Showing 62,641 - 62,660 results of 66,758 for search '(( 01 ((0 decrease) OR (a decrease)) ) OR ( 50 ((nn decrease) OR (mean decrease)) ))', query time: 1.59s Refine Results
  1. 62641

    Fig 2 - by Britt-Marie Iresjö (446623)

    Published 2022
    “…The two High AA treated groups showed significantly increased phenylalanine incorporation compared to Low AA treated cells regardless of IGF-1 levels. Mean±SE. a p< 0.001 vs Low AA siRNA control cells. b p< 0.01 vs High AA siRNA control cells. …”
  2. 62642

    Overview of experimental design. by Chongwei Chen (2697124)

    Published 2016
    “…*P<0.05, **P<0.01 versus the non-stretched control group.…”
  3. 62643

    DYRK2 Negatively Regulates Cardiomyocyte Growth by Mediating Repressor Function of GSK-3β on eIF2Bε by Celine S. Weiss (453817)

    Published 2013
    “…</p><p>Results</p><p>(1) Under baseline conditions eIF2Bε transgenic mice showed no difference in cardiac phenotype compared to wild type, whereas in the mutant eIF2Bε-S<sup>535</sup>A an increase in LV/tibia length (7.5±0.4 mg/mm vs. 6.2±0.2 mg/mm, p<0.001) and cardiomyocyte cross sectional area (13004±570 vs. 10843±347 RU, p<0.01) was observed. (2) Cardiac overexpression of eIF2Bε did not change the response of the heart to pathologic stress induced by chronic isoproterenol treatment. (3) Cardiac overexpression of the eIF2Bε transgene was followed by overexpression of DYRK2 which is known to prime the inhibitory action of GSK-3β on eIF2Bε, while DYRK1A and GSK-3β itself were not increased. (4) In C57BL/6 mice after 48 h of isoproterenol-stimulation or aortic banding, eIF2Bε was increased and DYRK2 was concomitantly decreased. (5) In line with these in vivo findings, siRNA knockdown of DYRK2 in cultured cardiomyocytes resulted in decreased levels of p(S535)- eIF2Bε, (6) whereas adenoviral induced overexpression of DYRK2 was accompanied by clearly increased phosphorylation of eIF2Bε, indicating a coordinated response pattern (7) Adenoviral induced overexpression of DYRK2 leads to significantly reduced cardiomyocyte size and diminishes hypertrophic response to adrenergic stimulation.…”
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    50% reduction of kinesin-1 or dynein is sufficient to perturb neuronal growth. by Gary J. Iacobucci (192833)

    Published 2014
    “…N = 10 cells; *(#) p<0.05, **(##) p<0.01, ***(###) p<0.001 by two-tailed Student t-test (*) and by Bonferroni’s test (#). …”
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