Showing 20,121 - 20,140 results of 34,411 for search '(( 50 ((a decrease) OR (nn decrease)) ) OR ( e ((fold decrease) OR (point decrease)) ))', query time: 0.63s Refine Results
  1. 20121
  2. 20122
  3. 20123
  4. 20124
  5. 20125

    Selective VCP inhibition induces significant cell cycle arrest in G2/M phase. by Kyla Walworth (3150936)

    Published 2016
    “…<p>(A) Following a 24-hour treatment period with control-PBS, NMS-873/DBeQ (50μM, positive-control), dendrimer (DDN) or dendrimer-encapsulated DBeQ (DDN<sup>DBeQ</sup>, 50 μM), cells were fixed with ice-cold 70%-ethanol followed by staining with propidium iodide (10μg/mL) for 1 hour. …”
  6. 20126
  7. 20127
  8. 20128
  9. 20129
  10. 20130

    Data Sheet 1_Study on the function of TTG1 gene in Camellia oleifera.docx by Chengcheng Xiang (5512442)

    Published 2025
    “…In this study, we isolated the CoTTG1 gene from C. oleifera, which encodes a nuclear-localized protein (molecular weight 38.38 kDa, pI 5.0) sharing 99.71% sequence identity with Camellia japonica TTG1. …”
  11. 20131

    Down syndrome: Prevalence and distribution of congenital heart disease in Brazil by Beatriz Elizabeth Bagatin Veleda Bermudez (12799493)

    Published 2022
    “…DESIGN AND SETTING : Cross-sectional study conducted in a referral center. METHODS : Data were retrospectively gathered from the medical files of 1,207 patients with Down syndrome, among whom 604 (50.0%) had been diagnosed with congenital heart disease. …”
  12. 20132
  13. 20133
  14. 20134
  15. 20135

    Table 1_Study on the function of TTG1 gene in Camellia oleifera.xlsx by Chengcheng Xiang (5512442)

    Published 2025
    “…In this study, we isolated the CoTTG1 gene from C. oleifera, which encodes a nuclear-localized protein (molecular weight 38.38 kDa, pI 5.0) sharing 99.71% sequence identity with Camellia japonica TTG1. …”
  16. 20136
  17. 20137
  18. 20138
  19. 20139
  20. 20140

    Cleavage kinetics. by Daria Kotlarek (2833523)

    Published 2016
    “…<p>Example data set showing the decrease of substrate concentration in time in for a range of PA-Nter concentrations (numbers in [nM]) in the presence of A) Mg<sup>2+</sup>, B) Mn<sup>2+</sup>. …”