Showing 241 - 260 results of 80,909 for search '(( 50 ((((ppm decrease) OR (nn decrease))) OR (a decrease)) ) OR ( 2 we decrease ))', query time: 1.40s Refine Results
  1. 241

    The primers related to FAM50A. by Longhai Li (4052044)

    Published 2025
    “…Knockdown of FAM50A decreased cell proliferation ability, the proportion of EdU positive cells, and the number of CRC cell colonies, whereas overexpressing FAM50A promoted proliferative phenotypes. …”
  2. 242

    DataSheet_1_Decrease in Serum Urate Level Is Associated With Loss of Visceral Fat in Male Gout Patients.docx by Zijing Ran (11429935)

    Published 2021
    “…</p>Methods<p>We retrospectively analyzed 237 male gout patients who had two sets of body composition and metabolic measurements within 6 months. …”
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    Naturally occurring antibodies against serum amyloid A reduce IL-6 release from peripheral blood mononuclear cells by Tadeja Kuret (5059433)

    Published 2018
    “…Resolution of the acute phase and SAA reduction are well documented, however the exact mechanism remains elusive. Two inducible SAA proteins, SAA1 and SAA2, with their variants could contribute to systemic inflammation. …”
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    Effects of increasing temperature and, CO<sub>2</sub> on quality of litter, shredders, and microorganisms in Amazonian aquatic systems by Renato Tavares Martins (4634317)

    Published 2017
    “…We hypothesized that simulated climate change (warming and elevated CO<sub>2</sub>) would: i) decrease leaf-litter quality, ii) decrease survival and leaf breakdown by shredders, and iii) increase microbial leaf breakdown and fungal biomass. …”
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    Using climate envelope models to identify potential ecological trajectories on the Kenai Peninsula, Alaska by Dawn Robin Magness (6157265)

    Published 2018
    “…We use two lines of evidence, model convergence and empirically measured rates of change, to identify the following plausible ecological trajectories for the peninsula: (1.) alpine tundra and sub-alpine shrub decrease, (2.) perennial snow and ice decrease, (3.) forests remain on the Kenai Lowlands, (4.) the contiguous white-Lutz-Sitka spruce complex declines, and (5.) mixed conifer afforestation occurs along the Gulf of Alaska coast. …”
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    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
  17. 257

    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
  18. 258

    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
  19. 259

    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”
  20. 260

    Modulating Molecular Chaperones Improves Mitochondrial Bioenergetics and Decreases the Inflammatory Transcriptome in Diabetic Sensory Neurons by Jiacheng Ma (1530640)

    Published 2015
    “…We have previously demonstrated that modulating molecular chaperones with KU-32, a novobiocin derivative, ameliorates physiologic and bioenergetic deficits of diabetic peripheral neuropathy (DPN). …”