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Showing 2,061 - 2,080 results of 5,838 for search '(( ct ((values decrease) OR (largest decrease)) ) OR ( a ((mean decrease) OR (linear decrease)) ))', query time: 0.49s Refine Results
  1. 2061
  2. 2062

    AKT regulates UGCG expression via epigenomic alterations. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>D</b>) Results from qRT-PCR (mean ± SEM, <i>n</i> = 4) show a decrease in <i>UGCG</i> expression in MCF-7_ZFX<sup>OE</sup> cells on AKT inhibition by MK2206. …”
  3. 2063

    Table 1_Assessing the diagnostic value of qPCR for Trichuris trichiura: sub-analysis of a multi-country clinical trial to determine the efficacy of albendazole compared to an alben... by Pedro E. Fleitas (8704023)

    Published 2025
    “…Concordance between stool egg counts and Ct-value decreased post-treatment, likely due to reduced KK sensitivity in low-intensity infections. …”
  4. 2064

    Recapitulating the effects of miRNA intervention in Re<sup>+</sup>alECLII neurons of McGill-R-Thy1-APP rats. by Asgeir Kobro-Flatmoen (20521919)

    Published 2025
    “…Predicted steady state total copy number of Aβ42 in experimental neurons as a function of the fold change of <i>α</i><sub><i>baseline</i></sub> relative to wild type and the fractional decrease of <i>τ</i> relative to wild type. …”
  5. 2065

    Related to Fig 2. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>C</b>) Cell proliferation studies show a decrease in the proliferation of BT-474_RICTOR<sup>SH</sup> cells (mean ± SEM, <i>n</i> = 3) compared to BT-474_SCRAM<sup>SH</sup> cells. …”
  6. 2066

    RICTOR silencing inhibits cell proliferation via UGCG regulation. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>C</b>) Cell proliferation studies show a decrease in the proliferation of MCF-7_RICTOR<sup>SH</sup> cells (mean ± SEM, <i>n</i> = 4) compared to MCF-7_SCRAM<sup>SH</sup> cells. …”
  7. 2067

    Related to Fig 5. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>E</b>) Cell proliferation assay demonstrates a decrease in cell proliferation (mean ± SEM, <i>n</i> = 3) of BT-474_ST8SIA1<sup>SH</sup> cells compared to BT-474_SCRAM<sup>SH</sup> cells. …”
  8. 2068
  9. 2069

    Related to Fig 3. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>K–N</b>) Absolute quantification (mean ± SEM, <i>n</i> = 3–4) of GM3 (K), GD3 (L), GM2 (M), and GM1 (N) gangliosides shows an increase of GD3 and GM2 gangliosides and a decrease of GM3 and GM1 gangliosides in BT-474_ZFX<sup>OE</sup> cells. …”
  10. 2070

    Related to Fig 1. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>E</b>–<b>H</b>) Absolute quantification (mean ± SEM, <i>n</i> = 3–4) of GM3 (E), GD3 (F), GM2 (G), and GM1 (H) gangliosides shows an increase in GD3 and GM2 gangliosides and a decrease in GM3 and GM1 gangliosides in BT-474_UGCG<sup>OE</sup> cells compared to BT-474 cells. …”
  11. 2071

    RICTOR regulates UGCG expression via transcription factor Zinc Finger X-linked (ZFX). by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…<b>(L, M)</b> Fold change (mean ± SEM, <i>n</i> = 5) in ceramides (L) and glucosylceramides (M) confirms a decrease in ceramides and an increase in glucosylceramides in MCF-7_ZFX<sup>OE</sup> cells. …”
  12. 2072

    Luminal tumors have a deregulated sphingolipid and ganglioside profile and high RICTOR expression. by Mohammad Nafees Ansari (22232505)

    Published 2025
    “…(<b>D</b>–<b>H</b>) Absolute quantification (mean ± SEM, <i>n</i> = 5) of GM3 (D), GD3 (E), GD2 (F), GM2 (G), and GM1 (H) gangliosides in luminal tumor tissues and adjacent normal tissues shows an increase in GM3 and GD3 gangliosides and a decrease in GM1 gangliosides in luminal tumor tissues. …”
  13. 2073

    Unidirectional Drug Delivery and Responsive Release Guided by Nanofunnel-Shaped Heterojunction by Jun Luo (120285)

    Published 2025
    “…In the BN<sub>∨</sub>-C<sub>||</sub> model, increasing the tube radius (9.59 to 20.34 Å) or decreasing the cone angle (180–60°) can flip Δ<i>G</i>, enabling bidirectional control. …”
  14. 2074

    Unidirectional Drug Delivery and Responsive Release Guided by Nanofunnel-Shaped Heterojunction by Jun Luo (120285)

    Published 2025
    “…In the BN<sub>∨</sub>-C<sub>||</sub> model, increasing the tube radius (9.59 to 20.34 Å) or decreasing the cone angle (180–60°) can flip Δ<i>G</i>, enabling bidirectional control. …”
  15. 2075

    Unidirectional Drug Delivery and Responsive Release Guided by Nanofunnel-Shaped Heterojunction by Jun Luo (120285)

    Published 2025
    “…In the BN<sub>∨</sub>-C<sub>||</sub> model, increasing the tube radius (9.59 to 20.34 Å) or decreasing the cone angle (180–60°) can flip Δ<i>G</i>, enabling bidirectional control. …”
  16. 2076

    Unidirectional Drug Delivery and Responsive Release Guided by Nanofunnel-Shaped Heterojunction by Jun Luo (120285)

    Published 2025
    “…In the BN<sub>∨</sub>-C<sub>||</sub> model, increasing the tube radius (9.59 to 20.34 Å) or decreasing the cone angle (180–60°) can flip Δ<i>G</i>, enabling bidirectional control. …”
  17. 2077

    Unidirectional Drug Delivery and Responsive Release Guided by Nanofunnel-Shaped Heterojunction by Jun Luo (120285)

    Published 2025
    “…In the BN<sub>∨</sub>-C<sub>||</sub> model, increasing the tube radius (9.59 to 20.34 Å) or decreasing the cone angle (180–60°) can flip Δ<i>G</i>, enabling bidirectional control. …”
  18. 2078

    Redox-Responsive Self-Assembled Amphiphilic Nanosheets from Polyglycerol Sulfate–Lipoic Acid Copolymers for Targeted Cancer Drug Delivery by Taylor M. Page (22767587)

    Published 2025
    “…Targeted drug delivery systems that are stimuli-responsive offer great potential for enhancing the therapeutic activity of drugs, decreasing off-target effects, and improving bioavailability. …”
  19. 2079
  20. 2080