Showing 1,321 - 1,340 results of 21,229 for search '(( via ((((mean decrease) OR (a decrease))) OR (linear decrease)) ) OR ( i largest decrease ))', query time: 0.88s Refine Results
  1. 1321

    Image_6_MICAL2 Facilitates Gastric Cancer Cell Migration via MRTF-A-Mediated CDC42 Activation.jpg by Yueyuan Wang (6001331)

    Published 2021
    “…In addition, MICAL2-induced ROS generation contributed to the effect exerted by MICAL2 on MRTF-A nuclear translocation.</p><p>Conclusion: Together, these results provide evidence that MICAL2 facilitates gastric cancer cell migration via positive regulation of nuclear translocation of MRTF-A and subsequent CDC42 activation and MMP9 expression.…”
  2. 1322

    Image_2_MICAL2 Facilitates Gastric Cancer Cell Migration via MRTF-A-Mediated CDC42 Activation.JPEG by Yueyuan Wang (6001331)

    Published 2021
    “…In addition, MICAL2-induced ROS generation contributed to the effect exerted by MICAL2 on MRTF-A nuclear translocation.</p><p>Conclusion: Together, these results provide evidence that MICAL2 facilitates gastric cancer cell migration via positive regulation of nuclear translocation of MRTF-A and subsequent CDC42 activation and MMP9 expression.…”
  3. 1323

    Image_4_MICAL2 Facilitates Gastric Cancer Cell Migration via MRTF-A-Mediated CDC42 Activation.JPEG by Yueyuan Wang (6001331)

    Published 2021
    “…In addition, MICAL2-induced ROS generation contributed to the effect exerted by MICAL2 on MRTF-A nuclear translocation.</p><p>Conclusion: Together, these results provide evidence that MICAL2 facilitates gastric cancer cell migration via positive regulation of nuclear translocation of MRTF-A and subsequent CDC42 activation and MMP9 expression.…”
  4. 1324

    Image_3_MICAL2 Facilitates Gastric Cancer Cell Migration via MRTF-A-Mediated CDC42 Activation.JPEG by Yueyuan Wang (6001331)

    Published 2021
    “…In addition, MICAL2-induced ROS generation contributed to the effect exerted by MICAL2 on MRTF-A nuclear translocation.</p><p>Conclusion: Together, these results provide evidence that MICAL2 facilitates gastric cancer cell migration via positive regulation of nuclear translocation of MRTF-A and subsequent CDC42 activation and MMP9 expression.…”
  5. 1325

    Image_5_MICAL2 Facilitates Gastric Cancer Cell Migration via MRTF-A-Mediated CDC42 Activation.JPEG by Yueyuan Wang (6001331)

    Published 2021
    “…In addition, MICAL2-induced ROS generation contributed to the effect exerted by MICAL2 on MRTF-A nuclear translocation.</p><p>Conclusion: Together, these results provide evidence that MICAL2 facilitates gastric cancer cell migration via positive regulation of nuclear translocation of MRTF-A and subsequent CDC42 activation and MMP9 expression.…”
  6. 1326
  7. 1327

    GWAS in a Box: Statistical and Visual Analytics of Structured Associations via GenAMap by Eric P. Xing (92330)

    Published 2014
    “…We demonstrate the function of GenAMap via a case study of the Brem and Kruglyak yeast dataset, and then apply it on a comprehensive eQTL analysis of the NIH heterogeneous stock mice dataset and report some interesting findings. …”
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  12. 1332

    Sustained activation of autophagy suppresses adipocyte maturation via a lipolysis-dependent mechanism by Xing Zhang (11943)

    Published 2019
    “…Collectively, our study demonstrates that autophagy plays an important role in regulating adipocyte maturation via a lipophagy and lipolysis-dependent mechanism.…”
  13. 1333

    Supplementary Material for: CD4+CD25+ Regulatory T Cells Inhibit Natural Killer Cell Hepatocytotoxicity of Hepatitis B Virus Transgenic Mice via Membrane-Bound TGF-β and OX40 by Chen Y. (3114699)

    Published 2015
    “…Adoptive transfer of hepatic Tregs from HBs-Tg mice but not wild B6 mice could significantly attenuate the oversensitive liver injury via inhibiting liver accumulation and decreasing NK cell group 2D-mediated activation of NK cells in the recipient HBs-Tg mice. …”
  14. 1334
  15. 1335

    Sensory-evoked potentials of N80 and N150. by Soheila Qanbari (20455173)

    Published 2024
    “…The tDCS group demonstrated a significant decrease in AMT of MF and TrA/IO muscles (P < 0.05) and an increase in N80 amplitude (P = 0.027), with no significant changes in the control group. …”
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