The application of nanomedicine in the treatment of acute lung injury (ALI) has great potential for the development of new therapeutic strategies. To gain insight into the kinetics of nanocarrier distribution upon time-dependent changes in tissue permeability after ALI induction in mice, we developed a physiologically based pharmacokinetic model for albumin nanoparticles (ANP). The model was calibrated using data from mice treated with intraperitoneal LPS (6Â mg/kg), followed by intravenous ANP (0.5 mg/mouse or about 20.8Â mg/kg) at 0.5, 6, and 24Â h. The simulation results reproduced the experimental observations and indicated that the accumulation of ANP in the lungs increased, reaching a peak 6Â h after LPS injury, whereas it decreased in the liver, kidney, and spleen. The model predicted that LPS caused an immediate (within the first 30Â min) dramatic increase in lung and kidney tissue permeability, whereas splenic tissue permeability gradually increased over 24Â h after LPS injection. This information can be used to design new therapies targeting specific organs affected by bacterial infections and potentially by other inflammatory insults.
Physiologically based pharmacokinetic model for predicting the biodistribution of albumin nanoparticles after induction and recovery from acute lung injury.
基于生理的药代动力学模型预测急性肺损伤诱导和恢复后白蛋白纳米颗粒的生物分布
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作者:Kutumova Elena O, Akberdin Ilya R, Egorova Vera S, Kolesova Ekaterina P, Parodi Alessandro, Pokrovsky Vadim S, Zamyatnin Andrey A Jr, Kolpakov Fedor A
| 期刊: | Heliyon | 影响因子: | 3.600 |
| 时间: | 2024 | 起止号: | 2024 May 10; 10(10):e30962 |
| doi: | 10.1016/j.heliyon.2024.e30962 | 研究方向: | 免疫/内分泌 |
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