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largest decrease » largest decreases (Expand Search), larger decrease (Expand Search), marked decrease (Expand Search)
greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
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27641
Table4_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27642
Table9_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27643
Table3_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27644
Table1_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27645
Table10_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27646
Table6_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27647
Table8_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27648
Table7_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.XLSX
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27649
Effect of Trk antagonist on Behavior was studied using Morris Water Maze test and representative tack sheet showing memory test of Normoxia (I), Hypoxia (II), Enriched environment...
Published 2013“…<p>Inhibition of TrkB with K252a nullifies the protective effect of Enriched environment on hypobaric hypoxia induced memory impairment as evident from increased pathlength (A) and latency (B) and decreased No. of platform crossing (C) and time spent in target quadrant (D). …”
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27650
Edible plants and domestic animals detected in the samples.
Published 2018“…The total number of reads sequenced is presented per million reads (See <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.0197399#pone.0197399.s002" target="_blank">S2 Table</a> for exact numbers).…”
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27651
Data_Sheet_1_Brain-enriched miR-128: Reduced in exosomes from Parkinson’s patient plasma, improves synaptic integrity, and prevents 6-OHDA mediated neuronal apoptosis.docx
Published 2023“…Interestingly, a concomitant decreased expression of miR-128 was observed in the cellular models of PD. …”
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27652
Image3_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.TIF
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27653
Image_1_Combination Therapy of Mithramycin A and Immune Checkpoint Inhibitor for the Treatment of Colorectal Cancer in an Orthotopic Murine Model.tif
Published 2021“…Mit-A in the presence of αPD-L1 significantly increased CD8<sup>+</sup> T cell infiltration and decreased immunosuppressive granulocytic myeloid-derived suppressor cells and anti-inflammatory macrophages in the TME. …”
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27654
Image4_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.TIF
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27655
Image_5_Combination Therapy of Mithramycin A and Immune Checkpoint Inhibitor for the Treatment of Colorectal Cancer in an Orthotopic Murine Model.tif
Published 2021“…Mit-A in the presence of αPD-L1 significantly increased CD8<sup>+</sup> T cell infiltration and decreased immunosuppressive granulocytic myeloid-derived suppressor cells and anti-inflammatory macrophages in the TME. …”
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27656
Image_3_Combination Therapy of Mithramycin A and Immune Checkpoint Inhibitor for the Treatment of Colorectal Cancer in an Orthotopic Murine Model.tif
Published 2021“…Mit-A in the presence of αPD-L1 significantly increased CD8<sup>+</sup> T cell infiltration and decreased immunosuppressive granulocytic myeloid-derived suppressor cells and anti-inflammatory macrophages in the TME. …”
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27657
Image2_Effect of SLC16A1 on Hepatic Glucose Metabolism in Newborn and Post-Weaned Holstein Bulls.TIF
Published 2022“…Moreover, this study found that miR-22-3p decreased cell activity by negatively regulating the SLC16A1. …”
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27658
Table_1_Whole Grain Qingke Attenuates High-Fat Diet-Induced Obesity in Mice With Alterations in Gut Microbiota and Metabolite Profile.XLSX
Published 2021“…The transcript levels of two genes associated with lipogenesis, such as lipid fatty acid synthase (FAS) and acetyl-CoA carboxylase (ACC) were also decreased in the HFD+QK group. …”
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27659
Image_2_Combination Therapy of Mithramycin A and Immune Checkpoint Inhibitor for the Treatment of Colorectal Cancer in an Orthotopic Murine Model.tif
Published 2021“…Mit-A in the presence of αPD-L1 significantly increased CD8<sup>+</sup> T cell infiltration and decreased immunosuppressive granulocytic myeloid-derived suppressor cells and anti-inflammatory macrophages in the TME. …”
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27660
Image_6_Combination Therapy of Mithramycin A and Immune Checkpoint Inhibitor for the Treatment of Colorectal Cancer in an Orthotopic Murine Model.tif
Published 2021“…Mit-A in the presence of αPD-L1 significantly increased CD8<sup>+</sup> T cell infiltration and decreased immunosuppressive granulocytic myeloid-derived suppressor cells and anti-inflammatory macrophages in the TME. …”