Showing 1 - 20 results of 232,412 for search '(((( _ we decrease ) OR ( 10 ((nn decrease) OR (a decrease)) ))) OR ( 20 _ decrease ))*', query time: 1.51s Refine Results
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    Decreased Patrolling Efficiency and Decreased ConA Hepatitis Severity in CXCR6-Deficient Mice by Frederic Geissmann (75)

    Published 2013
    “…<div><p>(A) Serum transaminase levels in <i>cxcr6<sup>gfp/gfp</sup></i>, <i>cxcr6<sup>gfp/+</sup></i>, and <i>cxcr6<sup>+/+</sup></i> littermates 12 h after a challenge with 20 mg/kg ConA IP. …”
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    Targeting <em>A20</em> Decreases Glioma Stem Cell Survival and Tumor Growth by Anita B. Hjelmeland (104655)

    Published 2010
    “…Inhibiting A20 expression decreased GSC growth and survival through mechanisms associated with decreased cell-cycle progression and decreased phosphorylation of p65/RelA. …”
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    Predicting pattern diversity decreases as a function of and . by Selim Haj Ali (21222613)

    Published 2025
    “…<p>For 50 Erdős-Rényi graphs with 30 nodes and 70 edges, we split the results into two columns according to the two initial degenerate unstable eigenmodes  +  : on the left, (if ), and on the right, (if ). …”
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    IL-15 decreases angiogenesis <i>in vivo</i>. by Krizia Rohena-Rivera (3906838)

    Published 2017
    “…<p>To evaluate angiogenesis, we performed Immunofluorescence of CD31 in tumor tissue. …”
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    The probability of having a tie decreases as a function of distance. by Jukka-Pekka Onnela (353658)

    Published 2013
    “…Note that if geography played no role, we would expect to be independent of distance , resulting in a horizontal line in this plot. …”
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    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
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    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
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    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
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    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
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    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
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    Decrease of 4 Asp isomers at 70°C. by Kenzo Aki (386666)

    Published 2013
    “…<p><a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0058515#pone-0058515-g007" target="_blank">Figure 7a:</a> decrease of L-α-Asp with incubation of T6-Lα peptide at 70°C. …”
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    Increasing the strength of negative feedback decreases fidelity. by Clive G. Bowsher (395875)

    Published 2013
    “…We simulate as in <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1002965#pcbi-1002965-g001" target="_blank">Fig. 1A</a>. …”
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