Showing 3,661 - 3,680 results of 3,696 for search 'significantly ((lower decrease) OR (teer decrease))', query time: 0.29s Refine Results
  1. 3661

    Data Sheet 1_Effects of Th1/Th17 and Th2 cytokines on lipid metabolism in differentiated keratinocytes.zip by Alessia Cavallo (13036581)

    Published 2025
    “…Both Th1/ Th17 and Th2 cytokine mixtures lowered the CERS6 mRNA levels in differentiated keratinocytes. …”
  2. 3662

    Supplementary Material for: Head positioning for stroke blood flow augmentation assisting reperfusion therapies (HEAD-START) study by figshare admin karger (2628495)

    Published 2025
    “…Trendelenburg positioning was maintained for 24h if lesion volume significantly decreased (≥5mL) and stroke reperfusion was suboptimal or undetermined. …”
  3. 3663

    Image 1_Differential Ca2+ handling by isolated synaptic and non-synaptic mitochondria: roles of Ca2+ buffering and efflux.tif by Jyotsna Mishra (3703195)

    Published 2025
    “…When both mitochondrial fractions were exposed to increasing mCa<sup>2+</sup> loads we observed decreased mCa<sup>2+</sup> sequestration in synaptic mitochondria as assessed by a significant increase in the steady-state free extra matrix Ca<sup>2+</sup> (ss[Ca<sup>2+</sup>]<sub>e</sub>) compared to non-synaptic mitochondria. …”
  4. 3664

    Image 2_Differential Ca2+ handling by isolated synaptic and non-synaptic mitochondria: roles of Ca2+ buffering and efflux.tif by Jyotsna Mishra (3703195)

    Published 2025
    “…When both mitochondrial fractions were exposed to increasing mCa<sup>2+</sup> loads we observed decreased mCa<sup>2+</sup> sequestration in synaptic mitochondria as assessed by a significant increase in the steady-state free extra matrix Ca<sup>2+</sup> (ss[Ca<sup>2+</sup>]<sub>e</sub>) compared to non-synaptic mitochondria. …”
  5. 3665

    Applications of Human Biostasis in Crewed Space Exploration by Josh Universe (21186797)

    Published 2025
    “…</p><p dir="ltr">The presentation then addresses the question, "Why Cryonics in Space?" Cryonics significantly reduces metabolic demands, lowering astronauts' food, water, and life support requirements. …”
  6. 3666

    Image 3_Differential Ca2+ handling by isolated synaptic and non-synaptic mitochondria: roles of Ca2+ buffering and efflux.tif by Jyotsna Mishra (3703195)

    Published 2025
    “…When both mitochondrial fractions were exposed to increasing mCa<sup>2+</sup> loads we observed decreased mCa<sup>2+</sup> sequestration in synaptic mitochondria as assessed by a significant increase in the steady-state free extra matrix Ca<sup>2+</sup> (ss[Ca<sup>2+</sup>]<sub>e</sub>) compared to non-synaptic mitochondria. …”
  7. 3667

    Data Sheet 14_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  8. 3668

    Data Sheet 4_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  9. 3669

    Data Sheet 8_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  10. 3670

    Data Sheet 11_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  11. 3671

    Data Sheet 2_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  12. 3672

    Data Sheet 13_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.pdf by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  13. 3673

    Data Sheet 5_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  14. 3674

    Data Sheet 9_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  15. 3675

    Data Sheet 12_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  16. 3676

    Data Sheet 10_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  17. 3677

    Data Sheet 3_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  18. 3678

    Data Sheet 1_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  19. 3679

    Data Sheet 6_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”
  20. 3680

    Data Sheet 7_Regulatory mechanism of ABCB1 transcriptional repression by HDAC5 in rat hepatocytes under hypoxic environment.zip by Ziqin Wei (19433134)

    Published 2025
    “…Objective<p>Previous research has demonstrated that the hypoxic environment at high altitudes significantly alters the pharmacokinetics of many drugs, reducing their efficacy and increasing adverse effects. …”