Unverified paper record
Imaging of I, Re and Tc plant uptake on the single-cell scale using SIMS and rL-SNMS
Journal of Hazardous Materials · 1 Feb 2022 · 10.1016/j.jhazmat.2021.127143
Abstract
In radioecological studies, there is a significant need for understanding the plant uptake of radionuclides on a cellular level. The present work applies mass spectrometry to image the radionuclide distribution within the cellular structures of plants at varying concentrations. In a first step, plants of Daucus carota and Pisum sativum labelled with iodine and rhenium were examined, at concentrations in the range of 10 mM. Cross sections of several plant parts were imaged by secondary ion mass spectrometry (SIMS) after cryogenation in order to preserve cell structure. In a second step, the distribution of 99 Tc in the two plant species was determined. For radiological reasons, a concentration three orders of magnitude lower was used, rendering measurements with SIMS impossible. Therefore, resonant laser secondary neutral mass spectrometry (rL-SNMS) was used for the first time to image 99 Tc with suppression of molecular isobaric interferences. The measurement of only about 10 10 atoms of 99 Tc atoms is demonstrated and the distribution of 99 Tc within a single epidermal cell is imaged.
Plant phenotyping relevance
植物細胞内の放射性核種分布・取り込み状態を画像化するSIMS/rL-SNMS手法が研究の中心であり、99Tcの高感度イメージングを技術的に実証している。
abstractThe present work applies mass spectrometry to image the radionuclide distribution within the cellular structures of plants at varying concentrations.
abstractresonant laser secondary neutral mass spectrometry (rL-SNMS) was used for the first time to image 99 Tc with suppression of molecular isobaric interferences.
abstractThe measurement of only about 10 10 atoms of 99 Tc atoms is demonstrated and the distribution of 99 Tc within a single epidermal cell is imaged.
Code and data availability
The paper's SIMS/rL-SNMS plant imaging data are not publicly deposited; the data availability statement says they are available only from the corresponding author upon request. No public dataset, image, or code repository is provided.
No evidence-backed public reproduction asset is currently recorded.
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