Showing 1,041 - 1,060 results of 39,063 for search '(( 5 ((step decrease) OR (mean decrease)) ) OR ( 100 ((nn decrease) OR (a decrease)) ))', query time: 1.02s Refine Results
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    Quantitative Proteomics Reveal an Altered Pattern of Protein Expression in Brain Tissue from Mice Lacking GPR37 and GPR37L1 by TrangKimberly Thu Nguyen (8418141)

    Published 2020
    “…One of the most decreased proteins in the DKO versus WT brain tissue was S100A5, a calcium-binding protein, and the reduction of S100A5 expression in KO brain tissue was validated via Western blot. …”
  11. 1051

    Quantitative Proteomics Reveal an Altered Pattern of Protein Expression in Brain Tissue from Mice Lacking GPR37 and GPR37L1 by TrangKimberly Thu Nguyen (8418141)

    Published 2020
    “…One of the most decreased proteins in the DKO versus WT brain tissue was S100A5, a calcium-binding protein, and the reduction of S100A5 expression in KO brain tissue was validated via Western blot. …”
  12. 1052

    Quantitative Proteomics Reveal an Altered Pattern of Protein Expression in Brain Tissue from Mice Lacking GPR37 and GPR37L1 by TrangKimberly Thu Nguyen (8418141)

    Published 2020
    “…One of the most decreased proteins in the DKO versus WT brain tissue was S100A5, a calcium-binding protein, and the reduction of S100A5 expression in KO brain tissue was validated via Western blot. …”
  13. 1053

    Quantitative Proteomics Reveal an Altered Pattern of Protein Expression in Brain Tissue from Mice Lacking GPR37 and GPR37L1 by TrangKimberly Thu Nguyen (8418141)

    Published 2020
    “…One of the most decreased proteins in the DKO versus WT brain tissue was S100A5, a calcium-binding protein, and the reduction of S100A5 expression in KO brain tissue was validated via Western blot. …”
  14. 1054

    Quantitative Proteomics Reveal an Altered Pattern of Protein Expression in Brain Tissue from Mice Lacking GPR37 and GPR37L1 by TrangKimberly Thu Nguyen (8418141)

    Published 2020
    “…One of the most decreased proteins in the DKO versus WT brain tissue was S100A5, a calcium-binding protein, and the reduction of S100A5 expression in KO brain tissue was validated via Western blot. …”
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    Ketamine decreases the ATP level and neurotransmitter reuptake activity in cultured iPSC-derived neurons. by Hiroyuki Ito (339050)

    Published 2015
    “…<p>(A) Ketamine decreased the ATP level in a time- and dose-dependent manner. …”
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