We assessed factors that determine the tissue-specific bioactivation of ProTide prodrugs by comparing the disposition and activation of remdesivir (RDV), its methylpropyl and isopropyl ester analogues (MeRDV and IsoRDV, respectively), the oral prodrug GS-621763, and the parent nucleotide GS-441524 (Nuc). RDV and MeRDV yielded more active metabolite remdesivir-triphosphate (RDV-TP) than IsoRDV, GS-621763, and Nuc in human lung cell models due to superior cell permeability and higher susceptivity to cathepsin A. Intravenous administration to mice showed that RDV and MeRDV delivered significantly more RDV-TP to the lung than other compounds. Nevertheless, all four ester prodrugs exhibited very low oral bioavailability (<2%), with Nuc being the predominant metabolite in blood. In conclusion, ProTides prodrugs, such as RDV and MeRDV, are more efficient in delivering active metabolites to the lung than Nuc, driven by high cell permeability and susceptivity to cathepsin A. Optimizing ProTides' ester structures is an effective strategy for enhancing prodrug activation in the lung.
Differential Bioactivation Profiles of Different GS-441524 Prodrugs in Cell and Mouse Models: ProTide Prodrugs with High Cell Permeability and Susceptibility to Cathepsin A Are More Efficient in Delivering Antiviral Active Metabolites to the Lung.
GS-441524 前药在细胞和小鼠模型中的差异生物活化特征:具有高细胞渗透性和对组织蛋白酶 A 敏感性的 ProTide 前药能更有效地将抗病毒活性代谢物输送到肺部
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作者:Li Jiapeng, de Melo Jorge Daniel Macedo, Wang Weiwen, Sun Shuxin, Frum Tristan, Hang Yu-An, Liu Yueting, Zhou Xingwu, Xiao Jingcheng, Wang Xinwen, Spence Jason R, Wobus Christiane E, Zhu Hao-Jie
| 期刊: | Journal of Medicinal Chemistry | 影响因子: | 6.800 |
| 时间: | 2024 | 起止号: | 2024 May 9; 67(9):7470-7486 |
| doi: | 10.1021/acs.jmedchem.4c00234 | 种属: | Mouse、Viral |
| 研究方向: | 代谢、细胞生物学 | ||
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