A 'litmus test' for molecular recognition using artificial membranes.
暂无分享,去创建一个
R C Stevens | A. Reichert | R. Stevens | Q. Cheng | J. Nagy | W. Spevak | M Stroh | D Charych | Q Cheng | A Reichert | G Kuziemko | J O Nagy | W Spevak | M. Stroh | D. Charych | G. Kuziemko
[1] K. Neve. A Receptors , 2021, Encyclopedia of Molecular Pharmacology.
[2] R C Stevens,et al. Cholera toxin binding affinity and specificity for gangliosides determined by surface plasmon resonance. , 1996, Biochemistry.
[3] D. Ahn,et al. Total Alignment of Calcite at Acidic Polydiacetylene Films: Cooperativity at the Organic-Inorganic Interface , 1995, Science.
[4] Deborah H. Charych,et al. Polydiacetylene liposomes functionalized with sialic acid bind and colorimetrically detect influenza virus , 1995 .
[5] D. King,et al. Insertion of a coiled-coil peptide from influenza virus hemagglutinin into membranes. , 1994, Science.
[6] M. Bednarski,et al. Direct colorimetric detection of a receptor-ligand interaction by a polymerized bilayer assembly. , 1993, Science.
[7] M. Bednarski,et al. Polymerized liposomes containing C-glycosides of sialic acid: potent inhibitors of influenza virus in vitro infectivity , 1993 .
[8] Satoshi Kobayashi,et al. Absorption properties and structure changes caused by pre-annealing in polydiacetylene Langmuir-Blodgett films , 1992 .
[9] K. Ogawa,et al. Photoreactivity of 10,12-pentacosadiynoic acid monolayers and color transitions of the polymerized monolayers on an aqueous subphase , 1992 .
[10] Reinhard Lipowsky,et al. The conformation of membranes , 1991, Nature.
[11] Satoshi Kobayashi,et al. Reversible colour phase transitions and annealing properties of Langmuir-Blodgett polydiacetylene films , 1989 .
[12] M. A. Gómez,et al. Thermochromic phase transition of a polydiacetylene, poly(ETCD), studied by high-resolution solid-state carbon-13 NMR , 1989 .
[13] L. Simpson. Botulinum neurotoxin and tetanus toxin , 1989 .
[14] Stratt,et al. Role of conformational disorder in the electronic structure of conjugated polymers: Substituted polydiacetylenes. , 1987, Physical review. B, Condensed matter.
[15] J. Skehel,et al. The structure and function of the hemagglutinin membrane glycoprotein of influenza virus. , 1987, Annual review of biochemistry.
[16] Michael F. Rubner,et al. Novel optical properties of polyurethane−diacetylene segmented copolymers , 1986 .
[17] S. Tripathy,et al. Molecular structure and electronic property modification of poly(diacetylenes) , 1986 .
[18] B. Mahy. Virology : a practical approach , 1985 .
[19] A. Helenius,et al. Membrane fusion proteins of enveloped animal viruses , 1983, Quarterly Reviews of Biophysics.
[20] G. Lieser,et al. Influences of the structure of long-chain diynoic acids on their polymerization properties in Langmuir—Blodgett multilayers , 1982 .
[21] Ronald R. Chance,et al. Thermal effects on the optical properties of single crystals and solution‐cast films of urethane substituted polydiacetylenes , 1979 .
[22] D. Bloor,et al. Strain dependence of the vibrational modes of a diacetylene crystal , 1979 .
[23] H. Ringsdorf,et al. Polymerization of diacetylene carbonic acid monolayers at the gas‐water interface , 1978 .
[24] R. Baughman,et al. Resonance Raman study of the thermochromic phase transition of a polydiacetylene , 1976 .
[25] P. Cuatrecasas. Interaction of Vibrio cholerae enterotoxin with cell membranes. , 1973, Biochemistry.