Showing 10,741 - 10,760 results of 226,405 for search '(( a ((a decrease) OR (linear decrease)) ) OR ( a ((greater decrease) OR (largest decrease)) ))', query time: 1.60s Refine Results
  1. 10741
  2. 10742
  3. 10743

    STAT1 and ERK1/2 pathways in A498 cells transfected with STAT1 siRNA by western blot assay. by Fengbo Zhang (220275)

    Published 2011
    “…<p>The expression of p-STAT1 decreased by 87.2%±3.6% in STAT1 siRNA transfected cells at the 30<sup>th</sup> minute after IL-22 treatment and maintained in a lower level compared with that of negative control siRNA (P<0.05). …”
  4. 10744

    Expression of R103A-EPO antagonist inhibits induction of tumor angiogenesis and disrupts primary tumor growth. by Matthew E. Hardee (273323)

    Published 2007
    “…(C) Quantification of tumor neovascularization revealed decreased angiogenesis in window chambers implanted with R103A-EPO secreting cells compared to vector controls, *P<0.001. …”
  5. 10745

    Image_3_Host autophagy limits Toxoplasma gondii proliferation in the absence of IFN-γ by affecting the hijack of Rab11A-positive vesicles.TIF by Lingtao Pan (9433257)

    Published 2022
    “…Further, after T. gondii infection, the abundance of Rab11A remained stable in wild-type HeLa cells but decreased in atg5<sup>−/−</sup> mutant. …”
  6. 10746

    Table_1_Host autophagy limits Toxoplasma gondii proliferation in the absence of IFN-γ by affecting the hijack of Rab11A-positive vesicles.docx by Lingtao Pan (9433257)

    Published 2022
    “…Further, after T. gondii infection, the abundance of Rab11A remained stable in wild-type HeLa cells but decreased in atg5<sup>−/−</sup> mutant. …”
  7. 10747

    Image_1_Host autophagy limits Toxoplasma gondii proliferation in the absence of IFN-γ by affecting the hijack of Rab11A-positive vesicles.TIF by Lingtao Pan (9433257)

    Published 2022
    “…Further, after T. gondii infection, the abundance of Rab11A remained stable in wild-type HeLa cells but decreased in atg5<sup>−/−</sup> mutant. …”
  8. 10748

    Image_4_Host autophagy limits Toxoplasma gondii proliferation in the absence of IFN-γ by affecting the hijack of Rab11A-positive vesicles.TIF by Lingtao Pan (9433257)

    Published 2022
    “…Further, after T. gondii infection, the abundance of Rab11A remained stable in wild-type HeLa cells but decreased in atg5<sup>−/−</sup> mutant. …”
  9. 10749

    Image_2_Host autophagy limits Toxoplasma gondii proliferation in the absence of IFN-γ by affecting the hijack of Rab11A-positive vesicles.TIF by Lingtao Pan (9433257)

    Published 2022
    “…Further, after T. gondii infection, the abundance of Rab11A remained stable in wild-type HeLa cells but decreased in atg5<sup>−/−</sup> mutant. …”
  10. 10750

    Data Sheet 1_Impact of atopic dermatitis on renal dysfunction: insights from patient data and animal models.pdf by Arisa Ikeda (20912510)

    Published 2025
    “…In addition, the gene expression of slit diaphragm- and podocyte-related proteins such as nephrin, podocin, and synaptopodin decreased, whereas the gene expression of inflammatory mediators such as S100A8 and S100A9 increased.…”
  11. 10751

    Image_5_Host autophagy limits Toxoplasma gondii proliferation in the absence of IFN-γ by affecting the hijack of Rab11A-positive vesicles.TIF by Lingtao Pan (9433257)

    Published 2022
    “…Further, after T. gondii infection, the abundance of Rab11A remained stable in wild-type HeLa cells but decreased in atg5<sup>−/−</sup> mutant. …”
  12. 10752

    Data Sheet 1_Knockdown of annexin A2 enhances the host cell apoptosis induced by Eimeria tenella.zip by Jixia Wang (1685902)

    Published 2025
    “…<p>Annexin A2 (ANXA2) is a multifunctional protein involved in host-pathogen interactions during viral and parasitic infections. …”
  13. 10753

    Data_Sheet_1_Host autophagy limits Toxoplasma gondii proliferation in the absence of IFN-γ by affecting the hijack of Rab11A-positive vesicles.docx by Lingtao Pan (9433257)

    Published 2022
    “…Further, after T. gondii infection, the abundance of Rab11A remained stable in wild-type HeLa cells but decreased in atg5<sup>−/−</sup> mutant. …”
  14. 10754

    <i>as-</i>APF increases p53 expression by modulating USP2a and MDM2 in TRT-HU1, immortalized human normal bladder epithelial cells. by Jayoung Kim (153487)

    Published 2013
    “…(<b>B</b>) Endogenous USP2a level is rapidly decreased in response to <i>as</i>-APF treatment in TRT-HU1 cells. …”
  15. 10755
  16. 10756
  17. 10757

    The relative velocity change of cell migration in A549 and H460 cells transfected with Flag-LSD1 or LSD1 siRNA plasmid, respectively. by Tangfeng Lv (327103)

    Published 2013
    “…The migration rate gradually increased after transfection of Flag-LSD1 plasmid into the A549 cells, which was significantly different from the velocity at 24 h and 48 h (*<i>P</i><0.05). …”
  18. 10758

    Data Sheet 6_Mechanistic study of the hsa_circ_0074158 binding EIF4A3 impairing sepsis-induced endothelial barrier.zip by Haiyan Liao (6100043)

    Published 2025
    “…Mechanistically, RNA pull-down and RNA RIP assays demonstrated that hsa_circ_0074158 directly binds to the RNA-binding protein (RBP) EIF4A3, which decreases the stability of CTNNA1 (mRNA) and the production of α-catenin, subsequently impairing endothelial barrier function in sepsis. …”
  19. 10759

    Data Sheet 1_Mechanistic study of the hsa_circ_0074158 binding EIF4A3 impairing sepsis-induced endothelial barrier.docx by Haiyan Liao (6100043)

    Published 2025
    “…Mechanistically, RNA pull-down and RNA RIP assays demonstrated that hsa_circ_0074158 directly binds to the RNA-binding protein (RBP) EIF4A3, which decreases the stability of CTNNA1 (mRNA) and the production of α-catenin, subsequently impairing endothelial barrier function in sepsis. …”
  20. 10760

    Data Sheet 7_Mechanistic study of the hsa_circ_0074158 binding EIF4A3 impairing sepsis-induced endothelial barrier.zip by Haiyan Liao (6100043)

    Published 2025
    “…Mechanistically, RNA pull-down and RNA RIP assays demonstrated that hsa_circ_0074158 directly binds to the RNA-binding protein (RBP) EIF4A3, which decreases the stability of CTNNA1 (mRNA) and the production of α-catenin, subsequently impairing endothelial barrier function in sepsis. …”