Showing 3,021 - 3,040 results of 21,342 for search '(( significant decrease decrease ) OR ( significant portion decrease ))', query time: 0.47s Refine Results
  1. 3021

    <b>Dietary Acid Load and Body Weight in Type 1 Diabetes: A Randomized Clinical Trial</b> by Hana Kahleova (618836)

    Published 2025
    “…Potential renal acid load and net endogenous acid production—both markers of dietary acid load—decreased significantly in the vegan group, but not in the portion-controlled group. …”
  2. 3022
  3. 3023

    A Novel Type of PSMA-Targeting Ligands via β‑Branched Aromatic α‑Amino Acid Modification, Bearing Enhanced Tumor Targeting and Reduced Renal Toxicity by Zong-Xiao Liu (22177765)

    Published 2025
    “…With average renal uptake of less than 10%ID/g, as opposed to 25%ID/g for [<sup>68</sup>Ga]Ga-<b>PSMA-617</b>, this substantial decrease in renal accumulation translates to a significantly improved safety profile by minimizing nephrotoxic risks. …”
  4. 3024

    A Novel Type of PSMA-Targeting Ligands via β‑Branched Aromatic α‑Amino Acid Modification, Bearing Enhanced Tumor Targeting and Reduced Renal Toxicity by Zong-Xiao Liu (22177765)

    Published 2025
    “…With average renal uptake of less than 10%ID/g, as opposed to 25%ID/g for [<sup>68</sup>Ga]Ga-<b>PSMA-617</b>, this substantial decrease in renal accumulation translates to a significantly improved safety profile by minimizing nephrotoxic risks. …”
  5. 3025

    Overcoming the Limitations of Transition-Metal Catalysis in the Chemoenzymatic Dynamic Kinetic Resolution (DKR) of Atropisomeric Bisnaphthols by Kun Wang (134525)

    Published 2024
    “…Such a reliable ligand offers π* orbitals, allowing additional metal-to-ligand d−π* back-donation, which can significantly enhance coordination effects between the ligand and metal. …”
  6. 3026

    Overcoming the Limitations of Transition-Metal Catalysis in the Chemoenzymatic Dynamic Kinetic Resolution (DKR) of Atropisomeric Bisnaphthols by Kun Wang (134525)

    Published 2024
    “…Such a reliable ligand offers π* orbitals, allowing additional metal-to-ligand d−π* back-donation, which can significantly enhance coordination effects between the ligand and metal. …”
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