Showing 18,881 - 18,900 results of 108,878 for search '(( 5 ((nn decrease) OR (a decrease)) ) OR ( e ((mean decrease) OR (point decrease)) ))', query time: 1.84s Refine Results
  1. 18881
  2. 18882

    bpV(pic) reduces neuronal autophagosome aggregation. by Chandler L. Walker (188845)

    Published 2012
    “…<p>Vehicle-treated rats exhibited dense intracellular LC3-positive autophagosome aggregation in neurons (arrows). Treatment with bpV promoted a decrease in neuronal autophagosome clustering. …”
  3. 18883

    Tumor Cells Switch to Mitochondrial Oxidative Phosphorylation under Radiation via mTOR-Mediated Hexokinase II Inhibition - A Warburg-Reversing Effect by Chung-Ling Lu (711442)

    Published 2015
    “…Three tumor cell lines (breast cancer MCF-7, colon cancer HCT116 and glioblastoma U87) showed a quick relocation of mTOR to mitochondria after irradiation with a single dose 5 Gy, which was companied with decreased lactate production, increased mitochondrial ATP generation and oxygen consumption. …”
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    Table 1_Cannabidiol reduces synaptic strength and neuronal firing in layer V pyramidal neurons of the human cortex with drug-resistant epilepsy.docx by Vladimir A. Martinez-Rojas (21758372)

    Published 2025
    “…The perfusion of CBD transiently depressed the field excitatory potential amplitude elicited in layer I/II and recorded in layer V without altering the paired-pulse ratio, suggesting a postsynaptic locus of action for CBD. …”
  10. 18890
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    <em>In Vitro</em> and <em>Ex Vivo</em> Analysis of <em>CHRNA3</em> and <em>CHRNA5</em> Haplotype Expression by Glenn A. Doyle (209929)

    Published 2011
    “…For <em>in vitro</em> analyses, promoter haplotypes were sub-cloned into a luciferase reporter vector. When assessed in BE(2)-C cells, luciferase expression was equivalent among <em>CHRNA3</em> haplotypes, but the combination of deletion at rs3841324 and variation at rs503464 decreased <em>CHRNA5</em> promoter-derived luciferase activity, possibly due to loss of an SP-1 and other site(s). …”
  12. 18892

    Single-Molecule Analysis of the Supramolecular Organization of the M<sub>2</sub> Muscarinic Receptor and the Gα<sub>i1</sub> Protein by Rabindra V. Shivnaraine (3097206)

    Published 2016
    “…The oligomeric nature of G<sub>i1</sub> in live CHO cells was demonstrated by means of Förster resonance energy transfer and dual-color fluorescence correlation spectroscopy in studies with eGFP- and mCherry-labeled Gα<sub>i1</sub>; stochastic FRET was ruled out by means of non-interacting pairs. …”
  13. 18893

    Single-Molecule Analysis of the Supramolecular Organization of the M<sub>2</sub> Muscarinic Receptor and the Gα<sub>i1</sub> Protein by Rabindra V. Shivnaraine (3097206)

    Published 2016
    “…The oligomeric nature of G<sub>i1</sub> in live CHO cells was demonstrated by means of Förster resonance energy transfer and dual-color fluorescence correlation spectroscopy in studies with eGFP- and mCherry-labeled Gα<sub>i1</sub>; stochastic FRET was ruled out by means of non-interacting pairs. …”
  14. 18894

    Single-Molecule Analysis of the Supramolecular Organization of the M<sub>2</sub> Muscarinic Receptor and the Gα<sub>i1</sub> Protein by Rabindra V. Shivnaraine (3097206)

    Published 2016
    “…The oligomeric nature of G<sub>i1</sub> in live CHO cells was demonstrated by means of Förster resonance energy transfer and dual-color fluorescence correlation spectroscopy in studies with eGFP- and mCherry-labeled Gα<sub>i1</sub>; stochastic FRET was ruled out by means of non-interacting pairs. …”
  15. 18895

    Single-Molecule Analysis of the Supramolecular Organization of the M<sub>2</sub> Muscarinic Receptor and the Gα<sub>i1</sub> Protein by Rabindra V. Shivnaraine (3097206)

    Published 2016
    “…The oligomeric nature of G<sub>i1</sub> in live CHO cells was demonstrated by means of Förster resonance energy transfer and dual-color fluorescence correlation spectroscopy in studies with eGFP- and mCherry-labeled Gα<sub>i1</sub>; stochastic FRET was ruled out by means of non-interacting pairs. …”
  16. 18896
  17. 18897

    Induction of ELF5 alters FOXA1 and ER binding to the genome. by Catherine L. Piggin (8212272)

    Published 2020
    “…<p>Panel <b>A</b>, UpSet presentation of DiffBind output that identified statistically significant increases in FOXA1 or ER binding in response to induction of ELF5 with doxycycline (Dox). …”
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