Showing 12,541 - 12,560 results of 66,466 for search '(( 50 ((ns decrease) OR (mean decrease)) ) OR ( 5 ((we decrease) OR (a decrease)) ))', query time: 0.89s Refine Results
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    Increased 5-hmC occurs in osteoblast and chondrocyte gene promoters. by Richard C. Lindsey (7148168)

    Published 2019
    “…(B) Inhibition of PHD2 with Iox2 significantly decreased 5-hmC levels in the promoters of chondrocyte genes HIF1α and VEGF. …”
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    Table_5_Clostridium cellulovorans Proteomic Responses to Butanol Stress.XLSX by Paolo Costa (1396552)

    Published 2021
    “…Several additional metabolic adaptations were triggered by butanol exposure such as the up-regulation of V- and F-type ATPases (involved in ATP synthesis/generation of proton motive force), enzymes involved in amino acid (e.g., arginine, lysine, methionine, and branched chain amino acids) biosynthesis and proteins involved in cell envelope re-arrangement (e.g., the products of Clocel_4136, Clocel_4137, Clocel_4144, Clocel_4162 and Clocel_4352, involved in the biosynthesis of saturated fatty acids) and a redistribution of carbon flux through fermentative pathways (acetate and formate yields were increased and decreased, respectively). …”
  18. 12558

    Quad-Nanopore Array Enables High-Resolution Identification of Four Single-Stranded DNA Homopolymers by Rui Hu (505795)

    Published 2025
    “…This dual benefit not only reduced the large driving force on DNA but also facilitated molecule capture through nanopores, therefore decreasing the voltage thresholds. Finally, the successful discrimination of four ssDNA homopolymer types (polyA<sub>25</sub>, polyT<sub>25</sub>, polyC<sub>25</sub>, and polyG<sub>10</sub>) was achieved using a voltage as low as 30 mV with a translocation speed of 8 μs/nt. …”
  19. 12559

    Quad-Nanopore Array Enables High-Resolution Identification of Four Single-Stranded DNA Homopolymers by Rui Hu (505795)

    Published 2025
    “…This dual benefit not only reduced the large driving force on DNA but also facilitated molecule capture through nanopores, therefore decreasing the voltage thresholds. Finally, the successful discrimination of four ssDNA homopolymer types (polyA<sub>25</sub>, polyT<sub>25</sub>, polyC<sub>25</sub>, and polyG<sub>10</sub>) was achieved using a voltage as low as 30 mV with a translocation speed of 8 μs/nt. …”
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