Showing 1 - 20 results of 11,083 for search '(( significantly linked decrease ) OR ( significant increases release ))', query time: 0.58s Refine Results
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    C1 alone does not evoke NO release, an increase in cell activity or release of pro-inflammatory cytokines. by Philipp Jordan (9364068)

    Published 2023
    “…As shown in <b><a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0278325#pone.0278325.g001" target="_blank">Fig 1</a></b>, LPS stimulation induced a significant increase in NO release (p<0.0001). Treatment with C1 or DMSO did not show any significant difference compared to untreated microglia (in white). …”
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    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
    “…Results demonstrate that TPP derivatives preferentially accumulate in mitochondria; decrease mitochondria membrane potential and ATP-linked oxygen consumption; and increase DHE oxidation. …”
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    Increased AP release upon hypotonicity is dependent on Matriptase. by Julia Hatzold (44687)

    Published 2023
    “…(B,E) Subtraction of luminescence values of 320 mOsm from 150 mOsm indicate a significantly higher net increase of AP release in double transfected cells compared to cells transfected with pcDNA3+AP-Par2b alone. …”
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    Optogenetic stimulation of microglia increases IL-1β production and release. by Min-Hee Yi (4447360)

    Published 2021
    “…Light stimulation increases IL-1β release at 1, 6, or 24 h from ReaChR expressing microglia but not from control microglia culture. …”
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    Architecture Can Significantly Alter the Energy Release Rate from Nanocomposite Energetics by Haiyang Wang (22389)

    Published 2019
    “…This implies that the lowest density spun material offers the highest mass energy release rate by far.…”
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    Architecture Can Significantly Alter the Energy Release Rate from Nanocomposite Energetics by Haiyang Wang (22389)

    Published 2019
    “…This implies that the lowest density spun material offers the highest mass energy release rate by far.…”