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Maares, M.* ; Haupt, A.* ; Schüßler, C.* ; Kulike-Koczula, M.* ; Hackler, J.* ; Keil, C.* ; Mohr, I.* ; Schomburg, L.* ; Süssmuth, R.D.* ; Zischka, H. ; Merle, U.* ; Haase, H.*

Correction to: A fluorometric assay to determine labile copper(II) ions in serum (Scientific Reports, (2023), 13, 1, (12807), 10.1038/s41598-023-39841-9).

Sci. Rep. 14:8859 (2024)
Correction DOI PMC
Open Access Hybrid
Creative Commons Lizenzvertrag
Correction to: Scientific Reportshttps://doi.org/10.1038/s41598-023-39841-9, published online 07 August 2023 The original version of this Article contained errors in Figure 4c. The values for ‘Storage temperature’, displayed on the X-axis, were inadvertently changed into the mean values of the depicted bars. The original Figure 4 and accompanying legend appear below. (Figure presented.) Stability of labile Cu2+ in serum. Repeatability and reproducibility of the assay are shown, including relative standard deviation (RSD) (a). Labile Cu2+ concentration in the reference serum depending on the number of freeze–thaw cycles (b) and storage temperature (c) are depicted. The labile Cu2+ concentration in 1% human reference serum upon spiking with 0 or 20 nM CuSO4 (N = 4) is presented (d). Statistically significant differences between labile Cu2+ values were determined with non-parametric Kruskal–Wallis with Dunn’s multiple comparison test (b), ordinary one way ANOVA followed by Tukey multiple comparison test (c), and unpaired t-test (*p < 0.05, **p < 0.01; ***p < 0.001). Results are presented as data points including mean ± SD of at least three independent experiments. The original Article has been corrected.
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Publication type Other: Correction, Addition
Language english
Publication Year 2024
HGF-reported in Year 2024
ISSN (print) / ISBN 2045-2322
e-ISSN 2045-2322
Quellenangaben Volume: 14, Issue: 1, Pages: , Article Number: 8859 Supplement: ,
Publisher Nature Publishing Group
Publishing Place London
Reviewing status Peer reviewed
POF-Topic(s) 30203 - Molecular Targets and Therapies
Research field(s) Enabling and Novel Technologies
PSP Element(s) G-505200-003
Scopus ID 85190516082
PubMed ID 38632369
Erfassungsdatum 2024-04-23