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Optical wireless connected objects for healthcare.

Healthcare technology letters

Toumieux P, Chevalier L, Sahuguède S, Julien-Vergonjanne A.
PMID: 26609417
Healthc Technol Lett. 2015 Sep 24;2(5):118-22. doi: 10.1049/htl.2015.0028. eCollection 2015 Oct.

In this Letter the authors explore the communication capabilities of optical wireless technology for a wearable device dedicated to healthcare application. In an indoor environment sensible to electromagnetic perturbations such as a hospital, the use of optical wireless links...

Netrin-4 promotes mural cell adhesion and recruitment to endothelial cells.

Vascular cell

Lejmi E, Bouras I, Camelo S, Roumieux M, Minet N, Leré-Déan C, Merkulova-Rainon T, Autret G, Vayssettes C, Clement O, Plouët J, Leconte L.
PMID: 24472220
Vasc Cell. 2014 Jan 28;6(1):1. doi: 10.1186/2045-824X-6-1.

Netrins are secreted molecules involved in axon guidance and angiogenesis. We previously showed that Netrin-4 acts as an anti-angiogenic factor by inhibiting endothelial cell (EC) functions. In this study, we investigated the effects of Netrin-4 on vascular smooth muscle...

Iterative multifunctionalization of unactivated C-H bonds in piperidines by way of intramolecular Rh(II)-catalyzed aminations.

The Journal of organic chemistry

Toumieux S, Compain P, Martin OR.
PMID: 18275215
J Org Chem. 2008 Mar 21;73(6):2155-62. doi: 10.1021/jo702350u. Epub 2008 Feb 15.

Efficient stereocontrolled synthesis of di-, tri-, tetra-, and pentasubstituted piperidines from simple 2-sulfamoyloxymethyl piperidine derivatives has been performed by way of intramolecular Rh-catalyzed amination of saturated C-H bonds. In this process, the sulfamoyloxymethyl arm was directly or indirectly involved...

Synthesis of new sulfated disaccharides for the modulation of TLR4-dependent inflammation.

Organic & biomolecular chemistry

Naïtaleb R, Denys A, Allain F, Ausseil J, Toumieux S, Kovensky J.
PMID: 33908564
Org Biomol Chem. 2021 May 21;19(19):4346-4351. doi: 10.1039/d1ob00692d. Epub 2021 Apr 28.

Natural sulfated glycans are key players in inflammation through TLR4 activation; therefore synthetic exogenous sulfated saccharides can be used to downregulate inflammation processes. We have designed and synthesized new sulfated compounds based on small and biocompatible carbohydrates that are...

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