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Updated: Apr 10, 2026

Technical Refinement of a Bilateral Renal Ischemia-Reperfusion Mouse Model for Acute Kidney Injury Research
Published on: November 3, 2023
Se/S co-doped onion-derived CDs synergistically treat AKI by alleviating oxidative stress and enhancing iron
Zhu Liu1, Xinlin Liu1, Liwan He1
1Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang, Liaoning Province 110016, China.
Abstract:
Rhabdomyolysis-induced acute kidney injury (RM-AKI) is a life-threatening clinical condition characterized by excessive myoglobin release, leading to kidney tubular obstruction, oxidative stress, and iron-mediated lipid peroxidation. However, current therapies fail to effectively suppress oxidative stress cascades and lack kidney targeting. Herein, we developed a kidney-targeted nanodrug delivery system with multimodal antioxidant functionality (DFO@SOC) for RM-AKI therapy. Using antioxidant capacity as the decisive screening criterion, Se/S co-doped onion-derived carbon dots (SOC) were identified as the optimal nanocarrier through systematic natural polyphenol precursor selection and heteroatom-doping optimization. SOC exhibited pronounced superoxide dismutase-like and catalase-like activities. The iron chelator deferoxamine (DFO) was subsequently loaded onto SOC, yielding uniformly sized, negatively charged DFO@SOC nanoparticles. In vitro studies demonstrated efficient cellular uptake, robust intracellular scavenging of reactive oxygen species (ROS) and iron ions, and negligible cytotoxicity. In an RM-AKI mouse model, DFO@SOC selectively accumulated in injured kidneys. Notably, Sound Touch Visco-elastography (STVi) and Quantitative Tissue Scattering Coefficient (QTSC) enabled noninvasive and real-time evaluation of therapeutic efficacy with kidney stiffness decreasing significantly from ∼14 to 7 kPa. Combined biochemical and histopathological analyses, DFO@SOC treatment significantly reduced Scr from ∼193.31 to ∼93.82 μmol/L and blood urea nitrogen (BUN) from ∼52.99 to ∼30.68 mmol/L compared to the model group. In summary, the synergistic antioxidant and iron-chelation effects of DFO and SOC, establishing DFO@SOC as a promising nanotherapeutic strategy for RM-AKI.
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