Showing 10,301 - 10,320 results of 226,405 for search '(( a ((((teer decrease) OR (a decrease))) OR (linear decrease)) ) OR ( a latest decrease ))', query time: 1.48s Refine Results
  1. 10301

    PXT3003 therapy acting on Pmp22 overexpression and downstream signalling in long-term at 12 weeks. by Thomas Prukop (6236186)

    Published 2019
    “…At the end of long-term observation, PXT3003 early short-term treatment restored the decreased p-AKT/AKT signalling in CMT1A rats (H; WT controls 1.00±0.17, CMT1A controls 0.38±0.08, CMT PXT3003-3 0.93±0.21) and dose-dependently corrected the disrupted ratio of p-AKT/AKT to p-MAPK/MAPK signalling towards the wildtype situation (I; CMT1A controls 0.30±0.08, CMT PXT3003-1 0.56±0.15, CMT PXT3003-2 0.85±0.13, CMT PXT3003-3 1.36±0.52), which is characterized by a higher relative amount of p-AKT versus p-MAPK. …”
  2. 10302
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  6. 10306

    A Behaviorally-Explicit Approach for Delivering Vaccine Baits to Mesopredators to Control Epizootics in Fragmented Landscapes by James C. Beasley (392355)

    Published 2015
    “…Thus, although bait acceptance was confirmed beyond bait zone boundaries, the proportion of vaccinated individuals may comprise a small minority of the population at increasing distances from baiting interiors. …”
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  9. 10309

    Table_3_Manganese Depletion Leads to Multisystem Changes in the Transcriptome of the Opportunistic Pathogen Streptococcus sanguinis.XLSX by Tanya Puccio (9603734)

    Published 2020
    “…Despite the broad specificity of EDTA, analysis of cellular metal content revealed a decrease in manganese, but not in other metals, that coincided with a drop in growth rate. …”
  10. 10310

    Table_1_Manganese Depletion Leads to Multisystem Changes in the Transcriptome of the Opportunistic Pathogen Streptococcus sanguinis.XLSX by Tanya Puccio (9603734)

    Published 2020
    “…Despite the broad specificity of EDTA, analysis of cellular metal content revealed a decrease in manganese, but not in other metals, that coincided with a drop in growth rate. …”
  11. 10311

    Table_2_Manganese Depletion Leads to Multisystem Changes in the Transcriptome of the Opportunistic Pathogen Streptococcus sanguinis.XLSX by Tanya Puccio (9603734)

    Published 2020
    “…Despite the broad specificity of EDTA, analysis of cellular metal content revealed a decrease in manganese, but not in other metals, that coincided with a drop in growth rate. …”
  12. 10312

    Example of the application of Eq. 9a and 9b for analyzing a GFP-VASP FRAP experiment. by Jun Wu (4002)

    Published 2012
    “…The fluorescence is observed to go through a peak and then decrease due to bleaching caused by image capture. …”
  13. 10313

    Data_Sheet_1_Manganese Depletion Leads to Multisystem Changes in the Transcriptome of the Opportunistic Pathogen Streptococcus sanguinis.pdf by Tanya Puccio (9603734)

    Published 2020
    “…Despite the broad specificity of EDTA, analysis of cellular metal content revealed a decrease in manganese, but not in other metals, that coincided with a drop in growth rate. …”
  14. 10314

    The effect of PAS interrupting alleles (PIAs) on 3’UTR length. by Eldad David Shulman (9248915)

    Published 2020
    “…Notably, this PAS SNP is detected as a pA-QTL in five different tissues, and in all these cases its PIA is consistently associated with 3’UTR shortening effect (shown in <b>D</b>) (nominal p-values obtained using FastQTL linear regression as described in the Methods). …”
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  18. 10318

    Overexpression of cyclin D-CDK complex components partially rescues AR-mediated growth suppression of PC3-Lenti-AR. by Young-Chae Kim (163381)

    Published 2015
    “…<p>(A) Stable overexpression of CDK4 and CDK6 was validated by immunoblot analysis. …”
  19. 10319

    Colocalization of pA-QTL and eQTL signals. by Eldad David Shulman (9248915)

    Published 2020
    “…</b> An example of the uncommon case where a PIA (the G allele, in this case) was associated with decreased pAUI of the corresponding p(A) site (that is, 3’UTR lengthening) but with higher expression of the target gene. …”
  20. 10320