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8441
Parthenolide Derivatives as PKM2 Activators Showing Potential in Colorectal Cancer
Published 2021“…In this study, we designed a series of parthenolide (PTL) derivatives through a stepwise structure optimization, and an excellent derivate <b>29e</b> showed good activity on PKM2 (AC<sub>50</sub> = 86.29 nM) and displayed significant antiproliferative activity against HT29 (IC<sub>50</sub> = 0.66 μM) and SW480 (IC<sub>50</sub> = 0.22 μM) cells. …”
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8442
Parthenolide Derivatives as PKM2 Activators Showing Potential in Colorectal Cancer
Published 2021“…In this study, we designed a series of parthenolide (PTL) derivatives through a stepwise structure optimization, and an excellent derivate <b>29e</b> showed good activity on PKM2 (AC<sub>50</sub> = 86.29 nM) and displayed significant antiproliferative activity against HT29 (IC<sub>50</sub> = 0.66 μM) and SW480 (IC<sub>50</sub> = 0.22 μM) cells. …”
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8443
Parthenolide Derivatives as PKM2 Activators Showing Potential in Colorectal Cancer
Published 2021“…In this study, we designed a series of parthenolide (PTL) derivatives through a stepwise structure optimization, and an excellent derivate <b>29e</b> showed good activity on PKM2 (AC<sub>50</sub> = 86.29 nM) and displayed significant antiproliferative activity against HT29 (IC<sub>50</sub> = 0.66 μM) and SW480 (IC<sub>50</sub> = 0.22 μM) cells. …”
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8444
Parthenolide Derivatives as PKM2 Activators Showing Potential in Colorectal Cancer
Published 2021“…In this study, we designed a series of parthenolide (PTL) derivatives through a stepwise structure optimization, and an excellent derivate <b>29e</b> showed good activity on PKM2 (AC<sub>50</sub> = 86.29 nM) and displayed significant antiproliferative activity against HT29 (IC<sub>50</sub> = 0.66 μM) and SW480 (IC<sub>50</sub> = 0.22 μM) cells. …”
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8445
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8446
PRISMA flow diagram.
Published 2024“…Lower sensitivity was attributed to absence of symptoms, errors in test conduct and absence of supervision or a digital support. We found no difference in COVIDST sensitivity between delta and omicron pre-dominant period. …”
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8447
An Allosteric Modulator of RNA Binding Targeting the N‑Terminal Domain of TDP-43 Yields Neuroprotective Properties
Published 2020“…<i>In silico</i> docking of 50K compounds to the NTD domain of TDP-43 identified a small molecule (nTRD22) that is bound to the N-terminal domain. …”
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8448
Meta-analyses of COVIDST diagnostic accuracy.
Published 2024“…Lower sensitivity was attributed to absence of symptoms, errors in test conduct and absence of supervision or a digital support. We found no difference in COVIDST sensitivity between delta and omicron pre-dominant period. …”
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8449
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8450
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8451
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8452
Modulating Cytotoxicity with Lego-like Chemistry: Upgrading Mitochondriotropic Antioxidants with Prototypical Cationic Carrier Bricks
Published 2023“…Although the lipophilic triphenylphosphonium (TPP<sup>+</sup>) cation is widely used to target antioxidants to mitochondria, TPP<sup>+</sup>-based derivatives have shown cytotoxicity in several biological <i>in vitro</i> models. We confirmed that <b>Mito.TPP</b> is cytotoxic to both human neuronal (SH-SY5Y) and hepatic (HepG2) cells, decreasing intracellular adenosine triphosphate (ATP) levels, leading to mitochondrial membrane depolarization and reduced mitochondrial mass after 24 h. …”
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8453
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8454
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8455
Video_2_Characterization of tmt-opsin2 in Medaka Fish Provides Insight Into the Interplay of Light and Temperature for Behavioral Regulation.MP4
Published 2021“…However, detailed analyses of fish position revealed that the tmt-opsin2 mutants spent more time in central locations of the dish, possibly because of decreased anxiety. …”
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8456
Understanding and Improving the Kinetics of Bulk Carbonation on Sodium Carbonate
Published 2020“…We find that the kinetics of Na<sub>2</sub>CO<sub>3</sub> bulk carbonation is controlled by the <i>I</i><sub>H</sub><sup>+</sup>/<i>V</i><sub>Na</sub><sup>–</sup> defect pair generation in Na<sub>2</sub>CO<sub>3</sub>; we predict that the kinetics can be enhanced by doping lithium into Na<sub>2</sub>CO<sub>3</sub>, which decreases the defect formation energy by 0.13 eV. …”
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8457
Understanding and Improving the Kinetics of Bulk Carbonation on Sodium Carbonate
Published 2020“…We find that the kinetics of Na<sub>2</sub>CO<sub>3</sub> bulk carbonation is controlled by the <i>I</i><sub>H</sub><sup>+</sup>/<i>V</i><sub>Na</sub><sup>–</sup> defect pair generation in Na<sub>2</sub>CO<sub>3</sub>; we predict that the kinetics can be enhanced by doping lithium into Na<sub>2</sub>CO<sub>3</sub>, which decreases the defect formation energy by 0.13 eV. …”
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8458
Understanding and Improving the Kinetics of Bulk Carbonation on Sodium Carbonate
Published 2020“…We find that the kinetics of Na<sub>2</sub>CO<sub>3</sub> bulk carbonation is controlled by the <i>I</i><sub>H</sub><sup>+</sup>/<i>V</i><sub>Na</sub><sup>–</sup> defect pair generation in Na<sub>2</sub>CO<sub>3</sub>; we predict that the kinetics can be enhanced by doping lithium into Na<sub>2</sub>CO<sub>3</sub>, which decreases the defect formation energy by 0.13 eV. …”
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8459
Understanding and Improving the Kinetics of Bulk Carbonation on Sodium Carbonate
Published 2020“…We find that the kinetics of Na<sub>2</sub>CO<sub>3</sub> bulk carbonation is controlled by the <i>I</i><sub>H</sub><sup>+</sup>/<i>V</i><sub>Na</sub><sup>–</sup> defect pair generation in Na<sub>2</sub>CO<sub>3</sub>; we predict that the kinetics can be enhanced by doping lithium into Na<sub>2</sub>CO<sub>3</sub>, which decreases the defect formation energy by 0.13 eV. …”
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8460
Understanding and Improving the Kinetics of Bulk Carbonation on Sodium Carbonate
Published 2020“…We find that the kinetics of Na<sub>2</sub>CO<sub>3</sub> bulk carbonation is controlled by the <i>I</i><sub>H</sub><sup>+</sup>/<i>V</i><sub>Na</sub><sup>–</sup> defect pair generation in Na<sub>2</sub>CO<sub>3</sub>; we predict that the kinetics can be enhanced by doping lithium into Na<sub>2</sub>CO<sub>3</sub>, which decreases the defect formation energy by 0.13 eV. …”