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Clemence Simon

Explore the profile of Clemence Simon including associated specialties, affiliations and a list of published articles. Areas
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Articles 12
Citations 53
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Recent Articles
1.
Rigolot V, Simon C, Bouchet A, Lancel L, Di Battista V, Karpov D, et al.
RSC Chem Biol . 2024 Dec; 6(3):364-375. PMID: 39668813
Herein, we report the synthesis, photophysical characterization and validation of iridium(iii)-polypyridine complexes functionalized for click chemistry and bioorthogonal chemistry, as well as their versatile applications as probes in bioimaging studies...
2.
Simon C, Zhu M, Lion C, Spriet C, Hemry M, Neutelings G, et al.
Chemistry . 2024 Dec; 31(12):e202404117. PMID: 39621668
Lignin biosynthesis is a critical process that underpins plant structural integrity and defenses. Central to this pathway are monolignol glucosides (MLGs), whose role as intermediates remains debated. To elucidate MLGs'...
3.
Simon C, Morel O, Neutelings G, Baldacci-Cresp F, Baucher M, Spriet C, et al.
Chem Biomed Imaging . 2024 Oct; 1(5):479-487. PMID: 39473934
In this paper, we present the use of multiplex click/bioorthogonal chemistry combined with super-resolution Airyscan microscopy to track biomolecules in living systems with a focus on studying lignin formation in...
4.
Simon C, Asaro A, Feng S, Riezman H
Chem Sci . 2023 Feb; 14(7):1687-1695. PMID: 36819876
Phosphatidylethanolamine metabolism plays essential roles in eukaryotic cells but has not been completely investigated due to its complexity. This is because lipid species, unlike proteins or nucleic acids, cannot be...
5.
Simon C, Feng S, Riezman H
Chimia (Aarau) . 2021 Dec; 75(12):1012-1016. PMID: 34920769
Lipids are important cellular components providing many essential functions. To fulfill these various functions evolution has selected for a diverse set of lipids and this diversity is seen at the...
6.
Morel O, Lion C, Neutelings G, Stefanov J, Baldacci-Cresp F, Simon C, et al.
Plant Physiol . 2021 Oct; 188(2):816-830. PMID: 34687294
This article describes a methodology for detailed mapping of the lignification capacity of plant cell walls that we have called "REPRISAL" for REPorter Ratiometrics Integrating Segmentation for Analyzing Lignification. REPRISAL...
7.
Simon C, Lion C, Ahouari H, Vezin H, Hawkins S, Biot C
Chem Commun (Camb) . 2021 Jan; 57(3):404. PMID: 33393953
Correction for 'EPR imaging of sinapyl alcohol and its application to the study of plant cell wall lignification' by Clémence Simon et al., Chem. Commun., 2021, DOI: .
8.
Simon C, Lion C, Ahouari H, Vezin H, Hawkins S, Biot C
Chem Commun (Camb) . 2020 Dec; 57(3):387-390. PMID: 33326527
In bioimaging, bioorthogonal chemistry is most often used to visualize chemical reporters by fluorescence in their native environment. Herein, we show that TEMPO-based probes can be ligated to monolignol reporters...
9.
Simon C, Lion C, Spriet C, Baldacci-Cresp F, Hawkins S, Biot C
Angew Chem Int Ed Engl . 2018 Oct; 57(51):16665-16671. PMID: 30370981
Reported herein is an in vivo triple labelling strategy to monitor the formation of plant cell walls. Based on a combination of copper-catalysed alkyne-azide cycloaddition (CuAAC), strain-promoted azide-alkyne cycloaddition (SPAAC),...
10.
Simon C, Spriet C, Hawkins S, Lion C
J Vis Exp . 2018 Feb; (131). PMID: 29443107
Lignin is one of the most prevalent biopolymers on the planet and a major component of lignocellulosic biomass. This phenolic polymer plays a vital structural and protective role in the...