Selb, J., Gallot, Y. (1980) Distinction entre les phénomènes d’agrégation et de micellisation présentés par des
copolymères amphipathiques. Cas des copolymères polystyrène/polyvinylpyridinium en milieu aqueux. Makromol.
Chem. 181:809–822.
Sharma, K.S., Durand, G., Gabel, F., Bazzacco, P., Le Bon, C., Billon-Denis, E., Catoire, L.J., Popot, J.-L., Ebel, C.,
Pucci, B. (2012) Non-ionic amphiphilic homopolymers: Synthesis, solution properties, and biochemical validation.
Langmuir 28:4625–4639.
Sharma, K.S., Durand, G., Giusti, F., Olivier, B., Fabiano, A.-S., Bazzacco, P., Dahmane, T., Ebel, C., Popot, J.-L.,
Pucci, B. (2008) Glucose-based amphiphilic telomers designed to keep membrane proteins soluble in aqueous
solutions: synthesis and physico-chemical characterization. Langmuir 24:13581–13590.
Soeriyadi, A.H., Boyer, C., Nyström, F., Zetterlund, P.B., Whittaker, M.R. (2011) High-order multiblock copolymers via
iterative Cu(0)-mediated radical polymerizations (SET-LRP): Toward biological precision. J. Am. Chem. Soc.
133:11128–11131.
Stangl, M., Hemmelmann, M., Allmeroth, M., Zentel, R., Schneider, D. (2014) A minimal hydrophobicity is needed to
employ amphiphilic p(HPMA)-co-p(LMA) random copolymers in membrane research. Biochemistry 53:1410–1419.
Starks, C.M. (1974) Free radical telomerization. Academic Press/Elsevier, New York, 280 p.
Stefano, J.E., Hou, L.H., Honey, D., Kyazike, J., Park, A., Zhou, Q., Pan, C.Q., Edmunds, T. (2009) In vitro and in vivo
evaluation of a non-carbohydrate targeting platform for lysosomal proteins. J. Control. Release 135:113–118.
Stuhrmann, H.B. (1970) Interpretation of small-angle scattering functions of dilute solutions and gases. A representation
of the structures related to a one-particle scattering function. Acta Cryst. Sect. A 26:297–306.
Sverzhinsky, A., Qian, S., Yang, L., Allaire, M., Moraes, I., Ma, D., Chung, J.W., Zoonens, M., Popot, J.-L., Coulton,
J.W. (2014) Amphipol-trapped ExbBÀExbD membrane protein complex from Escherichia coli: A biochemical and
structural case study. J. Membr. Biol. 247:1005–1018.
Swift, T., Swanson, L., Geoghegan, M., Rimmer, S. (2016) The pH-responsive behaviour of poly(acrylic acid) in
aqueous solution is dependent on molar mass. Soft Matter 12:2542–2549.
Takei, Y.G., Aoki, T., Sanui, K., Ogata, N., Okano, T., Sakurai, Y. (1993) Temperature-responsive bioconjugates.
1. Synthesis of temperature-responsive oligomers with reactive end groups and their coupling to biomolecules
Bioconjugate Chem. 4:42–46.
Tanaka, M., Hosotani, A., Tachibana, Y., Nakano, M., Iwasaki, K., Kawakami, T., Mukai, T. (2015) Preparation and
characterization of reconstituted lipid-synthetic polymer discoidal particles. Langmuir 31:12719–12626.
Tanford, C. (1980) The Hydrophobic Effect: Formation of Micelles and Biological Membranes, 2nd ed. John Wiley &
Sons, New York, 233 p.
Tefera, N., Weickert, G., Westerterp, K.R. (1997) Modeling of free radical polymerization up to high conversion.
II. Development of a mathematical model. J. Appl. Polym. Sci. 63:1663–1680.
Tehei, M., Perlmutter, J.D., Giusti, F., Sachs, J.N., Zaccai, G., Popot, J.-L. (2014) Thermal fluctuations in amphipol
A8-35 particles: A neutron scattering and molecular dynamics study. J. Membr. Biol. 247:897–908.
Terrettaz, S., Ulrich, W.P., Vogel, H., Hong, Q., Dover, L.G., Lakey, J.H. (2002) Stable self-assembly of a protein
engineering scaffold on gold surfaces. Protein Sci. 11:1917–1925.
Tifrea, D.F., Pal, S., Le Bon, C., Giusti, F., Cocco, M.J., Zoonens, M., de la Maza, L.M. (2018a) Resiquimod conjugated
with amphipols bound to the Chlamydia muridarum MOMP enhances protection against a mucosal challenge. In
preparation.
Tifrea, D.F., Pal, S., Le Bon, C., Giusti, F., Zoonens, M., Cocco, M.J., Popot, J.-L., de la Maza, L.M. (2018b)
Co-delivery of adjuvants and antigens using amphipol-linked adjuvants and adjuvant combinations enhance protection elicited by a membrane protein-based vaccine against a mucosal challenge with Chlamydia. Submitted for
publication.
Tobolsky, A.V. (1958) Dead-end radical polymerization. J. Am. Chem. Soc. 80:5927–5929.
Tolstyka, Z.P., Kopping, J.T., Maynard, H.D. (2008) Straightforward synthesis of cysteine-reactive telechelic polystyrene. Macromolecules 41:599–606.
Trapp, M., Gutberlet, T., Juranyi, F., Unruh, T., Demé, B., Tehei, M., Peters, J. (2010) Hydration dependent studies of
highly aligned multilayer lipid membranes by neutron scattering. J. Chem. Phys. 133:164505.
Treat, N.J., Sprafke, H., Kramer, J.W., Clark, P.G., Barton, B.E., Read de Alaniz, J., Fors, B.P., Hawker, C.J. (2014)
Metal-free atom transfer radical polymerization. J. Am. Chem. Soc. 136:16096–16101.
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.
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.
Tribet, C., Diab, C., Dahmane, T., Zoonens, M., Popot, J.-L., Winnik, F.M. (2009) Thermodynamic characterization of
the exchange of detergents and amphipols at the surfaces of integral membrane proteins. Langmuir 25:12623–12634.
Tribet, C., Vial, F. (2008) Flexible macromolecules attached to lipid bilayers: impact on fluidity, curvature, permeability
and stability of the membranes. Soft Matter 4:68–81.
References
235
copolymères amphipathiques. Cas des copolymères polystyrène/polyvinylpyridinium en milieu aqueux. Makromol.
Chem. 181:809–822.
Sharma, K.S., Durand, G., Gabel, F., Bazzacco, P., Le Bon, C., Billon-Denis, E., Catoire, L.J., Popot, J.-L., Ebel, C.,
Pucci, B. (2012) Non-ionic amphiphilic homopolymers: Synthesis, solution properties, and biochemical validation.
Langmuir 28:4625–4639.
Sharma, K.S., Durand, G., Giusti, F., Olivier, B., Fabiano, A.-S., Bazzacco, P., Dahmane, T., Ebel, C., Popot, J.-L.,
Pucci, B. (2008) Glucose-based amphiphilic telomers designed to keep membrane proteins soluble in aqueous
solutions: synthesis and physico-chemical characterization. Langmuir 24:13581–13590.
Soeriyadi, A.H., Boyer, C., Nyström, F., Zetterlund, P.B., Whittaker, M.R. (2011) High-order multiblock copolymers via
iterative Cu(0)-mediated radical polymerizations (SET-LRP): Toward biological precision. J. Am. Chem. Soc.
133:11128–11131.
Stangl, M., Hemmelmann, M., Allmeroth, M., Zentel, R., Schneider, D. (2014) A minimal hydrophobicity is needed to
employ amphiphilic p(HPMA)-co-p(LMA) random copolymers in membrane research. Biochemistry 53:1410–1419.
Starks, C.M. (1974) Free radical telomerization. Academic Press/Elsevier, New York, 280 p.
Stefano, J.E., Hou, L.H., Honey, D., Kyazike, J., Park, A., Zhou, Q., Pan, C.Q., Edmunds, T. (2009) In vitro and in vivo
evaluation of a non-carbohydrate targeting platform for lysosomal proteins. J. Control. Release 135:113–118.
Stuhrmann, H.B. (1970) Interpretation of small-angle scattering functions of dilute solutions and gases. A representation
of the structures related to a one-particle scattering function. Acta Cryst. Sect. A 26:297–306.
Sverzhinsky, A., Qian, S., Yang, L., Allaire, M., Moraes, I., Ma, D., Chung, J.W., Zoonens, M., Popot, J.-L., Coulton,
J.W. (2014) Amphipol-trapped ExbBÀExbD membrane protein complex from Escherichia coli: A biochemical and
structural case study. J. Membr. Biol. 247:1005–1018.
Swift, T., Swanson, L., Geoghegan, M., Rimmer, S. (2016) The pH-responsive behaviour of poly(acrylic acid) in
aqueous solution is dependent on molar mass. Soft Matter 12:2542–2549.
Takei, Y.G., Aoki, T., Sanui, K., Ogata, N., Okano, T., Sakurai, Y. (1993) Temperature-responsive bioconjugates.
1. Synthesis of temperature-responsive oligomers with reactive end groups and their coupling to biomolecules
Bioconjugate Chem. 4:42–46.
Tanaka, M., Hosotani, A., Tachibana, Y., Nakano, M., Iwasaki, K., Kawakami, T., Mukai, T. (2015) Preparation and
characterization of reconstituted lipid-synthetic polymer discoidal particles. Langmuir 31:12719–12626.
Tanford, C. (1980) The Hydrophobic Effect: Formation of Micelles and Biological Membranes, 2nd ed. John Wiley &
Sons, New York, 233 p.
Tefera, N., Weickert, G., Westerterp, K.R. (1997) Modeling of free radical polymerization up to high conversion.
II. Development of a mathematical model. J. Appl. Polym. Sci. 63:1663–1680.
Tehei, M., Perlmutter, J.D., Giusti, F., Sachs, J.N., Zaccai, G., Popot, J.-L. (2014) Thermal fluctuations in amphipol
A8-35 particles: A neutron scattering and molecular dynamics study. J. Membr. Biol. 247:897–908.
Terrettaz, S., Ulrich, W.P., Vogel, H., Hong, Q., Dover, L.G., Lakey, J.H. (2002) Stable self-assembly of a protein
engineering scaffold on gold surfaces. Protein Sci. 11:1917–1925.
Tifrea, D.F., Pal, S., Le Bon, C., Giusti, F., Cocco, M.J., Zoonens, M., de la Maza, L.M. (2018a) Resiquimod conjugated
with amphipols bound to the Chlamydia muridarum MOMP enhances protection against a mucosal challenge. In
preparation.
Tifrea, D.F., Pal, S., Le Bon, C., Giusti, F., Zoonens, M., Cocco, M.J., Popot, J.-L., de la Maza, L.M. (2018b)
Co-delivery of adjuvants and antigens using amphipol-linked adjuvants and adjuvant combinations enhance protection elicited by a membrane protein-based vaccine against a mucosal challenge with Chlamydia. Submitted for
publication.
Tobolsky, A.V. (1958) Dead-end radical polymerization. J. Am. Chem. Soc. 80:5927–5929.
Tolstyka, Z.P., Kopping, J.T., Maynard, H.D. (2008) Straightforward synthesis of cysteine-reactive telechelic polystyrene. Macromolecules 41:599–606.
Trapp, M., Gutberlet, T., Juranyi, F., Unruh, T., Demé, B., Tehei, M., Peters, J. (2010) Hydration dependent studies of
highly aligned multilayer lipid membranes by neutron scattering. J. Chem. Phys. 133:164505.
Treat, N.J., Sprafke, H., Kramer, J.W., Clark, P.G., Barton, B.E., Read de Alaniz, J., Fors, B.P., Hawker, C.J. (2014)
Metal-free atom transfer radical polymerization. J. Am. Chem. Soc. 136:16096–16101.
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.
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.
Tribet, C., Diab, C., Dahmane, T., Zoonens, M., Popot, J.-L., Winnik, F.M. (2009) Thermodynamic characterization of
the exchange of detergents and amphipols at the surfaces of integral membrane proteins. Langmuir 25:12623–12634.
Tribet, C., Vial, F. (2008) Flexible macromolecules attached to lipid bilayers: impact on fluidity, curvature, permeability
and stability of the membranes. Soft Matter 4:68–81.
References
235
