Showing 941 - 960 results of 54,247 for search '(( 5 ((nn decrease) OR (we decrease)) ) OR ( 100 ((nm decrease) OR (a decrease)) ))', query time: 1.00s Refine Results
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    Data Sheet 2_S100A4 targets PPP1CA/IL-17 to inhibit the senescence of sheep endometrial epithelial cells.pdf by Xiyao Jiao (18695935)

    Published 2024
    “…</p>Methods<p>The protein PPP1CA, which interacts with S100A4, was detected by immunoprecipitation-mass spectrometry of overexpression and knockdown of S100A4 and PPP1CA. …”
  7. 947

    Data Sheet 3_S100A4 targets PPP1CA/IL-17 to inhibit the senescence of sheep endometrial epithelial cells.pdf by Xiyao Jiao (18695935)

    Published 2024
    “…</p>Methods<p>The protein PPP1CA, which interacts with S100A4, was detected by immunoprecipitation-mass spectrometry of overexpression and knockdown of S100A4 and PPP1CA. …”
  8. 948

    Presentation 1_S100A4 targets PPP1CA/IL-17 to inhibit the senescence of sheep endometrial epithelial cells.pptx by Xiyao Jiao (18695935)

    Published 2024
    “…</p>Methods<p>The protein PPP1CA, which interacts with S100A4, was detected by immunoprecipitation-mass spectrometry of overexpression and knockdown of S100A4 and PPP1CA. …”
  9. 949

    Data Sheet 1_S100A4 targets PPP1CA/IL-17 to inhibit the senescence of sheep endometrial epithelial cells.pdf by Xiyao Jiao (18695935)

    Published 2024
    “…</p>Methods<p>The protein PPP1CA, which interacts with S100A4, was detected by immunoprecipitation-mass spectrometry of overexpression and knockdown of S100A4 and PPP1CA. …”
  10. 950

    Impaired Functions of Macrophage from Cystic Fibrosis Patients: CD11b, TLR-5 Decrease and sCD14, Inflammatory Cytokines Increase by Karin Simonin-Le Jeune (464354)

    Published 2013
    “…Furthermore expression of CD11b and TLR-5 were sorely decreased on CF macrophages. Beside, no difference was observed for mCD14, CD16, CD64, TLR-4 and TLR1/TLR-2 expressions. …”
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    Anticancer Activity Expressed by a Library of 2,9-Diazaperopyrenium Dications by Karel J. Hartlieb (1367880)

    Published 2016
    “…In the solid state, the 2,6-diisopropylphenyl-functionalized derivative does not undergo π···π stacking, while in aqueous solution, dynamic light scattering reveals that this derivative forms very small (50–100 nm) aggregates, in contrast with the larger ones formed by dications with less bulky substituents. …”
  15. 955

    Anticancer Activity Expressed by a Library of 2,9-Diazaperopyrenium Dications by Karel J. Hartlieb (1367880)

    Published 2016
    “…In the solid state, the 2,6-diisopropylphenyl-functionalized derivative does not undergo π···π stacking, while in aqueous solution, dynamic light scattering reveals that this derivative forms very small (50–100 nm) aggregates, in contrast with the larger ones formed by dications with less bulky substituents. …”
  16. 956

    Anticancer Activity Expressed by a Library of 2,9-Diazaperopyrenium Dications by Karel J. Hartlieb (1367880)

    Published 2016
    “…In the solid state, the 2,6-diisopropylphenyl-functionalized derivative does not undergo π···π stacking, while in aqueous solution, dynamic light scattering reveals that this derivative forms very small (50–100 nm) aggregates, in contrast with the larger ones formed by dications with less bulky substituents. …”
  17. 957

    Anticancer Activity Expressed by a Library of 2,9-Diazaperopyrenium Dications by Karel J. Hartlieb (1367880)

    Published 2016
    “…In the solid state, the 2,6-diisopropylphenyl-functionalized derivative does not undergo π···π stacking, while in aqueous solution, dynamic light scattering reveals that this derivative forms very small (50–100 nm) aggregates, in contrast with the larger ones formed by dications with less bulky substituents. …”
  18. 958

    Anticancer Activity Expressed by a Library of 2,9-Diazaperopyrenium Dications by Karel J. Hartlieb (1367880)

    Published 2016
    “…In the solid state, the 2,6-diisopropylphenyl-functionalized derivative does not undergo π···π stacking, while in aqueous solution, dynamic light scattering reveals that this derivative forms very small (50–100 nm) aggregates, in contrast with the larger ones formed by dications with less bulky substituents. …”
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