pH dependent growth of poly(L-lysine)/poly(L-glutamic) acid multilayer films and their cell adhesion properties
暂无分享,去创建一个
Catherine Picart | Jean-Claude Voegel | Pierre Schaaf | Y. Arntz | L. Richert | P. Schaaf | J. Voegel | Youri Arntz | C. Picart | Ludovic Richert
[1] W Zingg,et al. Protein adsorption to polymer particles: role of surface properties. , 1987, Journal of biomedical materials research.
[2] H. Möhwald,et al. Layer-by-layer engineering of biocompatible, decomposable core-shell structures. , 2003, Biomacromolecules.
[3] B. A. Pethica. The physical chemistry of cell adhesion. , 1961, Experimental cell research.
[4] J. Chluba,et al. Polyelectrolyte multilayer films modulate cytoskeletal organization in chondrosarcoma cells , 2002, Journal of biomaterials science. Polymer edition.
[5] Jia-cong Shen,et al. Constructing thromboresistant surface on biomedical stainless steel via layer-by-layer deposition anticoagulant. , 2003, Biomaterials.
[6] Michael F. Rubner,et al. Controlling Bilayer Composition and Surface Wettability of Sequentially Adsorbed Multilayers of Weak Polyelectrolytes , 1998 .
[7] M. Rubner,et al. New class of ultrathin, highly cell-adhesion-resistant polyelectrolyte multilayers with micropatterning capabilities. , 2003, Biomacromolecules.
[8] Jeffrey A. Hubbell,et al. Thin Polymer Layers Formed by Polyelectrolyte Multilayer Techniques on Biological Surfaces , 1999 .
[9] T. He,et al. Layer-by-layer assembly to modify poly(l-lactic acid) surface toward improving its cytocompatibility to human endothelial cells. , 2003, Biomacromolecules.
[10] A. Curtis. CELL CONTACT AND ADHESION * , 1962, Biological reviews of the Cambridge Philosophical Society.
[11] D. Discher,et al. Muscle cell peeling from micropatterned collagen: direct probing of focal and molecular properties of matrix adhesion. , 1999, Journal of cell science.
[12] J. Davies,et al. Attachment, morphology, and protein expression of rat marrow stromal cells cultured on charged substrate surfaces. , 1998, Journal of biomedical materials research.
[13] Allon I Hochbaum,et al. Rational design of cytophilic and cytophobic polyelectrolyte multilayer thin films. , 2003, Biomacromolecules.
[14] E. Evans,et al. Structure and deformation properties of red blood cells: concepts and quantitative methods. , 1989, Methods in enzymology.
[15] Nicholas A. Kotov,et al. Biomaterials by Design: Layer‐By‐Layer Assembled Ion‐Selective and Biocompatible Films of TiO2 Nanoshells for Neurochemical Monitoring , 2002 .
[16] K. Healy. Molecular engineering of materials for bioreactivity , 1999 .
[17] Horst Kessler,et al. RGD modified polymers: biomaterials for stimulated cell adhesion and beyond. , 2003, Biomaterials.
[18] Catherine Picart,et al. Buildup Mechanism for Poly(l-lysine)/Hyaluronic Acid Films onto a Solid Surface , 2001 .
[19] Johannes Schmitt,et al. Buildup of ultrathin multilayer films by a self-assembly process: III. Consecutively alternating adsorption of anionic and cationic polyelectrolytes on charged surfaces , 1992 .
[20] L. Richert,et al. Improvement of stability and cell adhesion properties of polyelectrolyte multilayer films by chemical cross-linking. , 2004, Biomacromolecules.
[21] D. Hunkeler,et al. Rationalizing the design of polymeric biomaterials. , 1999, Trends in biotechnology.
[22] P. Hammond,et al. The Role of Secondary Interactions in Selective Electrostatic Multilayer Deposition , 2000 .
[23] B. Rahn,et al. Microjet impingement followed by scanning electron microscopy as a qualitative technique to compare cellular adhesion to various biomaterials , 1995, Cell biology international.
[24] J. Chluba,et al. 3-D surface charges modulate protrusive and contractile contacts of chondrosarcoma cells. , 2003, Cell motility and the cytoskeleton.
[25] J. Chluba,et al. Peptide hormone covalently bound to polyelectrolytes and embedded into multilayer architectures conserving full biological activity. , 2001, Biomacromolecules.
[26] P. Schaaf,et al. In Situ Determination of the Structural Properties of Initially Deposited Polyelectrolyte Multilayers , 2000 .
[27] B. Ratner,et al. Surface modification of polymers with self-assembled molecular structures: multitechnique surface characterization. , 2000, Biomacromolecules.
[28] J. M. Harris,et al. Poly(Ethylene Glycol) Chemistry Biotechnical and Biomedical Applications , 1992 .
[29] M. Akashi,et al. Alternating bioactivity of polymeric layer-by-layer assemblies: anticoagulation vs procoagulation of human blood. , 2002, Biomacromolecules.
[30] Youssef Haikel,et al. Viability, adhesion, and bone phenotype of osteoblast-like cells on polyelectrolyte multilayer films. , 2002, Journal of biomedical materials research.
[31] P. Schaaf,et al. Bioactive Coatings Based on a Polyelectrolyte Multilayer Architecture Functionalized by Embedded Proteins , 2003 .
[32] M. Dembo,et al. Cell movement is guided by the rigidity of the substrate. , 2000, Biophysical journal.
[33] A. Curtis,et al. CONTROL OF CELL BEHAVIOR: TOPOLOGICAL FACTORS. , 1964, Journal of the National Cancer Institute.
[34] M. Cynthia Goh,et al. Atomic Force Microscopy Studies of Salt Effects on Polyelectrolyte Multilayer Film Morphology , 2001 .
[35] Michael F. Rubner,et al. pH-Dependent Thickness Behavior of Sequentially Adsorbed Layers of Weak Polyelectrolytes , 2000 .
[36] Benjamin Thierry,et al. Bioactive coatings of endovascular stents based on polyelectrolyte multilayers. , 2003, Biomacromolecules.
[37] F. Veer,et al. Ellipsometry as a tool to study the adsorption behavior of synthetic and biopolymers at the air–water interface , 1978 .
[38] L. Richert,et al. Cell interactions with polyelectrolyte multilayer films. , 2002, Biomacromolecules.
[39] J. Voegel,et al. Endothelial cells grown on thin polyelectrolyte mutlilayered films: an evaluation of a new versatile surface modification. , 2003, Biomaterials.
[40] Y. Dufrêne,et al. Influence of substratum surface properties on the organization of adsorbed collagen films: In situ characterization by atomic force microscopy , 1999 .
[41] F. Grinnell,et al. Fibronectin adsorption on hydrophilic and hydrophobic surfaces detected by antibody binding and analyzed during cell adhesion in serum-containing medium. , 1982, The Journal of biological chemistry.
[42] M. Tirrell,et al. Targeted cellular adhesion at biomaterial interfaces , 1998 .
[43] P. Schaaf,et al. Multilayered polypeptide films: Secondary structures and effect of various stresses , 2003 .
[44] Stefaan De Smedt,et al. HYALURONAN : PREPARATION, STRUCTURE, PROPERTIES, AND APPLICATIONS , 1998 .
[45] Gero Decher,et al. Fuzzy Nanoassemblies: Toward Layered Polymeric Multicomposites , 1997 .
[46] A S Rudolph,et al. Cellular and cytoskeleton morphology and strength of adhesion of cells on self-assembled monolayers of organosilanes. , 1998, Experimental cell research.
[47] Maurizio Prato,et al. Molecular design of strong single-wall carbon nanotube/polyelectrolyte multilayer composites , 2002, Nature materials.
[48] Izumi Ichinose,et al. Biocompatibility of layer-by-layer self-assembled nanofilm on silicone rubber for neurons , 2003, Journal of Neuroscience Methods.
[49] Massoud Motamedi,et al. Collagen Coating Promotes Biocompatibility of Semiconductor Nanoparticles in Stratified LBL Films , 2003 .
[50] C. Barrett,et al. pH-responsive properties of multilayered poly(L-lysine)/hyaluronic acid surfaces. , 2003, Biomacromolecules.
[51] P. Schaaf,et al. Determination of structural parameters characterizing thin films by optical methods: A comparison between scanning angle reflectometry and optical waveguide lightmode spectroscopy , 2001 .
[52] P. Schaaf,et al. Comparison of the Structure of Polyelectrolyte Multilayer Films Exhibiting a Linear and an Exponential Growth Regime: An in Situ Atomic Force Microscopy Study , 2002 .
[53] B. Amsden,et al. Diffusion characteristics of calcium alginate gels. , 1999, Biotechnology and bioengineering.