Aldehyde-Functionalized Eu(III) Helicate for l -Cysteine-Specific CPL Detection through Cyclization-Induced M-Helix Excess

Abstract l-Cysteine (Cys) levels are linked to many health issues and serve as critical diagnostic criteria for various diseases. However, their highly specific recognition and determination from complex biological matrices remain challenging due to interference from biothiol-containing analogs, such as homocysteine (Hcy) and glutathione (GSH). Herein, by strategically positioning eight aldehyde groups at the periphery of a dinuclear Eu(III) helicate, we achieved the specific determination of l-Cys via an induced negative circularly polarized luminescence (CPL) signal (gmax ≈ −1.22, 595 nm). 1H NMR and ESI-MS combined with single-crystal X-ray crystallography and DFT calculations revealed that the size match between the periphery pocket in the helicate and the thiazolidine ring formed by l-Cys and aldehyde cyclization contributed to this CPL response, which creates a large energy difference (∼37.6 kcal/mol) between diastereoisomers and a M-helical preference. While the L-Hcy only resulted in a weak and positive signal (glum ≈ 0.15) due to the larger ring size, the GSH was CPL silent due to the non-cyclization reaction. Benefiting from the large glum value, the probe exhibited the high sensitivity for l-Cys in water or bovine serum albumin (BSA), with a detection limit lower than 8.11 × 10–7 M. Additionally, to facilitate commercial applications, a “test strip-like” hydrogel hybrid film was prepared, which still retains sensing capability to l-Cys. This work therefore provides a strategy for l-Cysteine detection by virtue of induced helical chirality of metallosupramolecules and strong lanthanide CPL.

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Publication Details

Journal
Analytical Chemistry
Published
2026-09-11
DOI
https://doi.org/10.1021/acs.analchem.6c04721
Primary Topic
Lanthanide and Transition Metal Complexes
Type
article
Field-Weighted Citation Impact
0.00

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article

Aldehyde-Functionalized Eu(III) Helicate for l -Cysteine-Specific CPL Detection through Cyclization-Induced M-Helix Excess

Min Fan, Yanyan Zhou, Hongfeng Li, Ting Gao et al.
Analytical Chemistry
Lanthanide and Transition Metal Complexes
article

Aldehyde-Functionalized Eu(III) Helicate for l -Cysteine-Specific CPL Detection through Cyclization-Induced M-Helix Excess

Min Fan, Yanyan Zhou, Hongfeng Li, Ting Gao, Jianxu Zhang, Jingya Li, Sen Yin, Li Li
article en

Abstract

Abstract l-Cysteine (Cys) levels are linked to many health issues and serve as critical diagnostic criteria for various diseases. However, their highly specific recognition and determination from complex biological matrices remain challenging due to interference from biothiol-containing analogs, such as homocysteine (Hcy) and glutathione (GSH). Herein, by strategically positioning eight aldehyde groups at the periphery of a dinuclear Eu(III) helicate, we achieved the specific determination of l-Cys via an induced negative circularly polarized luminescence (CPL) signal (gmax ≈ −1.22, 595 nm). 1H NMR and ESI-MS combined with single-crystal X-ray crystallography and DFT calculations revealed that the size match between the periphery pocket in the helicate and the thiazolidine ring formed by l-Cys and aldehyde cyclization contributed to this CPL response, which creates a large energy difference (∼37.6 kcal/mol) between diastereoisomers and a M-helical preference. While the L-Hcy only resulted in a weak and positive signal (glum ≈ 0.15) due to the larger ring size, the GSH was CPL silent due to the non-cyclization reaction. Benefiting from the large glum value, the probe exhibited the high sensitivity for l-Cys in water or bovine serum albumin (BSA), with a detection limit lower than 8.11 × 10–7 M. Additionally, to facilitate commercial applications, a “test strip-like” hydrogel hybrid film was prepared, which still retains sensing capability to l-Cys. This work therefore provides a strategy for l-Cysteine detection by virtue of induced helical chirality of metallosupramolecules and strong lanthanide CPL.

Analytical Chemistry
Baotou Research Institute of Rare Earths (CN), Heilongjiang University (CN)
Heilongjiang Provincial Postdoctoral Science Foundation, Science and Technology Major Project of Inner Mongolia, Science Fund for Distinguished Young Scholars of Heilongjiang Province
Openalex Percentile: Top 24%
Lanthanide and Transition Metal Complexes
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