Evidence of isotopic fractionation of natural uranium in cultured human cells.
basic_science · Level V
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- Record sourced from PubMed, PMID 27872304.
- Also identified by PMC identifier 5150385.
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Abstract
The study of the isotopic fractionation of endogen elements and toxic heavy metals in living organisms for biomedical applications, and for metabolic and toxicological studies, is a cutting-edge research topic. This paper shows that human neuroblastoma cells incorporated small amounts of uranium (U) after exposure to 10 µM natural U, with preferential uptake of the <sup>235</sup>U isotope with regard to <sup>238</sup>U. Efforts were made to develop and then validate a procedure for highly accurate n(<sup>238</sup>U)/n(<sup>235</sup>U) determinations in microsamples of cells. We found that intracellular U is enriched in <sup>235</sup>U by 0.38 ± 0.13‰ (2σ, n = 7) relative to the exposure solutions. These in vitro experiments provide clues for the identification of biological processes responsible for uranium isotopic fractionation and link them to potential U incorporation pathways into neuronal cells. Suggested incorporation processes are a kinetically controlled process, such as facilitated transmembrane diffusion, and the uptake through a high-affinity uranium transport protein involving the modification of the uranyl (UO<sub>2</sub><sup>2+</sup>) coordination sphere. These findings open perspectives on the use of isotopic fractionation of metals in cellular models, offering a probe to track uptake/transport pathways and to help decipher associated cellular metabolic processes.
Medical subject headings
- Chemical Fractionation
- Uranium