Showing 121 - 140 results of 34,750 for search '(( 5 ht decrease ) OR ((( 50 ((we decrease) OR (a decrease)) ) OR ( a non decrease ))))', query time: 0.74s Refine Results
  1. 121
  2. 122
  3. 123
  4. 124
  5. 125
  6. 126
  7. 127
  8. 128
  9. 129

    The apparent Ca<sup>2+</sup> affinity of release is decreased by hydrophobic mutations. by Matthew R. Bowers (8423115)

    Published 2020
    “…The significant rightward shift in the curve (EC50, non overlapping confidence intervals) indicates a decrease in the apparent Ca<sup>2+</sup> affinity of neurotransmitter release.…”
  10. 130
  11. 131
  12. 132
  13. 133
  14. 134
  15. 135

    Insufficient disulfide bond formation results in a decrease in alkaline phosphatase activity and accumulation of the reduced form of DegP in LCFA-utilizing cells. by Kanchan Jaswal (9542107)

    Published 2020
    “…The band corresponding to AP is shown (Mol. wt. ~50 kDa). <i>(C) Compromised DsbA-DsbB machinery is responsible for the decrease in alkaline phosphatase activity in cells utilizing oleate</i>. …”
  16. 136

    Image_2_SIRT1 haplo-insufficiency results in reduced cortical bone thickness, increased porosity and decreased estrogen receptor alpha in bone in adult 129/Sv female mice.tif by Hanna Artsi (777390)

    Published 2022
    “…</p>Discussion<p>These findings demonstrate that 50% reduction in SIRT1 is sufficient to induce the hallmarks of skeletal aging namely, decreased cortical thickness and increased porosity in female mice, highlighting the role of SIRT1 as a regulator of cortical bone quantity and quality. …”
  17. 137

    Image_1_SIRT1 haplo-insufficiency results in reduced cortical bone thickness, increased porosity and decreased estrogen receptor alpha in bone in adult 129/Sv female mice.tif by Hanna Artsi (777390)

    Published 2022
    “…</p>Discussion<p>These findings demonstrate that 50% reduction in SIRT1 is sufficient to induce the hallmarks of skeletal aging namely, decreased cortical thickness and increased porosity in female mice, highlighting the role of SIRT1 as a regulator of cortical bone quantity and quality. …”
  18. 138
  19. 139
  20. 140