Jean-marie Swiecicki

Affiliations: 
UPMC Univ Paris 6, France 
Area:
Cell penetrating peptides, Phospholipids
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"Jean-marie Swiecicki"
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Parents

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Solange Lavielle grad student 2014 UPMC Univ Paris 6
 (Étude des mécanismes d'internalisation des peptides pénétrants.)
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Publications

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Swiecicki JM, Santana JT, Imperiali B. (2019) A Strategic Approach for Fluorescence Imaging of Membrane Proteins in a Native-like Environment. Cell Chemical Biology
Almeida C, Maniti O, Di Pisa M, et al. (2019) Cholesterol re-organisation and lipid de-packing by arginine-rich cell penetrating peptides: Role in membrane translocation. Plos One. 14: e0210985
Oliveira Rd, Durand M, Challier L, et al. (2017) Electrochemical quenching of the fluorescence produced by NBD-labelled cell penetrating peptides: A contribution to the study of their internalization in large unilamellar vesicles Journal of Electroanalytical Chemistry. 788: 225-231
Swiecicki JM, Thiebaut F, Di Pisa M, et al. (2016) How to unveil self-quenched fluorophores and subsequently map the subcellular distribution of exogenous peptides. Scientific Reports. 6: 20237
Hostachy S, Swiecicki JM, Sandt C, et al. (2016) Photophysical properties of single core multimodal probe for imaging (SCoMPI) in a membrane model and in cells Dalton Transactions. 45: 2791-2795
Swiecicki JM, Pisa MD, Lippi F, et al. (2015) Unsaturated acyl chains dramatically enhanced cellular uptake by direct translocation of a minimalist oligo-arginine lipopeptide Chemical Communications. 51: 14656-14659
Swiecicki JM, Di Pisa M, Burlina F, et al. (2015) Accumulation of cell-penetrating peptides in large unilamellar vesicles: A straightforward screening assay for investigating the internalization mechanism. Biopolymers. 104: 533-43
Di Pisa M, Chassaing G, Swiecicki JM. (2015) When cationic cell-penetrating peptides meet hydrocarbons to enhance in-cell cargo delivery. Journal of Peptide Science : An Official Publication of the European Peptide Society. 21: 356-69
Di Pisa M, Chassaing G, Swiecicki JM. (2015) Translocation mechanism(s) of cell-penetrating peptides: biophysical studies using artificial membrane bilayers. Biochemistry. 54: 194-207
Swiecicki JM, Bartsch A, Tailhades J, et al. (2014) The efficacies of cell-penetrating peptides in accumulating in large unilamellar vesicles depend on their ability to form inverted micelles. Chembiochem : a European Journal of Chemical Biology. 15: 884-91
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