Showing 481 - 500 results of 26,868 for search '(( 50 ((we decrease) OR (a decrease)) ) OR ( 50 ((ms decrease) OR (nn decrease)) ))', query time: 0.80s Refine Results
  1. 481
  2. 482
  3. 483

    Compound CID 9998128 Is a Potential Multitarget Drug for Alzheimer’s Disease by Nguyen Quoc Thai (5348798)

    Published 2018
    “…We have probed small molecule compound CID 9998128 as a potential multitarget drug for the Alzheimer’s disease (AD) using <i>in silico</i> and <i>in vitro</i> experiments. …”
  4. 484

    Compound CID 9998128 Is a Potential Multitarget Drug for Alzheimer’s Disease by Nguyen Quoc Thai (5348798)

    Published 2018
    “…We have probed small molecule compound CID 9998128 as a potential multitarget drug for the Alzheimer’s disease (AD) using <i>in silico</i> and <i>in vitro</i> experiments. …”
  5. 485
  6. 486
  7. 487

    Bioactive Sesquiterpenoids from the Peeled Stems of <i>Syringa pinnatifolia</i> by Ruifei Zhang (3714817)

    Published 2018
    “…These compounds decreased the TNF-α and IL-6 levels in RAW264.7 cells in a concentration-dependent manner at 20–80 μM.…”
  8. 488

    Bioactive Sesquiterpenoids from the Peeled Stems of <i>Syringa pinnatifolia</i> by Ruifei Zhang (3714817)

    Published 2018
    “…These compounds decreased the TNF-α and IL-6 levels in RAW264.7 cells in a concentration-dependent manner at 20–80 μM.…”
  9. 489

    Bioactive Sesquiterpenoids from the Peeled Stems of <i>Syringa pinnatifolia</i> by Ruifei Zhang (3714817)

    Published 2018
    “…These compounds decreased the TNF-α and IL-6 levels in RAW264.7 cells in a concentration-dependent manner at 20–80 μM.…”
  10. 490

    Bioactive Sesquiterpenoids from the Peeled Stems of <i>Syringa pinnatifolia</i> by Ruifei Zhang (3714817)

    Published 2018
    “…These compounds decreased the TNF-α and IL-6 levels in RAW264.7 cells in a concentration-dependent manner at 20–80 μM.…”
  11. 491
  12. 492

    Loss of cytoplasmic incompatibility in <i>Wolbachia</i>-infected <i>Aedes aegypti</i> under field conditions by Perran A. Ross (844275)

    Published 2019
    “…To investigate the critical temperature range for the loss of <i>Wolbachia</i> infections, we held <i>Ae</i>. <i>aegypti</i> eggs in thermocyclers for one week at a range of cyclical temperatures. …”
  13. 493

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  14. 494

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  15. 495

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  16. 496

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  17. 497

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  18. 498

    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
  19. 499
  20. 500