Showing 1 - 20 results of 2,766 for search '(((( 26 c decrease ) OR ( _ ((stem decrease) OR (nn decrease)) ))) OR ( _ largest decrease ))', query time: 0.56s Refine Results
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    High-Sensitivity Top-Down Proteomics Reveals Enhanced Maturation of Micropatterned Induced Pluripotent Stem Cell-Derived Cardiomyocytes by Mallory C. Wilson (22126828)

    Published 2025
    “…Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) are increasingly used for disease modeling, drug discovery, and precision medicine, yet their utility is often limited by their immature phenotype. …”
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    Lateral ventricular wall whole mount immunofluorescence from brains of 2f1 <i>Lrig1</i><sup><em>T2A-iCreERT2/+</em></sup><i>; Rosa26</i><sup><em>Ai14/+</em></sup> mice at 7 days, 1... by Hyung-song Nam (8914220)

    Published 2025
    “…<p dir="ltr">An experiment in Nam and Capecchi, 2020 performed with the <a href="https://doi.org/10.6084/m9.figshare.18092849.v84" rel="noreferrer" target="_blank">line 1c2 mice</a> was repeated with the <a href="https://doi.org/10.6084/m9.figshare.12401006.v129" rel="noreferrer" target="_blank">line 2f1 mice</a> to ensure that the line 2f1 behaves the same as the line 1c2. …”
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    Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts by Mohmmad Faizan (14122382)

    Published 2025
    “…Orbital analysis reveals that earlier phosphenium cations fail to exhibit metallomimetic H<sub>2</sub> activation due to the inaccessibility of suitable molecular orbitals, stemming from the structural features of the ligands. …”
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    Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts by Mohmmad Faizan (14122382)

    Published 2025
    “…Orbital analysis reveals that earlier phosphenium cations fail to exhibit metallomimetic H<sub>2</sub> activation due to the inaccessibility of suitable molecular orbitals, stemming from the structural features of the ligands. …”
  20. 20

    Why Only the 2,6-Bis(o-Carborano)Pyridine-Stabilized Phosphenium Cation Has Succeeded in Splitting H<sub>2</sub>?: Key Design Insights for Next-Gen Phosphenium Pincer Catalysts by Mohmmad Faizan (14122382)

    Published 2025
    “…Orbital analysis reveals that earlier phosphenium cations fail to exhibit metallomimetic H<sub>2</sub> activation due to the inaccessibility of suitable molecular orbitals, stemming from the structural features of the ligands. …”