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fold decrease » fold increase (Expand Search), fold increased (Expand Search)
we decrease » _ decrease (Expand Search), mean decrease (Expand Search), teer decrease (Expand Search)
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1101
Image_1_SIRT1 haplo-insufficiency results in reduced cortical bone thickness, increased porosity and decreased estrogen receptor alpha in bone in adult 129/Sv female mice.tif
Published 2022“…</p>Discussion<p>These findings demonstrate that 50% reduction in SIRT1 is sufficient to induce the hallmarks of skeletal aging namely, decreased cortical thickness and increased porosity in female mice, highlighting the role of SIRT1 as a regulator of cortical bone quantity and quality. …”
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1102
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1103
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1104
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1105
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1106
mTORC1 hyperactivation led to a decreased autophagic activity in the podocytes.
Published 2020“…<p>(<b>A</b>) Primary cultured podocytes were isolated from <i>Tsc2</i><sup>Δ<i>podocyte</i></sup> and wild-type controls, followed by western blot analyses of TSC2, phospho-4EBP1, LC3B type II, p62, phospho-ULK1, and β-tubulin. …”
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1107
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1108
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1109
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1110
AZ2.0
Published 2015“…The updated genome assembly (v2.0) yielded 3- and 3.5-fold increase in N50 and N75, <br>respectively; 2.6-fold decrease in the total number of scaffolds; 1.25-fold increase in the number of <br>valid transcriptome alignments; 13.4-fold less mis-assembly and 1.85-fold increase in the <br>percentage repeat, resulted due to removal of mis-assembly and closure of gaps fromover the earlier <br>assembly (v1.0). …”
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1111
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1112
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1113
<i>Dmxl2</i> knockdown in INS-1E cells decreases glucose-induced insulin release.
Published 2014“…<p>(A) Rbcn-3α is expressed in insulin-secreting cells in the islets of Langerhans in the mouse pancreas. (B) Seventy-two hours after the transfection of INS-1E cells with <i>Dmxl2-</i>siRNA, <i>Dmxl2</i> mRNA levels had decreased by 75% (error bars: SEM; from three independent experiments). …”
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1114
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1115
Mutations in genes of <i>L</i>. <i>major</i> Friedlin following a Mut-Seq screen with methotrexate.
Published 2023Subjects: -
1116
Selected mutations in the folate transporter FT1 and their analysis by DNA editing.
Published 2023Subjects: -
1117
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1118
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1119
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1120