Showing 16,041 - 16,060 results of 104,104 for search '(( 5 ((ppm decrease) OR (a decrease)) ) OR ( a ((fold decrease) OR (nn decrease)) ))', query time: 1.43s Refine Results
  1. 16041
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  3. 16043

    Changes in ELF5, FOXA1 and ER binding to the genome are reflected in gene expression. by Catherine L. Piggin (8212272)

    Published 2020
    “…Panel <b>B</b>, as for panel A but showing genes for which FOXA1 or ER binding was increased or decreased by induction of ELF5. …”
  4. 16044
  5. 16045
  6. 16046
  7. 16047
  8. 16048

    The observed MRM reactions. by Ewa Paszkowska (21246702)

    Published 2025
    “…<div><p>Purpose</p><p>Statins are the most commonly used drugs worldwide. Besides a significant decrease in cardiovascular diseases (CVDs) risk, the use of statins is also connected with a broad beneficial pleiotropic effect. …”
  9. 16049

    Intra- and inter-day precision and accuracy. by Ewa Paszkowska (21246702)

    Published 2025
    “…<div><p>Purpose</p><p>Statins are the most commonly used drugs worldwide. Besides a significant decrease in cardiovascular diseases (CVDs) risk, the use of statins is also connected with a broad beneficial pleiotropic effect. …”
  10. 16050

    DA-dip detectable region in the competitive model. by Hidetoshi Urakubo (578508)

    Published 2021
    “…<p>(A) <i>AC</i><sub>primed</sub> is observed under the stepwise decreasing signal of DA. …”
  11. 16051

    Mucin deglycosylase activity of ChiA2. by Moumita Mondal (632557)

    Published 2014
    “…A 50-fold decrease in the % area density of the spot was observed for ChiA2-treated rabbit mucin compared to the untreated one. …”
  12. 16052

    Data_Sheet_1_Catheter-Based Therapies Decrease Mortality in Patients With Intermediate and High-Risk Pulmonary Embolism: Evidence From Meta-Analysis of 65,589 Patients.DOCX by Arkadiusz Pietrasik (12879863)

    Published 2022
    “…</p>Objective<p>We conducted a systematic review with meta-analysis to compare the efficacy and safety of CDT and ST in intermediate-high and high-risk PE.…”
  13. 16053

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  14. 16054

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  15. 16055

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  16. 16056

    Side-Chain Engineering for Modulating the Mechanical and Thermosalient Behavior of Elastic Crystals of Triple-Helix Coordination Polymers by Shu-Wen An (7450172)

    Published 2024
    “…In this work, starting from a previously reported mechanically responsive CP material (<b>U-CF</b><sub><b>3</b></sub><b>-phen</b>) with a spine of triple-helix polymeric chains decorated by side-chain organic base ligands (1,10-phenanthroline, <b>phen</b>), two other new triple-helix CPs, <b>U-CF</b><sub><b>3</b></sub><b>-bpy</b> and <b>U-CF</b><sub><b>3</b></sub><b>-dmbpy</b>, that are isomorphic to <b>U-CF</b><sub><b>3</b></sub><b>-phen</b> were synthesized through side-chain engineering, i.e., replacing <b>phen</b> with two other organic base ligands, 2,2′-bipyridine (<b>bpy</b>) or 5,5′-dimethyl-2,2′-bipyridine (<b>dmbpy</b>). …”
  17. 16057
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  19. 16059

    S1 Data - by Richard Junior Zapata Dongo (17912565)

    Published 2025
    “…In addition, our analysis using bioinformatics indicated that ABT-199 not only targets BCL2 but also binds to the active site of all ALK mutants, it was contrasted by <i>in vitro</i> ALK kinase activity inhibition by ABT-199 (5.5 μM). This interaction was further supported by a significant decrease of ALK phosphorylation in single and combination treatment with 300nM ABT-199. …”
  20. 16060