Showing 321 - 330 results of 330 for search '(( significant decrease decrease ) OR ( significant greatest decrease ))~', query time: 0.29s Refine Results
  1. 321

    Image 3_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.jpg by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  2. 322

    Image 1_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.jpg by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  3. 323

    Image 4_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.jpg by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  4. 324

    Table 2_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.docx by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  5. 325

    Data Sheet 6_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.pdf by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  6. 326

    Data Sheet 4_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.pdf by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  7. 327

    Data Sheet 3_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.pdf by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  8. 328

    Data Sheet 5_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.pdf by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  9. 329

    Image 2_A genome-wide shRNA screen uncovers a novel potential ligand for NK cell activating receptors.jpg by Paolo Romania (399007)

    Published 2025
    “…Among them, the placenta-specific 1 (PLAC1) gene stood out, as its inhibition conferred the greatest protection to target cells from NK cell lysis, while overexpression of PLAC1 significantly increased NK cell degranulation. …”
  10. 330

    Update on trimethylamine N-oxide (TMAO) as a piezolyte and cryoprotectant: its role in a depth limit for marine fishes and loss from hadal fish during capture by Paul Yancey (14354982)

    Published 2025
    “…<p dir="ltr"><b>I</b><b>NTRODUCTION</b></p><p dir="ltr">Trimethylamine N-oxide (TMAO) is a small organic molecule found at osmotically-significant concentrations in many marine animal taxa. …”