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1
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0034535725
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Conjugated linoleic acid reduces body fat mass in overweight and obese humans
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PID: 11110851, COI: 1:CAS:528:DC%2BD3cXptVKmtb0%3D
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Blankson H, Stakkestad JA, Fagertun H, Thom E, Wadstein J, Gudmundsen O (2000) Conjugated linoleic acid reduces body fat mass in overweight and obese humans. J Nutr 130:2943–2948
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58849151738
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The use of amphipols as universal molecular adapters to immobilize membrane proteins onto solid supports
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PID: 19116278, COI: 1:CAS:528:DC%2BD1MXhtVelsLg%3D
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Charvolin D, Perez J-B, Rouvière F, Giusti F, Bazzacco P, Abdine A, Rappaport F, Martinez KL, Popot J-L (2009) The use of amphipols as universal molecular adapters to immobilize membrane proteins onto solid supports. Proc Natl Acad Sci USA 106:405–410
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3
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79955503446
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A simple approach to cancer therapy afforded by multivalent pseudopeptides that target cell-surface nucleoproteins
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PID: 21415166, COI: 1:CAS:528:DC%2BC3MXltlGhtbk%3D
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Destouches D, Page N, Hamma-Kourbali Y, Machi V, Chaloin O, Frechault S, Birmpas C, Katsoris P, Beyrath J, Albanese P, Maurer M, Carpentier G, Strub J-M, Van Dorsselaer A, Muller S, Bagnard D, Briand JP, Courty J (2011) A simple approach to cancer therapy afforded by multivalent pseudopeptides that target cell-surface nucleoproteins. Cancer Res 71:3296–3305
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4
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84870523966
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Image guided biodistribution and pharmacokinetic studies of theranostics
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PID: 23227121, COI: 1:CAS:528:DC%2BC3sXjtFKmtbo%3D
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Ding H, Wu F (2012) Image guided biodistribution and pharmacokinetic studies of theranostics. Theranostics 2:1040–1053
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Theranostics
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Ding, H.1
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84863935182
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Well-defined critical association concentration and rapid adsorption at the air/water interface of a short amphiphilic polymer, amphipol A8–35: a study by Förster resonance energy transfer and dynamic surface tension measurements
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PID: 22712750, COI: 1:CAS:528:DC%2BC38XovVyhtrw%3D
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Giusti F, Popot J-L, Tribet C (2012) Well-defined critical association concentration and rapid adsorption at the air/water interface of a short amphiphilic polymer, amphipol A8–35: a study by Förster resonance energy transfer and dynamic surface tension measurements. Langmuir 28:10372–10380
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Langmuir
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Giusti, F.1
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6
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5644275289
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Partial specific volume and solvent interactions of amphipol A8–35
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PID: 15494140, COI: 1:CAS:528:DC%2BD2cXos1KlsLo%3D
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Gohon Y, Pavlov G, Timmins P, Tribet C, Popot J-L, Ebel C (2004) Partial specific volume and solvent interactions of amphipol A8–35. Anal Biochem 334:318–334
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Anal Biochem
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Gohon, Y.1
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7
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32344431772
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Well-defined nanoparticles formed by hydrophobic assembly of a short and polydisperse random terpolymer, amphipol A8–35
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PID: 16430295, COI: 1:CAS:528:DC%2BD28Xht1Sisw%3D%3D
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Gohon Y, Giusti F, Prata C, Charvolin D, Timmins P, Ebel C, Tribet C, Popot J-L (2006) Well-defined nanoparticles formed by hydrophobic assembly of a short and polydisperse random terpolymer, amphipol A8–35. Langmuir 22:1281–1290
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Langmuir
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Popot, J.-L.8
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8
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84873632943
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Bioavailability of nanoemulsified conjugated linoleic acid for an antiobesity effect
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Kim D, Park J-H, Kweon D-J, Han GD (2013) Bioavailability of nanoemulsified conjugated linoleic acid for an antiobesity effect. Int J Nanomed 8:451–459
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Kim, D.1
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9
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84893437162
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Dynamic biodistribution of extracellular vesicles in vivo using a multimodal imaging reporter
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PID: 24383518, COI: 1:CAS:528:DC%2BC2cXhsl2qtA%3D%3D
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Lai CP, Mardini O, Ericsson M, Prabhakar S, Maguire CA, Chen JW, Tannous BA, Breakefield XO (2014) Dynamic biodistribution of extracellular vesicles in vivo using a multimodal imaging reporter. ACS Nano 8:483–594
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10
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84911003891
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Labeling and functionalizing amphipols for biological applications
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Le Bon C, Popot J-L, Giusti F (2014) Labeling and functionalizing amphipols for biological applications. J Membr Biol. doi:10.1007/s00232-014-9655-y
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Le Bon, C.1
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Peptide-based interference of the transmembrane domain of neuropilin-1 inhibits glioma growth in vivo
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PID: 20140015, COI: 1:CAS:528:DC%2BC3cXhs1Omtbw%3D
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Nasarre C, Roth M, Jacob L, Roth L, Koncina E, Thien A, Labourdette G, Poulet P, Hubert P, Crémel G, Roussel G, Aunis D, Bagnard D (2010) Peptide-based interference of the transmembrane domain of neuropilin-1 inhibits glioma growth in vivo. Oncogene 29:2381–2392
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12
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79953317423
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HSC70 blockade by the therapeutic peptide P140 affects autophagic processes and endogenous MHCII presentation in murine lupus
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PID: 21173017, COI: 1:CAS:528:DC%2BC3MXnt1egsbg%3D
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Page N, Gros F, Schall N, Décossas M, Bagnard D, Briand J-P, Muller S (2011) HSC70 blockade by the therapeutic peptide P140 affects autophagic processes and endogenous MHCII presentation in murine lupus. Ann Rheum Dis 70:837–843
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Amphipols: polymeric surfactants for membrane biology research
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PID: 14513831, COI: 1:CAS:528:DC%2BD3sXnsFynur4%3D
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Popot J-L, Berry EA, Charvolin D, Creuzenet C, Ebel C, Engelman DM, Flötenmeyer M, Giusti F, Gohon Y, Hervé P, Hong Q, Lakey JH, Leonard K, Shuman HA, Timmins P, Warschawski DE, Zito F, Zoonens M, Pucci B, Tribet C (2003) Amphipols: polymeric surfactants for membrane biology research. Cell Mol Life Sci 60:1559–1574
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14
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Amphipols from A to Z
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PID: 21545287, COI: 1:CAS:528:DC%2BC3MXnvFaiurk%3D
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Popot J-L, Althoff T, Bagnard D, Banères J-L, Bazzacco P, Billon-Denis E, Catoire LJ, Champeil P, Charvolin D, Cocco MJ, Crémel G, Dahmane T, de la Maza LM, Ebel C, Gabel F, Giusti F, Gohon Y, Goormaghtigh E, Guittet E, Kleinschmidt JH, Kühlbrandt W, Le Bon C, Martinez KL, Picard M, Pucci B, Rappaport F, Sachs JN, Tribet C, van Heijenoort C, Wien F, Zito F, Zoonens M (2011) Amphipols from A to Z. Annu Rev Biophys 40:379–408
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Popot, J.-L.1
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Bazzacco, P.5
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de la Maza, L.M.13
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Kühlbrandt, W.21
Le Bon, C.22
Martinez, K.L.23
Picard, M.24
Pucci, B.25
Rappaport, F.26
Sachs, J.N.27
Tribet, C.28
van Heijenoort, C.29
Wien, F.30
Zito, F.31
Zoonens, M.32
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15
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84894423581
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Skin permeabilization for transdermal drug delivery: recent advances and future prospects
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PID: 24392787, COI: 1:CAS:528:DC%2BC2cXjtVClu74%3D
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Schoellhammer CM, Blankschtein D, Langer R (2014) Skin permeabilization for transdermal drug delivery: recent advances and future prospects. Expert Opin Drug Deliv 11:393–407
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Schoellhammer, C.M.1
Blankschtein, D.2
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16
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79958151390
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Amphipols stabilize the Chlamydia major outer membrane protein and enhance its protective ability as a vaccine
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PID: 21550371, COI: 1:CAS:528:DC%2BC3MXntlGgtrw%3D
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Tifrea DF, Sun G, Pal S, Zardeneta G, Cocco MJ, Popot J-L, de la Maza LM (2011) Amphipols stabilize the Chlamydia major outer membrane protein and enhance its protective ability as a vaccine. Vaccine 29:4623–4631
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84901280813
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Increased immuno accessibility of MOMP epitopes in a vaccine formulated with amphipols may account for the very robust protection elicited against a vaginal challenge with C. muridarum
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Tifrea D, Pal S, Cocco MJ, Popot J-L, de la Maza LM (2014) Increased immuno accessibility of MOMP epitopes in a vaccine formulated with amphipols may account for the very robust protection elicited against a vaginal challenge with C. muridarum. J Immunol 192(11):5201–5213
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0030451437
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Amphipols: polymers that keep membrane proteins soluble in aqueous solutions
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PID: 8986761, COI: 1:CAS:528:DyaK2sXmslyq
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Tribet C, Audebert R, Popot J-L (1996) Amphipols: polymers that keep membrane proteins soluble in aqueous solutions. Proc Natl Acad Sci USA 93:15047–15050
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Stabilization of hydrophobic colloidal dispersions in water with amphiphilic polymers: application to integral membrane proteins
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COI: 1:CAS:528:DyaK2sXmtF2lu7o%3D
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Tribet C, Audebert R, Popot J-L (1997) Stabilization of hydrophobic colloidal dispersions in water with amphiphilic polymers: application to integral membrane proteins. Langmuir 13:5570–5576
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Thermodynamic characterization of the exchange of detergents and amphipols at the surfaces of integral membrane proteins
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PID: 19594168, COI: 1:CAS:528:DC%2BD1MXosVGjsrc%3D
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Tribet C, Diab C, Dahmane T, Zoonens M, Popot J-L, Winnik FM (2009) Thermodynamic characterization of the exchange of detergents and amphipols at the surfaces of integral membrane proteins. Langmuir 25:12623–12634
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Dynamics of membrane protein/amphipol association studied by Förster resonance energy transfer. Implications for in vitro studies of amphipol-stabilized membrane proteins
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PID: 17705558, COI: 1:CAS:528:DC%2BD2sXpt1Wisb0%3D
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Zoonens M, Giusti F, Zito F, Popot J-L (2007) Dynamics of membrane protein/amphipol association studied by Förster resonance energy transfer. Implications for in vitro studies of amphipol-stabilized membrane proteins. Biochemistry 46:10392–10404
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