Showing 321 - 340 results of 12,575 for search '(( 5 step decrease ) OR ( 100 ((((nm decrease) OR (nn decrease))) OR (a decrease)) ))', query time: 0.46s Refine Results
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    Palladium-Catalyzed Asymmetric Intramolecular Dearomative Heck Annulation of Aryl Halides to Furnish Indolines by Yuanfeng Li (217864)

    Published 2021
    “…An unprecedented Pd-catalyzed asymmetric intramolecular cascade cyclization of aryl halides with readily available arylboronic acids proceeds through a Heck-type dearomative cyclization terminated with arylation in the presence of Pd<sub>2</sub>(dba)<sub>3</sub> (10 mol %), Cu<sub>2</sub>O (5 mol %), and Cs<sub>2</sub>CO<sub>3</sub> (2.0 equiv) in 1,2-dichloroethane (1.0 mL) at 100 °C for 15 h in air using BINOL-based phosphoramidite as the chiral ligand. …”
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    20E repressed ILP-mediated cell membrane translocation of HaP60 and HaP110, dephosphorylated HaP60 and HaP110, and decreased their interaction. by Yu-Qin Di (8752317)

    Published 2021
    “…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). Green, HaP60 or HaP110; red, cell membrane stained with WGA; blue, nuclei stained with DAPI; merge, overlapped green, blue, and red fluorescence. …”
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    Structural Characterization of Ceria-Supported Pt Nanoparticles by Flame-Assisted Spray Pyrolysis Using a Burner Diffusion Flame by Tsuyoshi Nagasawa (8680269)

    Published 2021
    “…The synthesized particles mainly consist of 100 nm-scale CeO<sub>2</sub> with 10 nm-scale Pt and aggregation of small CeO<sub>2</sub> less than 10 nm with highly dispersed Pt at a maximum flame temperature <i>T</i><sub>max</sub> ≈ 1800 K. …”
  13. 333

    Structural Characterization of Ceria-Supported Pt Nanoparticles by Flame-Assisted Spray Pyrolysis Using a Burner Diffusion Flame by Tsuyoshi Nagasawa (8680269)

    Published 2021
    “…The synthesized particles mainly consist of 100 nm-scale CeO<sub>2</sub> with 10 nm-scale Pt and aggregation of small CeO<sub>2</sub> less than 10 nm with highly dispersed Pt at a maximum flame temperature <i>T</i><sub>max</sub> ≈ 1800 K. …”
  14. 334

    Structural Characterization of Ceria-Supported Pt Nanoparticles by Flame-Assisted Spray Pyrolysis Using a Burner Diffusion Flame by Tsuyoshi Nagasawa (8680269)

    Published 2021
    “…The synthesized particles mainly consist of 100 nm-scale CeO<sub>2</sub> with 10 nm-scale Pt and aggregation of small CeO<sub>2</sub> less than 10 nm with highly dispersed Pt at a maximum flame temperature <i>T</i><sub>max</sub> ≈ 1800 K. …”
  15. 335

    Structural Characterization of Ceria-Supported Pt Nanoparticles by Flame-Assisted Spray Pyrolysis Using a Burner Diffusion Flame by Tsuyoshi Nagasawa (8680269)

    Published 2021
    “…The synthesized particles mainly consist of 100 nm-scale CeO<sub>2</sub> with 10 nm-scale Pt and aggregation of small CeO<sub>2</sub> less than 10 nm with highly dispersed Pt at a maximum flame temperature <i>T</i><sub>max</sub> ≈ 1800 K. …”
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    Data Sheet 1_Semaglutide attenuates myocardial ischemia-reperfusion injury by inhibiting ferroptosis of cardiomyocytes via activation of PKC-S100A9 axis.pdf by Yan Liu (25061)

    Published 2025
    “…In vitro, experiments showed that semaglutide decreased the expression of S100A9 by activating the Protein Kinase C(PKC) pathway, thus inhibiting ferroptosis in cardiomyocytes.…”
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    Data Sheet 2_Semaglutide attenuates myocardial ischemia-reperfusion injury by inhibiting ferroptosis of cardiomyocytes via activation of PKC-S100A9 axis.docx by Yan Liu (25061)

    Published 2025
    “…In vitro, experiments showed that semaglutide decreased the expression of S100A9 by activating the Protein Kinase C(PKC) pathway, thus inhibiting ferroptosis in cardiomyocytes.…”
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    Table 1_Semaglutide attenuates myocardial ischemia-reperfusion injury by inhibiting ferroptosis of cardiomyocytes via activation of PKC-S100A9 axis.docx by Yan Liu (25061)

    Published 2025
    “…In vitro, experiments showed that semaglutide decreased the expression of S100A9 by activating the Protein Kinase C(PKC) pathway, thus inhibiting ferroptosis in cardiomyocytes.…”