Showing 1,001 - 1,020 results of 32,116 for search '(( 50 ((ng decrease) OR (((teer decrease) OR (a decrease)))) ) OR ( e point decrease ))', query time: 0.92s Refine Results
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    Lowering Melting Points in Asymmetrically Substituted Salen-Copper(II) Complexes Exhibiting Mesomorphic Behavior. Structure of the Mesogen Cu(5-hexyloxySalen) by Reinhard Paschke (553784)

    Published 2002
    “…In comparison with their symmetrical analogues, unsymmetrically substituted Cu−Salen complexes show mesophases with lowered melting points. For terminally substituted complexes, symmetrical ones (R<sup>1</sup> = R<sup>2</sup>) have only an S<sub>A</sub> phase, while for unsymmetrical alkoxy substitution a monotropic S<sub>E</sub> phase occurs and the melting temperature decreases with no loss in mesophase stability. …”
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    Lowering Melting Points in Asymmetrically Substituted Salen-Copper(II) Complexes Exhibiting Mesomorphic Behavior. Structure of the Mesogen Cu(5-hexyloxySalen) by Reinhard Paschke (553784)

    Published 2002
    “…In comparison with their symmetrical analogues, unsymmetrically substituted Cu−Salen complexes show mesophases with lowered melting points. For terminally substituted complexes, symmetrical ones (R<sup>1</sup> = R<sup>2</sup>) have only an S<sub>A</sub> phase, while for unsymmetrical alkoxy substitution a monotropic S<sub>E</sub> phase occurs and the melting temperature decreases with no loss in mesophase stability. …”
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    A-p50 affects A549 cell survival through inhibition of NF-κB-mediated transcriptional activation by Jing Mi (18654)

    Published 2011
    “…Ad-A-p50 virus-injected tumor tissues show a decrease in Ki67 protein expression compared with Ad-siNT-injected tumor tissues (×100 magnification, brownish red nuclear stain), consistent with a decrease in cell proliferation. …”
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    Reduced skin lipid content in obese Japanese women mediated by decreased expression of rate-limiting lipogenic enzymes by Yoshiko Horie (4923043)

    Published 2018
    “…Both skin cholesterol and fatty acid levels exhibited an “inverted-U” relationship with BMI, suggesting that there is an optimal BMI for peak lipid content and barrier function. Decreased lipid levels at higher BMI were accompanied by downregulated expression of <i>PPARδ</i> and other genes related to lipid metabolism, including those encoding acetyl-CoA carboxylase and HMG-CoA reductase, the rate-limiting enzymes for fatty acid and cholesterol synthesis, respectively. …”
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