Showing 15,361 - 15,380 results of 121,722 for search '(( 2 e decrease ) OR ( 5 ((point decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.26s Refine Results
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  2. 15362

    Presentation_1_Taoren Honghua Drug Attenuates Atherosclerosis and Plays an Anti-Inflammatory Role in ApoE Knock-Out Mice and RAW264.7 Cells.pptx by Yiru Wang (1686439)

    Published 2020
    “…In RAW264.7 cells, groups with LPS plus Taoren Honghua drug had lower IL-6 and TNF-α, but higher IL-10 than LPS group, as revealed by PCR or ELISA methods. A decrease of total or phosphorylated ERK1/2, JNK, p38, ERK5, STAT3, and AKT were detected, so was the translocation of NF-κB p65 from nuclear to cytoplasm. …”
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  5. 15365

    DataSheet_2_Response mechanisms to acid stress promote LF82 replication in macrophages.pdf by Ting Yao (5118593)

    Published 2023
    “…Background<p>Adherent–invasive E. coli (AIEC) LF82 is capable of adhering to and invading intestinal epithelial cells, as well as replicating within macrophages without inducing host cell death.…”
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    Illustrative plot of intensity function for events occurring at times 0, 1.2, 2.5, 8 and 9 with kernel parameters <i>α</i> = 1.0 and <i>δ</i> = 1.0, a 1 day delay and a time varyin... by H. Juliette T. Unwin (9501226)

    Published 2021
    “…Fig 1A shows a constant <i>μ</i> and Fig 1B and 1C show sinusoidal <i>μ</i> with a linear decrease of different magnitudes. The parameters for <a href="http://www.ploscompbiol.org/article/info:doi/10.1371/journal.pcbi.1008830#pcbi.1008830.e010" target="_blank">Eq (6)</a> in each case are as follows: A—<i>A</i> = 1; B—<i>A</i> = 1, <i>B</i> = −0.001, <i>M</i> = 0.2, <i>N</i> = 0.2 and <i>p</i> = 20; C—<i>A</i> = 1, <i>B</i> = −0.001, <i>M</i> = 0.75, <i>N</i> = 0.75 and <i>p</i> = 20. …”
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    Significant and suggestive QTL for plasma esterified and free cholesterol in F<sub>2</sub> mice derived from B6.apoE<sup>−/−</sup> and C3H.apoE<sup>−/−</sup> mice. by Zongji Lu (341848)

    Published 2013
    “…</p>b<p>Suggestive QTL and significant QTL were 2.4 and 3.4, respectively, for free cholesterol and 2.4 and 3.3, respectively, for esterified cholesterol as defined by 1000 permutation tests.…”
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    Table 7_Apolipoprotein E dysfunction in Alzheimer’s disease: a study on miRNA regulation, glial markers, and amyloid pathology.xlsx by Printha Wijesinghe (14786473)

    Published 2024
    “…Introduction<p>Apolipoprotein E (ApoE) plays a crucial role in lipid homeostasis, predominantly expressed in astrocytes and to a lesser extent in microglia within the central nervous system (CNS). …”
  17. 15377

    Image 4_Apolipoprotein E dysfunction in Alzheimer’s disease: a study on miRNA regulation, glial markers, and amyloid pathology.tif by Printha Wijesinghe (14786473)

    Published 2024
    “…Introduction<p>Apolipoprotein E (ApoE) plays a crucial role in lipid homeostasis, predominantly expressed in astrocytes and to a lesser extent in microglia within the central nervous system (CNS). …”
  18. 15378

    Table 6_Apolipoprotein E dysfunction in Alzheimer’s disease: a study on miRNA regulation, glial markers, and amyloid pathology.xlsx by Printha Wijesinghe (14786473)

    Published 2024
    “…Introduction<p>Apolipoprotein E (ApoE) plays a crucial role in lipid homeostasis, predominantly expressed in astrocytes and to a lesser extent in microglia within the central nervous system (CNS). …”
  19. 15379

    Image 1_Apolipoprotein E dysfunction in Alzheimer’s disease: a study on miRNA regulation, glial markers, and amyloid pathology.tif by Printha Wijesinghe (14786473)

    Published 2024
    “…Introduction<p>Apolipoprotein E (ApoE) plays a crucial role in lipid homeostasis, predominantly expressed in astrocytes and to a lesser extent in microglia within the central nervous system (CNS). …”
  20. 15380

    Image 7_Apolipoprotein E dysfunction in Alzheimer’s disease: a study on miRNA regulation, glial markers, and amyloid pathology.tif by Printha Wijesinghe (14786473)

    Published 2024
    “…Introduction<p>Apolipoprotein E (ApoE) plays a crucial role in lipid homeostasis, predominantly expressed in astrocytes and to a lesser extent in microglia within the central nervous system (CNS). …”