A molecular dynamics simulation of reactant mobility in an amorphous formulation of a peptide in poly(vinylpyrrolidone).
暂无分享,去创建一个
[1] D. T. Turner,et al. The glass transition temperature of poly(N-vinyl pyrrolidone) by differential scanning calorimetry , 1985 .
[2] T. Arita,et al. Inhibitory Effect of Polyvinylpyrrolidone on the Crystallization of Drugs , 1978 .
[3] T. H. Dunning. Gaussian basis sets for use in correlated molecular calculations. I. The atoms boron through neon and hydrogen , 1989 .
[4] S. Clarke,et al. Deamidation, isomerization, and racemization at asparaginyl and aspartyl residues in peptides. Succinimide-linked reactions that contribute to protein degradation. , 1987, The Journal of biological chemistry.
[5] Dagmar Ringe,et al. Solvent mobility and the protein 'glass' transition , 2000, Nature Structural Biology.
[6] T. Fujiwara,et al. Molecular Mobility of Protein in Lyophilized Formulations Linked to the Molecular Mobility of Polymer Excipients, as Determined by High Resolution 13C Solid-State NMR , 1999, Pharmaceutical Research.
[7] Thomas A. Weber,et al. Hidden structure in liquids , 1982 .
[8] R. Borchardt,et al. Reaction of a peptide with polyvinylpyrrolidone in the solid state. , 2003, Journal of pharmaceutical sciences.
[9] S. Dev,et al. Further considerations of non symmetrical dielectric relaxation behaviour arising from a simple empirical decay function , 1971 .
[10] S. Jois,et al. Effect of conformation on the rate of deamidation of vancomycin in aqueous solutions. , 2000, Journal of pharmaceutical sciences.
[11] Donald R Paul,et al. A molecular simulation study on gas diffusion in a dense poly(ether–ether–ketone) membrane , 2001 .
[12] Martin Goldstein,et al. Viscous Liquids and the Glass Transition: A Potential Energy Barrier Picture , 1969 .
[13] C. Angell,et al. Formation of Glasses from Liquids and Biopolymers , 1995, Science.
[14] W. Kegel,et al. Direct observation of dynamical heterogeneities in colloidal hard-sphere suspensions , 2000, Science.
[15] R. Langer. Polymer-controlled drug delivery systems , 1993 .
[16] A. Fernández-Nieves,et al. Structure formation from mesoscopic soft particles. , 2001, Physical review. E, Statistical, nonlinear, and soft matter physics.
[17] Yong Jin,et al. SUBGLASS CHAIN DYNAMICS AND RELAXATION IN POLYETHYLENE : A MOLECULAR DYNAMICS SIMULATION STUDY , 1998 .
[18] Florian Müller-Plathe,et al. Diffusion of penetrants in amorphous polymers: A molecular dynamics study , 1991 .
[19] Peter A. Kollman,et al. Application of the multimolecule and multiconformational RESP methodology to biopolymers: Charge derivation for DNA, RNA, and proteins , 1995, J. Comput. Chem..
[20] H. Takeuchi. A jump motion of small molecules in glassy polymers: A molecular dynamics simulation , 1990 .
[21] L. Bell,et al. Differentiating between the Effects of Water Activity and Glass Transition Dependent Mobility on a Solid State Chemical Reaction: Aspartame Degradation , 1994 .
[22] Peter A. Kollman,et al. Solvation Free Energies of Amides and Amines: Disagreement between Free Energy Calculations and Experiment , 1995 .
[23] S. Glarum,et al. Dielectric Relaxation of Isoamyl Bromide , 1960 .
[24] G. Zografi,et al. Molecular Mobility in Mixtures of Absorbed Water and Solid Poly(vinylpyrrolidone) , 1993, Pharmaceutical Research.
[25] S. Duddu,et al. Dielectric analysis in the characterization of amorphous pharmaceutical solids. 1. Molecular mobility in poly(vinylpyrrolidone)-water systems in the glassy state. , 1995, Journal of pharmaceutical sciences.
[26] B. D. Anderson,et al. Solid-State Stability of Human Insulin I. Mechanism and the Effect of Water on the Kinetics of Degradation in Lyophiles from pH 2–5 Solutions , 1996, Pharmaceutical Research.
[27] R. Borchardt,et al. Chemical Pathways of Peptide Degradation. VII. Solid State Chemical Instability of an Aspartyl Residue in a Model Hexapeptide , 1994, Pharmaceutical Research.
[28] Bruno C. Hancock,et al. The Relationship Between the Glass Transition Temperature and the Water Content of Amorphous Pharmaceutical Solids , 1994, Pharmaceutical Research.
[29] W. Higuchi,et al. Inhibition of sulfathiazole crystal growth by polyvinylpyrrolidone. , 1970, Journal of pharmaceutical sciences.
[30] P. Kollman,et al. A well-behaved electrostatic potential-based method using charge restraints for deriving atomic char , 1993 .
[31] B. Abu-Sharkh. Glass transition temperature of poly(vinylchloride) from molecular dynamics simulation: explicit atom model versus rigid CH2 and CHCl groups model , 2001 .
[32] R. H. Boyd,et al. Time evolution of dynamic heterogeneity in a polymeric glass: a molecular dynamics simulation study , 2002 .
[33] A. Becke. Density-functional thermochemistry. III. The role of exact exchange , 1993 .
[34] T. Anchordoquy,et al. Polymers protect lactate dehydrogenase during freeze-drying by inhibiting dissociation in the frozen state. , 1996, Archives of biochemistry and biophysics.
[35] S. Glotzer,et al. Spatially correlated dynamics in a simulated glass-forming polymer melt: analysis of clustering phenomena. , 2001, Physical review. E, Statistical, nonlinear, and soft matter physics.
[36] R. Borchardt,et al. Chemical stability of peptides in polymers. 1. Effect of water on peptide deamidation in poly(vinyl alcohol) and poly(vinyl pyrrolidone) matrixes. , 1999, Journal of pharmaceutical sciences.
[37] Chung C. Hsu,et al. Feasibility Study on Spray-Drying Protein Pharmaceuticals: Recombinant Human Growth Hormone and Tissue-Type Plasminogen Activator , 2004, Pharmaceutical Research.
[38] H. Berendsen,et al. Molecular dynamics with coupling to an external bath , 1984 .
[39] J. Hutchinson,et al. The application of modulated differential scanning calorimetry to the glass transition of polymers. I. A single-parameter theoretical model and its predictions , 1996 .
[40] J. Banavar,et al. Computer Simulation of Liquids , 1988 .
[41] F. Stillinger,et al. A Topographic View of Supercooled Liquids and Glass Formation , 1995, Science.
[42] R T Borchardt,et al. Chemical stability of peptides in polymers. 2. Discriminating between solvent and plasticizing effects of water on peptide deamidation in poly(vinylpyrrolidone). , 1999, Journal of pharmaceutical sciences.
[43] T. Xiang,et al. A computer simulation of free-volume distributions and related structural properties in a model lipid bilayer. , 1993, Biophysical journal.
[44] M. Drew,et al. Molecular dynamics calculations of N-methylpyrrolidone in liquid water , 1999 .
[45] A. Göpferich,et al. Peptide Acylation by Poly(α-Hydroxy Esters) , 2002, Pharmaceutical Research.
[46] R. Borchardt,et al. Effect of 'pH' on the rate of asparagine deamidation in polymeric formulations: 'pH'-rate profile. , 2001, Journal of pharmaceutical sciences.
[47] G. Zografi,et al. Effect of water on the molecular mobility of sucrose and poly(vinylpyrrolidone) in a colyophilized formulation as measured by (13)C-NMR relaxation time. , 2002, Chemical & pharmaceutical bulletin.
[48] V. Schirch,et al. Role of peptide conformation in the rate and mechanism of deamidation of asparaginyl residues. , 1988, Biochemistry.
[49] S. Clas,et al. Crystallization inhibition in solid dispersions of MK-0591 and poly(vinylpyrrolidone) polymers. , 2000, Journal of pharmaceutical sciences.
[50] P. P. Ewald. Die Berechnung optischer und elektrostatischer Gitterpotentiale , 1921 .
[51] Marcus Karel,et al. Effect of glass transition on rates of nonenzymatic browning in food systems , 1992 .
[52] Bernard R. Brooks,et al. Protein simulation below the glass-transition temperature. Dependence on cooling protocol , 1994 .
[53] A. Heuer,et al. Heterogeneous and homogeneous dynamics in a simulated polymer melt: Analysis of multi-time correlation functions , 1997 .
[54] R. H. Boyd,et al. Chain dynamics and relaxation in amorphous poly(ethylene terephthalate): A molecular dynamics simulation study , 2001 .
[55] E. Topp,et al. Solid-state chemical stability of proteins and peptides. , 1999, Journal of pharmaceutical sciences.
[56] H. N. Cheng,et al. Tacticity of poly(N-vinyl pyrrolidone) , 1981 .
[57] Bruno C. Hancock,et al. CHARACTERIZATION OF THE TIME SCALES OF MOLECULAR MOTION IN PHARMACEUTICALLY IMPORTANT GLASSES , 1999 .
[58] B. D. Anderson,et al. Solid-state stability of human insulin. II. Effect of water on reactive intermediate partitioning in lyophiles from pH 2-5 solutions: stabilization against covalent dimer formation. , 1997, Journal of pharmaceutical sciences.
[59] J. Ebdon,et al. The influence of polymerization conditions on the tacticity of poly(N-vinyl-2-pyrrolidone) , 1983 .
[60] Michael J. Pikal,et al. Rational Design of Stable Lyophilized Protein Formulations: Some Practical Advice , 1997, Pharmaceutical Research.
[61] J. Tribone,et al. Analysis of enthalpy relaxation in poly(methyl methacrylate): effects of tacticity, deuteration, and thermal history , 1986 .
[62] F. Müller-Plathe. Molecular dynamics simulation of gas transport in amorphous polypropylene , 1992 .
[63] Schofield,et al. Three-dimensional direct imaging of structural relaxation near the colloidal glass transition , 2000, Science.
[64] Graham Williams,et al. Non-symmetrical dielectric relaxation behaviour arising from a simple empirical decay function , 1970 .
[65] Kurt Kremer,et al. A NEW MECHANISM FOR PENETRANT DIFFUSION IN AMORPHOUS POLYMERS : MOLECULAR DYNAMICS SIMULATIONS OF PHENOL DIFFUSION IN BISPHENOL-A-POLYCARBONATE , 1999 .
[66] X. Zhu,et al. Physical models of diffusion for polymer solutions, gels and solids , 1999 .
[67] Y. Aso,et al. Determination of Molecular Mobility of Lyophilized Bovine Serum Albumin and γ-Globulin by Solid-State 1H NMR and Relation to Aggregation-Susceptibility , 1996, Pharmaceutical Research.
[68] S. Yoshioka,et al. Stability of β-Galactosidase, a Model Protein Drug, Is Related to Water Mobility as Measured by 17O Nuclear Magnetic Resonance (NMR) , 2004, Pharmaceutical Research.
[69] L. Verlet. Computer "Experiments" on Classical Fluids. I. Thermodynamical Properties of Lennard-Jones Molecules , 1967 .
[70] Bruno C. Hancock,et al. Molecular Mobility of Amorphous Pharmaceutical Solids Below Their Glass Transition Temperatures , 1995, Pharmaceutical Research.
[71] P. Kollman,et al. A Second Generation Force Field for the Simulation of Proteins, Nucleic Acids, and Organic Molecules , 1995 .
[72] Y. Elabd,et al. Effect of Penetrant−Polymer Interactions on Molecular Diffusion in Conformational Isomers of a Heterogeneous Polymer , 2001 .
[73] H. C. Andersen,et al. Molecular dynamics simulation of silica liquid and glass , 1992 .
[74] W. L. Jorgensen,et al. Comparison of simple potential functions for simulating liquid water , 1983 .
[75] R. Bharadwaj,et al. Effect of Pressure on Conformational Dynamics in Polyethylene: A Molecular Dynamics Simulation Study , 2000 .
[76] Effects of solution polarity and viscosity on peptide deamidation. , 2000, The journal of peptide research : official journal of the American Peptide Society.
[77] Walter Hayduk,et al. Prediction of diffusion coefficients for nonelectrolytes in dilute aqueous solutions , 1974 .