Showing 241 - 260 results of 79,376 for search '(( 5 ht decrease ) OR ((( 50 ((c decrease) OR (a decrease)) ) OR ( 10 we decrease ))))', query time: 0.94s Refine Results
  1. 241

    CNP decrease mitochondrial membrane potential and induce mitochondrial fragmentation in melanoma cells. by Elif Aplak (7430123)

    Published 2020
    “…<p>A, 300 μM CNP (4 h) significantly decreased mitochondrial membrane potential in A375 cells, but not in melanocytes, indicated by changes of TMRM dependent fluorescence in mitochondria. …”
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    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. …”
  9. 249

    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. …”
  10. 250

    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. …”
  11. 251

    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. …”
  12. 252

    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. …”
  13. 253

    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. …”
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    3D-Printed Diamond–Titanium Composite: A Hybrid Material for Implant Engineering by Kate Fox (1793524)

    Published 2019
    “…The addition of diamond to the biomaterial results in a 30% decrease in the water contact angle, making the scaffolds more hydrophilic and improving cellular adhesion and proliferation.…”
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