Showing 1 - 20 results of 30,463 for search '(( via mapk decrease ) OR ((( a ((mean decrease) OR (a decrease)) ) OR ( _ largest decrease ))))', query time: 0.54s Refine Results
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    Table 2_SLC4A10 impedes atherosclerosis by diminishing IFN-γ/GZMB levels of CD8+ T cells via the MAPK pathway.docx by Bo Chen (32294)

    Published 2025
    “…</p>Conclusions<p>These data demonstrate that SLC4A10 mitigates cytotoxicity by decreasing the levels of IFN-γ/GZMB of SLC4A10<sup>+</sup> CD8<sup>+</sup> T cells via the MAPK pathway, which impedes plaque progression and aids stabilization.…”
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    Image 1_SLC4A10 impedes atherosclerosis by diminishing IFN-γ/GZMB levels of CD8+ T cells via the MAPK pathway.pdf by Bo Chen (32294)

    Published 2025
    “…</p>Conclusions<p>These data demonstrate that SLC4A10 mitigates cytotoxicity by decreasing the levels of IFN-γ/GZMB of SLC4A10<sup>+</sup> CD8<sup>+</sup> T cells via the MAPK pathway, which impedes plaque progression and aids stabilization.…”
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    Table 1_SLC4A10 impedes atherosclerosis by diminishing IFN-γ/GZMB levels of CD8+ T cells via the MAPK pathway.docx by Bo Chen (32294)

    Published 2025
    “…</p>Conclusions<p>These data demonstrate that SLC4A10 mitigates cytotoxicity by decreasing the levels of IFN-γ/GZMB of SLC4A10<sup>+</sup> CD8<sup>+</sup> T cells via the MAPK pathway, which impedes plaque progression and aids stabilization.…”
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    Repetitive stress induces a decrease in sound-evoked activity. by Ghattas Bisharat (20706928)

    Published 2025
    “…<p>(a) Left: noise-evoked activity rates at different noise intensities for chronically tracked PPys cells in baseline and repeated stress conditions (<i>N</i> = 5 mice, <i>n</i> = 285 neurons, mean ± SE). …”
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    Data Sheet 1_SLC4A10 impedes atherosclerosis by diminishing IFN-γ/GZMB levels of CD8+ T cells via the MAPK pathway.zip by Bo Chen (32294)

    Published 2025
    “…</p>Conclusions<p>These data demonstrate that SLC4A10 mitigates cytotoxicity by decreasing the levels of IFN-γ/GZMB of SLC4A10<sup>+</sup> CD8<sup>+</sup> T cells via the MAPK pathway, which impedes plaque progression and aids stabilization.…”
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