Showing 21 - 40 results of 45,322 for search '(((( 50 c decrease ) OR ( 5 ((point decrease) OR (fold decrease)) ))) OR ( 2 c decrease ))', query time: 0.74s Refine Results
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    HFD induces LDs and decreases ER and mitochondria in nephrocytes. by Aleksandra Lubojemska (10746241)

    Published 2021
    “…(<b>E</b>) Low and high magnification views of pericardial nephrocytes (dotted outlines) from STD and HFD larvae, showing that HFD decreases mitochondria (marked with anti-ATP5A) and ER (marked with anti-KDEL) but increases LDs (marked with LipidTOX). …”
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    FTY720 decreased viability, proliferation, and motility and induced apoptosis in human hepatoblastoma cells. by Laura L. Stafman (6577184)

    Published 2019
    “…<p>(A) Following 24 hours of treatment with FTY720, the viability of HuH6 cells measured using the alamarBlue cell viability assay was significantly decreased (LD<sub>50</sub> = 8.4 μM, p ≤ 0.05). (B) Following 24 hours of treatment with FTY720, the proliferation of HuH6 cells measured using the CellTiter 96 cell proliferation assay was significantly decreased (IC<sub>50</sub> = 6.4 μM, p ≤ 0.05). …”
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    Juvenile demyelination leads to a decrease in axonal complexity of PFC PV interneurons. by Sara Hijazi (21656615)

    Published 2025
    “…<b>C</b>. Confocal overview image of the PFC region immunolabeled for MBP expression showing the loss of myelin following 6 weeks of 0.2% cuprizone-diet. …”
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    TUDCA decreases ER stress in HOX neonatal rat lungs. by Kirkwood A. Pritchard Jr. (13449794)

    Published 2022
    “…<p>(<b>A</b>) The expression levels of ER stress markers (P-PERK 0.6±0.1-fold, p<0.001, n = 5; PERK 0.7±0.1-fold, p = 0.00364, n = 5; P-IRE1α 0.6±0.0-fold, p<0.001, n = 5; IRE1α 0.6±0.1-fold, p<0.001, n = 5; GRP78 0.8±0.1-fold, p<0.001, n = 5; cleaved ATF6 0.1±0.0-fold, p<0.001, n = 5; spliced XBP1 0.3±0.0-fold, p<0.001, n = 5; 2 males and 3 females) are all decreased while the N-glycosylated VEGFR2 is increased (3.5±0.2-fold, p<0.001, n = 5) in HOX neonatal lungs at P10 indicating TUDCA can attenuate hyperoxia-induced ER stress. …”
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