Showing 41 - 60 results of 134,526 for search '(( 2 we decrease ) OR ( 5 ((((mg decrease) OR (a decrease))) OR (mean decrease)) ))', query time: 1.78s Refine Results
  1. 41
  2. 42
  3. 43
  4. 44
  5. 45
  6. 46
  7. 47

    Drugs which cluster on the 'anxiolytic' group decrease 5-HT turnover in the brain. by Caio Maximino (100467)

    Published 2014
    “…<p>(A) Turnover rates, as measured by 5-HIAA:5-HT ratios, normalized to the values of vehicle-treated animals, for the following drugs: fluoxetine (FLX; chronic treatment with 10 mg/kg); chlordiazepoxide (CDZ; 0.02 mg/kg); clonazepam (CLZ; 0.05 mg/kg); diazepam (DZP; 1.25 mg/kg); buspirone (BUS; 50 mg/kg); ethanol (EtOH, 2.5%); dizocilpine (MK; 0.005 mg/kg); verapamil (VER; 5 mg/kg); WAY 100,635 (WAY; 0.03 mg/kg); and SB 224,289 (SB; 2.5 mg/kg). …”
  8. 48
  9. 49
  10. 50
  11. 51
  12. 52
  13. 53
  14. 54
  15. 55

    FTY720 treatment decreased tumor growth in a xenograft model of hepatoblastoma. by Laura L. Stafman (6577184)

    Published 2019
    “…<p>(A) HuH6 cells (2.5 x 10<sup>6</sup> cells in 25% Matrigel) were injected subcutaneously into the right flank of 6-week-old female athymic nude mice. …”
  16. 56
  17. 57
  18. 58

    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
  19. 59

    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
  20. 60

    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”