methylation by Bryce A. Cook (19433235)

    Published 2024
    “…Coastal wetlands are vulnerable to sea level rise with unknown consequences for mercury (Hg) cycling, particularly the potential for exacerbating neurotoxic methylmercury (MeHg) production and bioaccumulation in food webs. Here, the effect of sea level rise on MeHg formation in the Florida Everglades was evaluated by incubating peat cores from a freshwater wetland for 0–20 days in the laboratory at five salinity conditions (0.16–6.0 parts-per-thousand; 0.20–454 mg L<sup>–1</sup> sulfate (SO<sub>4</sub><sup>2–</sup>)) to simulate the onset of sea level rise within coastal margins. …”
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