Loic Auvray
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Explore the profile of Loic Auvray including associated specialties, affiliations and a list of published articles.
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32
Citations
515
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Recent Articles
1.
Vial F, Oukhaled A, Auvray L, Tribet C
Soft Matter
. 2020 Jul;
3(1):75-78.
PMID: 32680195
In the presence of random amphiphilic polymers devoid of secondary structure, lipid membranes become leaky to albumin and dextran (fluorescence of giant unilamellar vesicles) and their conductance (black lipid films)...
2.
Eskandani Z, Le Gall T, Montier T, Lehn P, Montel F, Auvray L, et al.
Eur Phys J E Soft Matter
. 2018 Nov;
41(11):132.
PMID: 30426391
Symmetrical cyclodextrin-based 14-arm star polymers with poly(ethylene glycol) PEG branches were synthesized and characterized. Interactions of the star polymers with lipid bilayers were studied by the "black lipid membrane" technique...
3.
Roman J, Le Pioufle B, Auvray L, Pelta J, Bacri L
Eur Phys J E Soft Matter
. 2018 Aug;
41(9):99.
PMID: 30159758
Nanopores constitute devices for the sensing of nano-objects such as ions, polymer chains, proteins or nanoparticles. We describe what information we can extract from the current trace. We consider the...
4.
Auger T, Auvray L, Di Meglio J, Montel F
Eur Phys J E Soft Matter
. 2018 May;
41(5):63.
PMID: 29774472
We study the flow injection of semiflexible polymers in a nanopore with a diameter smaller than the persistence length of the macromolecules. The suction model from de Gennes and Brochard...
5.
Pastoriza-Gallego M, Thiebot B, Bacri L, Auvray L, Pelta J
Eur Phys J E Soft Matter
. 2018 May;
41(5):58.
PMID: 29748865
We describe the behaviour of a polyelectrolyte in confined geometry. The transport of a polyelectrolyte, dextran sulfate, through a recombinant protein channel, aerolysin, inserted into a planar lipid bilayer is...
6.
Selles J, Penrad-Mobayed M, Guillaume C, Fuger A, Auvray L, Faklaris O, et al.
Sci Rep
. 2017 Nov;
7(1):14732.
PMID: 29116248
Nuclear Pore Complex (NPC) is of paramount importance for cellular processes since it is the unique gateway for molecular exchange through the nucleus. Unraveling the modifications of the NPC structure...
7.
Payet L, Martinho M, Merstorf C, Pastoriza-Gallego M, Pelta J, Viasnoff V, et al.
Biophys J
. 2015 Oct;
109(8):1600-7.
PMID: 26488651
We have investigated the role of electrostatic interactions in the transport of nucleic acids and ions through nanopores. The passage of DNA through nanopores has so far been conjectured to...
8.
Pastoriza-Gallego M, Breton M, Discala F, Auvray L, Betton J, Pelta J
ACS Nano
. 2014 Nov;
8(11):11350-60.
PMID: 25380310
Protein nanopores are mainly used to study transport, unfolding, intrinsically disordered proteins, protein-pore interactions, and protein-ligand complexes. This single-molecule sensor for biomedical and biotechnological applications is promising but until now...
9.
Auger T, Mathe J, Viasnoff V, Charron G, Di Meglio J, Auvray L, et al.
Phys Rev Lett
. 2014 Jul;
113(2):028302.
PMID: 25062242
We directly measure the flow-driven injection of DNA through nanopores at the level of single molecule and single pore using a modified zero-mode waveguide method. We observe a flow threshold...
10.
Oukhaled A, Pastoriza-Gallego M, Bacri L, Mathe J, Auvray L, Pelta J
Protein Pept Lett
. 2013 Dec;
21(3):266-74.
PMID: 24370253
In this mini-review we introduce and discuss a new method, at single molecule level, to study the protein folding and protein stability, with a nanopore coupled to an electric detection....