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Unraveling metabolic complexity of multi-payload PEG-irinotecan prodrug:A deconvolution-based LC-Q-TOF MS approach for preclinical pharmacokinetic characterization
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作者 Shiwen Song Mingyang Zhao +4 位作者 Xiangrong Song Huaidong Yu Xin Xu Dong Sun Jingkai Gu 《Chinese Chemical Letters》 2026年第2期741-745,共5页
PEGylation,the controlled covalent conjugation of polyethylene glycol to therapeutics,enhances therapeutic efficacy through optimized pharmacokinetics.However,to date no high-molecular-weight PEGylated small-molecule ... PEGylation,the controlled covalent conjugation of polyethylene glycol to therapeutics,enhances therapeutic efficacy through optimized pharmacokinetics.However,to date no high-molecular-weight PEGylated small-molecule prodrugs have received regulatory approval.This technological gap can be partially attributed to the exponential proliferation of metabolic intermediates resulting from multi-payload conjugation strategies,which introduces unprecedented analytical complexities in metabolite profiling and pharmacokinetic characterization.To address this challenge,we developed a liquid chromatography-triple-quadrupole/time-of-flight mass spectrometry platform for PEG20k-(irinotecan)3,a Phase III clinical candidate.Our methodology employs payload stoichiometry-based chromatographic resolution for clustering isomeric PEG species.Complementarily,diagnostic product ions at m/z 699.83,569.27,and 587.28 enable systematic differentiation between double-loaded,single-loaded,and released irinotecan payload.This approach successfully identifies eight metabolic clusters spanning from PEG-conjugates,cleaved PEG segments,and released small-molecule species.Its demonstrated capacity to deconvolute complex metabolic profiles—through payload-stoichiometry based chromatographic resolution coupled with diagnostic ion analysis—positions this workflow as an attractive tool for accelerating the development of PEGylated small-molecule therapeutics. 展开更多
关键词 Pharmacokinetics Multi-payload PEG-prodrug High-molecular-weight PEG LC-Q-TOF MS payload-based resolution
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