Showing 1,181 - 1,200 results of 5,691 for search '(( significant decrease decrease ) OR ( significance ((b decrease) OR (a decrease)) ))~', query time: 0.59s Refine Results
  1. 1181

    Discovery of Novel [1,2,4]Triazolo[1,5‑<i>a</i>]pyrimidine Derivatives as Novel Potent S‑Phase Kinase-Associated Protein 2 (SKP2) Inhibitors for the Treatment of Cancer by Kaizhao Hu (15670612)

    Published 2024
    “…In addition, compound <b>E35</b> significantly inhibited colony formation and migration, as well as arrested the cell cycle at the S-phase. …”
  2. 1182

    Discovery of Novel [1,2,4]Triazolo[1,5‑<i>a</i>]pyrimidine Derivatives as Novel Potent S‑Phase Kinase-Associated Protein 2 (SKP2) Inhibitors for the Treatment of Cancer by Kaizhao Hu (15670612)

    Published 2024
    “…In addition, compound <b>E35</b> significantly inhibited colony formation and migration, as well as arrested the cell cycle at the S-phase. …”
  3. 1183

    Discovery of Novel [1,2,4]Triazolo[1,5‑<i>a</i>]pyrimidine Derivatives as Novel Potent S‑Phase Kinase-Associated Protein 2 (SKP2) Inhibitors for the Treatment of Cancer by Kaizhao Hu (15670612)

    Published 2024
    “…In addition, compound <b>E35</b> significantly inhibited colony formation and migration, as well as arrested the cell cycle at the S-phase. …”
  4. 1184

    Discovery of Novel [1,2,4]Triazolo[1,5‑<i>a</i>]pyrimidine Derivatives as Novel Potent S‑Phase Kinase-Associated Protein 2 (SKP2) Inhibitors for the Treatment of Cancer by Kaizhao Hu (15670612)

    Published 2024
    “…In addition, compound <b>E35</b> significantly inhibited colony formation and migration, as well as arrested the cell cycle at the S-phase. …”
  5. 1185

    Discovery of Novel [1,2,4]Triazolo[1,5‑<i>a</i>]pyrimidine Derivatives as Novel Potent S‑Phase Kinase-Associated Protein 2 (SKP2) Inhibitors for the Treatment of Cancer by Kaizhao Hu (15670612)

    Published 2024
    “…In addition, compound <b>E35</b> significantly inhibited colony formation and migration, as well as arrested the cell cycle at the S-phase. …”
  6. 1186
  7. 1187
  8. 1188
  9. 1189
  10. 1190
  11. 1191
  12. 1192
  13. 1193
  14. 1194
  15. 1195
  16. 1196

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  17. 1197

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  18. 1198

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  19. 1199

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”
  20. 1200

    B–O Bond Reinforced Mechanical Stability of Alginate-Based Jammed Emulsion for Enhancing Pesticide Droplet Foliar Deposition by Yan Zhou (6523)

    Published 2025
    “…The transmission of the jammed emulsion decreased from 40.8% in an unjammed emulsion to 10.3%, and the mechanical stability was significantly improved. …”