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Published on: June 15, 2021
A Derivatization-Based Charge Localization Strategy for Suppressing in-Source Dehydration in LC-ESI(+)-MS Analysis of
Shimba Kawasue1, Yuki Komatsu1,2, Kyoko Kuniyoshi1
1National Institute of Health Sciences , 3-25-26 Tonomachi, Kawasaki-ku, Kawasaki, Kanagawa210-9501, Japan.
None:
In electrospray ionization (ESI), analytes containing multiple hydroxyl or ether structures often produce multiple competing precursor ions, reducing sensitivity and complicating precursor selection. Okadaic acids (OAs) exhibited pronounced Na+/K+ adduction along with sequential dehydration. In contrast, azaspiracids, which possess a secondary amine capable of forming a stable protonated species, predominantly generate [M + H]+ ions. This contrast indicates that the absence of a strong charge-localization site is the dominant contributing factor under ESI conditions to ion dispersion in OAs. To address this issue, we chemically introduced a charge-localizing group via IPPAH derivatization. The resulting OAs-IPPAH derivatives exhibited substantial precursor-ion convergence in ESI(+), with up to 95% of the total ion abundance as a single [M + H]+ ion. Peak intensities increased by 2.6-4.7. These findings provide the first demonstration that chemical control of charge localization can suppress in-source dehydration and metal adduct formation.
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