Showing 121 - 140 results of 29,026 for search '(((( 50 c decrease ) OR ( 50 ((we decrease) OR (nn decrease)) ))) OR ( a mean decrease ))', query time: 0.69s Refine Results
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    Exposure to low CO<sub>2</sub> levels decreases ER cholesterol levels. by Nityanand Bolshette (17396845)

    Published 2023
    “…<b>(D, E)</b> The free cholesterol and cholesterol ester levels in the ER membrane from the cells as in <b>(C)</b>, were quantified with shotgun lipidomics analysis (see <a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.3002367#pbio.3002367.s007" target="_blank">S7 Fig</a> and <a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.3002367#pbio.3002367.s012" target="_blank">S5 Table</a>) (mean ± SE, <i>n</i> = 3 independent experiments, **<i>P</i> < 0.01, *<i>P</i> < 0.05, nonsignificant (ns) two-sided Student’s <i>t</i> test). …”
  4. 124

    Increased osteoblastic activity and decreased osteoclastogenesis in TgLRAP cells <i>in vitro</i>. by Naoto Haruyama (487384)

    Published 2021
    “…Compared with the co-culture of WT BMCs and WT calvarial cells (WT / WT), the number of osteoclasts were significantly decreased at 50% in the co-cultures of TgLRAP BMCs and TgLRAP calvarial cells (TgLRAP / TgLRAP) (graph). …”
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    Decreased ISCs and increased goblet cells after intestinal specific loss of MLL1. by Neha Goveas (11790822)

    Published 2021
    “…(C) Decrease in ISC markers, OLFM4 and SOX9 in <i>Mll1</i><sup><i>FC/FC; Vil-Cre-ERT2/+</i></sup> intestinal sections. …”
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    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…Dynamically generating color patterns requires control of nanoparticle organization within a polymer network on-demand, which is challenging. We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  9. 129

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…Dynamically generating color patterns requires control of nanoparticle organization within a polymer network on-demand, which is challenging. We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  10. 130

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…Dynamically generating color patterns requires control of nanoparticle organization within a polymer network on-demand, which is challenging. We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  11. 131

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…Dynamically generating color patterns requires control of nanoparticle organization within a polymer network on-demand, which is challenging. We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  12. 132

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…Dynamically generating color patterns requires control of nanoparticle organization within a polymer network on-demand, which is challenging. We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  13. 133

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…Dynamically generating color patterns requires control of nanoparticle organization within a polymer network on-demand, which is challenging. We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  14. 134

    Inclusion of TPP side chains result in decreased melanoma cell mitochondria membrane potential, oxygen consumption, and increased DHE oxidation. by Kyle C. Kloepping (9928265)

    Published 2020
    “…At the 25 min mark, 1.0 μM 12-TPP was added to treatment A375 cells followed by the sequential addition of 2.5 μM oligomycin at the 60 min mark, 0.3 μM oligomycin at the 90 min mark, and 5.0 μM rotenone/antimycin A at the 120 min mark. …”
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