Rotational and translational diffusion in ficoll solutions
暂无分享,去创建一个
Hacène Boukari | Elton D. Jhamba | Zakaria M'Rah | Mohammad A. Khan | H. Boukari | Elton D. Jhamba | Zakaria M'rah | M. A. Khan | Elton Jhamba
[1] O. Krichevsky,et al. Fluorescence correlation spectroscopy: the technique and its applications , 2002 .
[2] S. Aragon,et al. Fluorescence correlation spectroscopy as a probe of molecular dynamics , 1976 .
[3] Conggang Li,et al. Translational and rotational diffusion of a small globular protein under crowded conditions. , 2009, The journal of physical chemistry. B.
[4] M. Tirrell,et al. On the theory of self‐diffusion in a polymer gel , 1984 .
[5] Robert I. Cukier,et al. Diffusion of Brownian spheres in semidilute polymer solutions , 1984 .
[6] Conggang Li,et al. Effects of proteins on protein diffusion. , 2010, Journal of the American Chemical Society.
[7] E. W. Llewellin,et al. The rheology of suspensions of solid particles , 2010, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[8] J. Spitzer. From Water and Ions to Crowded Biomacromolecules: In Vivo Structuring of a Prokaryotic Cell , 2011, Microbiology and Molecular Reviews.
[9] Mark A Hink,et al. Translational and rotational motions of proteins in a protein crowded environment. , 2007, Biophysical chemistry.
[10] K. L. Sebastian,et al. Diffusion in a Crowded, Rearranging Environment. , 2016, The journal of physical chemistry. B.
[11] Petra Schwille,et al. Fluorescence correlation spectroscopy. , 2007, Methods in molecular biology.
[12] M. Tabaka,et al. The effect of macromolecular crowding on mobility of biomolecules, association kinetics, and gene expression in living cells , 2014, Front. Phys..
[13] D. Mooney,et al. Hydrogels for tissue engineering. , 2001, Chemical reviews.
[14] Daniel S. Banks,et al. Characterizing anomalous diffusion in crowded polymer solutions and gels over five decades in time with variable-lengthscale fluorescence correlation spectroscopy. , 2016, Soft matter.
[15] Huan‐Xiang Zhou,et al. Macromolecular crowding and confinement: biochemical, biophysical, and potential physiological consequences. , 2008, Annual review of biophysics.
[16] A. Mukhopadhyay,et al. Diffusion of Nanoparticles in Semidilute Polymer Solutions: Effect of Different Length Scales , 2012 .
[17] A. Verkman,et al. Crowding effects on diffusion in solutions and cells. , 2008, Annual review of biophysics.
[18] Tetsuya Yomo,et al. Protein folding by the effects of macromolecular crowding , 2004, Protein science : a publication of the Protein Society.
[19] K. Luby-Phelps,et al. Cytoarchitecture and physical properties of cytoplasm: volume, viscosity, diffusion, intracellular surface area. , 2000, International review of cytology.
[20] E. Gratton,et al. Fluorescence fluctuation spectroscopy. , 1999, Methods.
[21] Matthew P. Jacobson,et al. A New Coarse-Grained Model for E. coli Cytoplasm: Accurate Calculation of the Diffusion Coefficient of Proteins and Observation of Anomalous Diffusion , 2014, PloS one.
[22] W. Webb,et al. Fluorescence correlation spectroscopy. II. An experimental realization , 1974, Biopolymers.
[23] E. Elson,et al. Fluorescence correlation spectroscopy. I. Conceptual basis and theory , 1974 .
[24] P. E. Pierce,et al. Application of ree-eyring generalized flow theory to suspensions of spherical particles , 1956 .
[25] Megan N. McClean,et al. Severe osmotic compression triggers a slowdown of intracellular signaling, which can be explained by molecular crowding , 2013, Proceedings of the National Academy of Sciences.
[26] Gary W Slater,et al. Diffusing diffusivity: a model for anomalous, yet Brownian, diffusion. , 2014, Physical review letters.
[27] E Gratton,et al. Multifrequency phase and modulation fluorometry. , 1984, Annual review of biophysics and bioengineering.
[28] F. Horkay,et al. Probe diffusion in aqueous poly(vinyl alcohol) solutions studied by fluorescence correlation spectroscopy. , 2007, Biomacromolecules.
[29] J. Lakowicz. Principles of fluorescence spectroscopy , 1983 .
[30] Mohona Sarkar,et al. Protein crowder charge and protein stability. , 2014, Biochemistry.
[31] A S Verkman,et al. Molecular crowding reduces to a similar extent the diffusion of small solutes and macromolecules: measurement by fluorescence correlation spectroscopy , 2004, Journal of molecular recognition : JMR.
[32] George D. J. Phillies,et al. Probe diffusion in polymer solutions , 1991, Photonics West - Lasers and Applications in Science and Engineering.
[33] T. Franosch,et al. Anomalous transport in the crowded world of biological cells , 2013, Reports on progress in physics. Physical Society.
[34] S. Edwards,et al. The Theory of Polymer Dynamics , 1986 .
[35] Andrey G. Cherstvy,et al. Anomalous diffusion models and their properties , 2014 .
[36] Amir Gandjbakhche,et al. Effects of multiple scattering on fluorescence correlation spectroscopy measurements of particles moving within optically dense media , 2012, Journal of biomedical optics.
[37] J. Kuśba,et al. Review of fluorescence anisotropy decay analysis by frequency-domain fluorescence spectroscopy , 1993, Journal of Fluorescence.
[38] Amos Maritan,et al. Diffusion of tagged particles in a crowded medium , 2014, 1404.0303.
[39] P. Gennes. Scaling Concepts in Polymer Physics , 1979 .
[40] P. Bandyopadhyay,et al. An analytical correlated random walk model and its application to understand subdiffusion in crowded environment. , 2015, The Journal of chemical physics.
[41] W. Webb,et al. Fluorescence correlation spectroscopy: inception, biophysical experimentations, and prospectus. , 2001, Applied optics.
[42] Soft interactions and crowding , 2013, Biophysical Reviews.
[43] G. Phillies,et al. Chain and sphere diffusion in polyisobutylene-trichloromethane: a reanalysis , 1992 .
[44] Paolo Meda,et al. Ionic imbalance, in addition to molecular crowding, abates cytoskeletal dynamics and vesicle motility during hypertonic stress , 2015, Proceedings of the National Academy of Sciences.
[45] D. Jameson,et al. Fluorescence polarization/anisotropy in diagnostics and imaging. , 2010, Chemical reviews.
[46] J. D. Wells,et al. On the transport of compact particles through solutions of chain-polymers , 1973, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[47] S. Zustiak,et al. Solute diffusion and interactions in cross-linked poly(ethylene glycol) hydrogels studied by Fluorescence Correlation Spectroscopy. , 2010, Soft matter.
[48] J. Hubbell,et al. Protein delivery from materials formed by self-selective conjugate addition reactions. , 2001, Journal of controlled release : official journal of the Controlled Release Society.
[49] Elliot L. Elson,et al. Fluorescence correlation spectroscopy : theory and applications , 2001 .
[50] Judit Tulla-Puche,et al. Polymers and drug delivery systems. , 2012, Current drug delivery.
[51] P. Garstecki,et al. Diffusion and viscosity in a crowded environment: from nano- to macroscale. , 2006, The journal of physical chemistry. B.
[52] W. Wiechert,et al. The effect of composition on diffusion of macromolecules in a crowded environment , 2015, Physical biology.
[53] Daniel S. Banks,et al. Anomalous diffusion of proteins due to molecular crowding. , 2005, Biophysical journal.
[54] B. Poolman,et al. Emergence of life: Physical chemistry changes the paradigm , 2015, Biology Direct.
[55] F. Rondelez,et al. Sedimentation of large colloidal particles through semidilute polymer solutions , 1978 .
[56] F. Roosen‐Runge,et al. Protein self-diffusion in crowded solutions , 2011, Proceedings of the National Academy of Sciences.
[57] C. Satish,et al. Hydrogels as controlled drug delivery systems: Synthesis, crosslinking, water and drug transport mechanism , 2006 .
[58] A. Mukhopadhyay,et al. Contrasting nanoparticle diffusion in branched polymer and particulate solutions: more than just volume fraction , 2013 .
[59] M. Ameloot,et al. Fluorescence anisotropy measurements in solution: Methods and reference materials (IUPAC Technical Report) , 2013 .
[60] G. Phillies. Dynamics of polymers in concentrated solutions: the universal scaling equation derived , 1987 .
[61] R. Nossal,et al. Hindered diffusion in polymeric solutions studied by fluorescence correlation spectroscopy. , 2011, Biophysical journal.
[62] M. Weiss,et al. Elucidating the origin of anomalous diffusion in crowded fluids. , 2009, Physical review letters.