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5 nn » 59 nn (Expand Search), 5 n (Expand Search), 5 ng (Expand Search)
5 nm » 5 mm (Expand Search), 5 cm (Expand Search)
ppm decrease » _ decrease (Expand Search), a decrease (Expand Search), pa decreased (Expand Search)
non decrease » point decrease (Expand Search), note decreased (Expand Search), fold decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
nm decrease » _ decrease (Expand Search), a decrease (Expand Search), we decrease (Expand Search)
5 non » _ non (Expand Search), a non (Expand Search), e non (Expand Search)
5 nn » 59 nn (Expand Search), 5 n (Expand Search), 5 ng (Expand Search)
5 nm » 5 mm (Expand Search), 5 cm (Expand Search)
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5-HT inhibits <i>P</i>. <i>berghei</i> infection in mosquitoes.
Published 2024“…(J) Oocyst numbers in control (Ctrl, <i>n</i> = 62) and mosquitoes orally supplemented with 10 nM (<i>n</i> = 43), 100 nM (<i>n</i> = 47) and 1000 nM (<i>n</i> = 64) 5-HT. …”
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Changes to chromatin state with PRMT5 inhibition.
Published 2021“…At a FDR of 10%, more genomic sites show decreased accessibility than increased. (C) qRT-PCR analysis confirmed a decrease in <i>MYC</i> transcript in CLBL-1 (day 2) after treatment with C220 (100 nM) compared to the 0 nM DMSO control (**<i>p < 0</i>.…”
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Selectivity of PRMT5 inhibition with C220.
Published 2021“…(C) Immunoblots and quantification of three biological replicate experiments, showing attenuated SDMA and H4R3me2s in 17–71 (day 4) and CLBL-1 (day 2) after treatment with 100 nM C220, with no significant decreased to PRMT5 expression. …”
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20E repressed ILP-mediated cell membrane translocation of HaP60 and HaP110, dephosphorylated HaP60 and HaP110, and decreased their interaction.
Published 2021“…</b> Immunocytochemistry showed that 20E repressed insulin-mediated HaP60 and HaP110 cell membrane localization in HaEpi cells by dephosphorylating HaP60 and HaP110. Insulin (5 μg/mL for 1 h); PBS as control of insulin; 20E (5 μM for 6 h); DMSO as control of 20E; TPI-1 (100 nM). …”
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Machine Learning Accelerates Discovery of Optimal Colloidal Quantum Dot Synthesis
Published 2019Subjects: -
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