Showing 19,721 - 19,740 results of 101,198 for search '(( a web decrease ) OR ( 5 ((fold decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.28s Refine Results
  1. 19721
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  3. 19723

    Inhibitory effect of liposomal quercetin on acute hepatitis and hepatic fibrosis induced by concanavalin A by Y. Wan (1318521)

    Published 2019
    “…In the acute hepatitis model, quercetin (2.5 mg/kg) was injected iv into mice 30 min after concanavalin A (Con A) challenge. …”
  4. 19724
  5. 19725
  6. 19726
  7. 19727
  8. 19728
  9. 19729

    MakA contributes to host cell toxicity. by Aftab Nadeem (3211719)

    Published 2021
    “…(C) PA:PC liposomes were treated with vehicle (Tris 20mM) or MakA (50μg/mL) for 90 min and stained with 1.5% uranyl acetate solution. …”
  10. 19730

    Structural and Co-conformational Effects of Alkyne-Derived Subunits in Charged Donor−Acceptor [2]Catenanes by Ognjen Š. Miljanić (2485972)

    Published 2007
    “…The barriers for the three processes were found to be successively 14.4, 14.5−17.5, and 13.1−15.8 kcal mol<sup>-1</sup>. Within the limitations of the small dataset investigated, emergent trends in the barrier heights can be recognized:  the values decrease with the increasing size of the π-electron-donating macrocycle and tend to be lower in the sterically less encumbered series of [2]catenanes containing the 1,3-butadiyne moiety.…”
  11. 19731

    Structural and Co-conformational Effects of Alkyne-Derived Subunits in Charged Donor−Acceptor [2]Catenanes by Ognjen Š. Miljanić (2485972)

    Published 2007
    “…The barriers for the three processes were found to be successively 14.4, 14.5−17.5, and 13.1−15.8 kcal mol<sup>-1</sup>. Within the limitations of the small dataset investigated, emergent trends in the barrier heights can be recognized:  the values decrease with the increasing size of the π-electron-donating macrocycle and tend to be lower in the sterically less encumbered series of [2]catenanes containing the 1,3-butadiyne moiety.…”
  12. 19732

    Structural and Co-conformational Effects of Alkyne-Derived Subunits in Charged Donor−Acceptor [2]Catenanes by Ognjen Š. Miljanić (2485972)

    Published 2007
    “…The barriers for the three processes were found to be successively 14.4, 14.5−17.5, and 13.1−15.8 kcal mol<sup>-1</sup>. Within the limitations of the small dataset investigated, emergent trends in the barrier heights can be recognized:  the values decrease with the increasing size of the π-electron-donating macrocycle and tend to be lower in the sterically less encumbered series of [2]catenanes containing the 1,3-butadiyne moiety.…”
  13. 19733

    Structural and Co-conformational Effects of Alkyne-Derived Subunits in Charged Donor−Acceptor [2]Catenanes by Ognjen Š. Miljanić (2485972)

    Published 2007
    “…The barriers for the three processes were found to be successively 14.4, 14.5−17.5, and 13.1−15.8 kcal mol<sup>-1</sup>. Within the limitations of the small dataset investigated, emergent trends in the barrier heights can be recognized:  the values decrease with the increasing size of the π-electron-donating macrocycle and tend to be lower in the sterically less encumbered series of [2]catenanes containing the 1,3-butadiyne moiety.…”
  14. 19734

    Effect of Substituents on the Water Oxidation Activity of [Ru<sup>II</sup>(terpy)(phen)Cl]<sup>+</sup> Procatalysts by Dakshika C. Wanniarachchi (1824820)

    Published 2014
    “…A series of [Ru<sup>II</sup>(terpy-R)­(phen-X)­Cl]­PF<sub>6</sub> complexes was designed where terpy-R is the tridentate 4′-(4-methylmercaptophenyl)-2,2′:6′2″-terpyridine ligand MeMPTP and phen-X is a substituted phenanthroline with hydro (<b>1</b>), 5-nitro (<b>2</b>), 5,6-dimethyl (<b>3</b>), and 3,4,7,8-tetramethyl (<b>4</b>). …”
  15. 19735

    Effect of Substituents on the Water Oxidation Activity of [Ru<sup>II</sup>(terpy)(phen)Cl]<sup>+</sup> Procatalysts by Dakshika C. Wanniarachchi (1824820)

    Published 2014
    “…A series of [Ru<sup>II</sup>(terpy-R)­(phen-X)­Cl]­PF<sub>6</sub> complexes was designed where terpy-R is the tridentate 4′-(4-methylmercaptophenyl)-2,2′:6′2″-terpyridine ligand MeMPTP and phen-X is a substituted phenanthroline with hydro (<b>1</b>), 5-nitro (<b>2</b>), 5,6-dimethyl (<b>3</b>), and 3,4,7,8-tetramethyl (<b>4</b>). …”
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