Showing 1,161 - 1,180 results of 99,932 for search '(( 5 fold decrease ) OR ( 5 ((step decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.63s Refine Results
  1. 1161

    Six-fold Oxygen-Coordinated Triplet (<i>S</i> = 1) Palladium(II) Moieties Templated by Tris(bipyridine)ruthenium(II) Ions by Fabrice Pointillart (1593232)

    Published 2007
    “…As stated by magnetometry, this environment is associated with a triplet ground state (<i>S</i> = 1) of the palladium(II) ion:  when the temperature is decreased, the χ<sub>M</sub><i>T</i> product shows a monotonous decrease from 5.54 cm<sup>3</sup> K mol<sup>-1</sup> at 300 K, a value which is slightly lower than the one expected for independent paramagnetic Pd(II) (<i>S</i> = 1, <i>g</i> = 2) and Mn(II) (<i>S</i> = <sup>5</sup>/<sub>2</sub>, <i>g</i> = 2) ions. …”
  2. 1162

    Six-fold Oxygen-Coordinated Triplet (<i>S</i> = 1) Palladium(II) Moieties Templated by Tris(bipyridine)ruthenium(II) Ions by Fabrice Pointillart (1593232)

    Published 2007
    “…As stated by magnetometry, this environment is associated with a triplet ground state (<i>S</i> = 1) of the palladium(II) ion:  when the temperature is decreased, the χ<sub>M</sub><i>T</i> product shows a monotonous decrease from 5.54 cm<sup>3</sup> K mol<sup>-1</sup> at 300 K, a value which is slightly lower than the one expected for independent paramagnetic Pd(II) (<i>S</i> = 1, <i>g</i> = 2) and Mn(II) (<i>S</i> = <sup>5</sup>/<sub>2</sub>, <i>g</i> = 2) ions. …”
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  6. 1166

    Lipid Droplet-Binding Protein TIP47 Regulates Hepatitis C Virus RNA Replication through Interaction with the Viral NS5A Protein by Dorothee A. Vogt (247917)

    Published 2013
    “…Our studies identified the LD-associated host protein, Tail-Interacting Protein 47 (TIP47) as a novel NS5A interaction partner. Coimmunoprecipitation experiments in Huh7 hepatoma cells confirmed the interaction of TIP47 with full-length NS5A. shRNA-mediated knockdown of TIP47 caused a more than 10-fold decrease in the propagation of full-length infectious HCV in Huh7.5 hepatoma cells. …”
  7. 1167
  8. 1168

    miR-204-5p inhibits glioma cell growth <i>in vitro</i>. by Zhiqiang Xia (764303)

    Published 2015
    “…<p>A, More than 200-fold increase in the expression of miR-204-5p was observed in Lv-miR-204-5p-LN229 cells and Lv-miR-204-5p-U87 cells compared to the LEV group by qRT-PCR. …”
  9. 1169

    PPP2R5C HepKD in <i>db/db</i> mouse liver improves insulin sensitivity, decreases hyperglycemia, but worsens the dyslipidemia. by Yong-Sheng Cheng (803758)

    Published 2015
    “…<p><b>(A)</b> Hyperglycemia in <i>db/db</i> mice is decreased upon hypatocyte-specific PPP2R5C knockdown with adeno-associated virus. …”
  10. 1170
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  14. 1174

    ESX-5-dependent surface proteins of <i>M</i>. <i>marinum</i>. by Louis S. Ates (734423)

    Published 2015
    “…Shown here are only proteins with at least a five-fold decrease in spectral counts in the Δ<i>esx-5</i>::<i>mspA</i> strain. …”
  15. 1175

    Presentation_1_Eosinophils Decrease Pulmonary Metastatic Mammary Tumor Growth.pptx by Rachel A. Cederberg (12827564)

    Published 2022
    “…We found that IL5Tg mice exhibit reduced pulmonary metastatic colonization and decreased metastatic tumor burden compared to wild-type (WT) mice or eosinophil-deficient mice. …”
  16. 1176
  17. 1177

    Liquid–Liquid Phase Separation of Peptide/Oligonucleotide Complexes in Crowded Macromolecular Media by Qingwen Bai (5221280)

    Published 2020
    “…Our study provides a further step toward a deeper understanding of the kinetics of MLOs in crowded living cells.…”
  18. 1178

    Liquid–Liquid Phase Separation of Peptide/Oligonucleotide Complexes in Crowded Macromolecular Media by Qingwen Bai (5221280)

    Published 2020
    “…Our study provides a further step toward a deeper understanding of the kinetics of MLOs in crowded living cells.…”
  19. 1179

    Liquid–Liquid Phase Separation of Peptide/Oligonucleotide Complexes in Crowded Macromolecular Media by Qingwen Bai (5221280)

    Published 2020
    “…Our study provides a further step toward a deeper understanding of the kinetics of MLOs in crowded living cells.…”
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