Kinetic analysis of boron therapeutics in head and neck cancer cells by complementary bulk ICP-MS and single-cell (scICP-MS) approaches

Abstract

Boron neutron capture therapy (BNCT) is an emerging approach to radiotherapy. Neutron capture by a boronated (10B) therapeutic yields high linear energy transfer alpha particles (helium nuclei, 4He) and lithium-7 (7Li) atoms, eliciting a localised cell kill effect. Current methods to quantify boron in cells either infer from circulatory concentrations and/or often overlook rapid boron pharmacokinetics. By considering both sample preparation requirements and biological boron dynamics, we report two novel approaches to quantify intracellular boron: firstly, rapid in situ tryptic and acidic digestion of treated cells to avoid premature B efflux (LOD 10B+ = 0.2 μg L−1, LOD 11B+ = 0.4 μg L−1) with method suitability confirmed by pre- and post-digestion spike recoveries (102.5 ± 0.5% and 103 ± 3% recovery, respectively); secondly, real-time measurement of boron in live cells using single-cell ICP-MS (scICP-MS) revealing real-time monitoring of boron efflux: biological half-life of ca. 6 min. These complementary approaches deliver unprecedented insight into boron influx and efflux and provide essential bioanalytical tools to advance both BNCT therapeutic development and single-cell elemental analysis.

Graphical abstract: Kinetic analysis of boron therapeutics in head and neck cancer cells by complementary bulk ICP-MS and single-cell (scICP-MS) approaches

Supplementary files

Article information

Article type
Paper
Submitted
09 Jun 2025
Accepted
13 Aug 2025
First published
14 Aug 2025
This article is Open Access
Creative Commons BY license

J. Anal. At. Spectrom., 2025, Advance Article

Kinetic analysis of boron therapeutics in head and neck cancer cells by complementary bulk ICP-MS and single-cell (scICP-MS) approaches

J. G. Finch, R. J. Pass, M. R. Fabbrizi, A. E. P. McLoughlin, S. Green, J. L. Parsons and J. P. C. Coverdale, J. Anal. At. Spectrom., 2025, Advance Article , DOI: 10.1039/D5JA00228A

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