Multivalent binding of galactosylated cyclodextrin vesicles to lectin.
暂无分享,去创建一个
A. Mazzaglia | R. Darcy | B. Ravoo | D. Forde | D. Garozzo | Bart Jan Ravoo | Raphael Darcy | Antonino Mazzaglia | Damien Forde | Domenico Garozzo | Paola Malvagna | P. Malvagna | Paola Malvagna
[1] G. Whitesides,et al. The agglutination of erythrocytes by influenza virus is strongly inhibited by liposomes incorporating an analog of sialyl gangliosides , 1992 .
[2] J. F. Stoddart,et al. Neoglycoconjugates based on cyclodextrins and calixarenes. , 2001, Bioconjugate chemistry.
[3] V. Villari,et al. Novel heterotopic colloids of anionic porphyrins entangled in cationic amphiphilic cyclodextrins: spectroscopic investigation and intracellular delivery. , 2003, Chemistry.
[4] A. Mazzaglia,et al. Novel Amphiphilic Cyclodextrins: Graft‐Synthesis of Heptakis(6‐alkylthio‐6‐deoxy)‐β‐cyclodextrin 2‐Oligo(ethylene glycol) Conjugates and Their ω‐Halo Derivatives , 2001 .
[5] J. Israelachvili. Intermolecular and surface forces , 1985 .
[6] J. M. Benito,et al. Synthesis and comparative lectin-binding affinity of mannosyl-coated β-cyclodextrin-dendrimer constructs , 2000 .
[7] R. Darcy,et al. Cyclodextrin liquid crystals: synthesis and self-organisation of amphiphilic thio-β-cyclodextrins , 1993 .
[8] A. Coleman,et al. Self-assembling systems of the amphiphilic cationic per-6-amino-.beta.-cyclodextrin 2,3-di-O-alkyl ethers , 1992 .
[9] K. Hattori,et al. The specificity of association between concanavalin a and oligosaccharide-branched cyclodextrins with an optical biosensor , 1997 .
[10] A. Mazzaglia,et al. Cationic β-cyclodextrin bilayer vesicles , 2002 .
[11] A. Mitra,et al. Cyclodextrins as Mucosal Absorption Promoters of Insulin. II. Effects of β-Cyclodextrin Derivatives on α-Chymotryptic Degradation and Enteral Absorption of Insulin in Rats , 1994, Pharmaceutical Research.
[12] G. Whitesides,et al. Polyacrylamides Bearing Pendant α-Sialoside Groups Strongly Inhibit Agglutination of Erythrocytes by Influenza Virus: The Strong Inhibition Reflects Enhanced Binding through Cooperative Polyvalent Interactions , 1996 .
[13] F. Santoyo-González,et al. Dendritic galactosides based on a beta-cyclodextrin core for the construction of site-specific molecular delivery systems: synthesis and molecular recognition studies. , 2002, Chemistry.
[14] J. Jacquier,et al. Molecular recognition of polymers by cyclodextrin vesicles. , 2003, Angewandte Chemie.
[15] R. Darcy,et al. Preparation of vesicles and nanoparticles of amphiphilic cyclodextrins containing labile disulfide bonds , 2003 .
[16] L. Lay,et al. Minimal heparin/heparan sulfate sequences for binding to fibroblast growth factor-1. , 2002, Biochemical and biophysical research communications.
[17] J. Nagy,et al. Carbohydrates in an acidic multivalent assembly: nanomolar P-selectin inhibitors. , 1996, Journal of medicinal chemistry.
[18] S. Petralia,et al. Photochemical outcome modification of diflunisal by a novel cationic amphiphilic cyclodextrin , 2003 .
[19] J. F. Stoddart,et al. Dynamic multivalent lactosides displayed on cyclodextrin beads dangling from polymer strings. , 2003, Organic letters.
[20] H. Sasabe,et al. Monomolecular layer formation of amphiphilic cyclodextrin derivatives at the air/water interface , 1999 .
[21] Bi Cheng Wang,et al. Crystallization and preliminary X-ray diffraction analysis of lectin-1 from Pseudomonas aeruginosa. , 2003, Acta crystallographica. Section D, Biological crystallography.
[22] H. Gabius,et al. Persubstituted cyclodextrin-based glycoclusters as inhibitors of protein-carbohydrate recognition using purified plant and mammalian lectins and wild-type and lectin-gene-transfected tumor cells as targets. , 2004, Bioconjugate chemistry.
[23] M. Petty,et al. Monolayer and multilayer films of cyclodextrins substituted with two and three alkyl chains , 1995 .
[24] A. Mazzaglia,et al. Entangled Porphyrins in Cyclodextrin Vesicles , 2002 .
[25] M. Bednarski,et al. Polymerized liposomes containing C-glycosides of sialic acid: potent inhibitors of influenza virus in vitro infectivity , 1993 .
[26] Shin-Ichiro Nishimura,et al. Erythrocyte-like liposomes prepared by means of amphiphilic cyclodextrin sulfates. , 2002, Chemical communications.
[27] Michaela Wimmerová,et al. Structural basis of calcium and galactose recognition by the lectin PA‐IL of Pseudomonas aeruginosa , 2003, FEBS letters.
[28] N V Bovin,et al. Endogenous lectins as targets for drug delivery. , 2000, Advanced drug delivery reviews.
[29] F. Santoyo-González,et al. Synthesis of persialylated beta-cyclodextrins. , 2000, The Journal of organic chemistry.
[30] A. Coleman,et al. Chemical–enzymatic synthesis and bioactivity of mono-6-[Gal-β-1,4-GlcNAc-β-(1,6′)-hexyl]amido-6-deoxy-cycloheptaamylose , 1995 .
[31] S H White,et al. How to measure and analyze tryptophan fluorescence in membranes properly, and why bother? , 2000, Analytical biochemistry.
[32] C. Fenselau,et al. Lectin-based affinity capture for MALDI-MS analysis of bacteria. , 1999, Analytical chemistry.
[33] R. Darcy,et al. Cyclodextrin Bilayer Vesicles. , 2000, Angewandte Chemie.
[34] R. Auzély-Velty,et al. Micellization of Hydrophobically Modified Cyclodextrins. 1. Micellar Structure , 2000 .
[35] J. Fuhrhop,et al. Membranes and Molecular Assemblies: The Synkinetic Approach , 1998 .
[36] R. Petter,et al. Cooperative binding by aggregated mono-6-(alkylamino)-.beta.-cyclodextrins , 1990 .
[37] A. Mazzaglia,et al. Aggregation in Water of Nonionic Amphiphilic Cyclodextrins with Short Hydrophobic Substituents , 2002 .
[38] Dominique Duchêne,et al. Development of a new colloidal drug carrier from chemically-modified cyclodextrins: Nanospheres and influence of physicochemical and technological factors on particle size , 1996 .
[39] J. F. Stoddart,et al. An efficient synthesis of cyclodextrin-based carbohydrate cluster compounds. , 2000, Organic letters.
[40] M. Skiba,et al. Structural Properties of Several Amphiphile Cyclodextrins and Some Related Nanospheres. An X-ray Scattering and Freeze-Fracture Electron Microscopy Study , 1998 .
[41] K. Fukuda,et al. Formation and Deposition of Monolayers of Amphiphilic β-Cyclodextrin Derivatives , 1986 .
[42] David J Singel,et al. Altering the strength of lectin binding interactions and controlling the amount of lectin clustering using mannose/hydroxyl-functionalized dendrimers. , 2003, Journal of the American Chemical Society.
[43] J. Sacchettini,et al. Multivalent protein-carbohydrate interactions. A new paradigm for supermolecular assembly and signal transduction. , 2001, Biochemistry.
[44] P. Stockley,et al. Probing the molecular mechanism of action of co-repressor in the E. coli methionine repressor-operator complex using surface plasmon resonance (SPR). , 1995, Nucleic acids research.
[45] N. Yamaguch,et al. Structural Effects of Oligosaccharide-Branched Cyclodextrins on the Dual Recognition toward Lectin and Drug , 2002 .