Biomacromolecules, 1526-4602

Tidskrift

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  1. Immobilization to Positively Charged Cellulose Nanocrystals Enhances the Antibacterial Activity and Stability of Hen Egg White and T4 Lysozyme

    Adel Abouhmad, Dishisha, T., Amin, M. A. & Rajni Hatti-Kaul, 2017 maj 8, I : Biomacromolecules. 18, 5, s. 1600-1608 9 s.

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  2. New approaches to the analysis of enzymatically hydrolyzed methyl cellulose. Part 1. Investigation of the influence of structural parameters on the extent of degradation

    Adden, R., Melander, C., Brinkmalm, G., Lo Gorton & Mischnick, P., 2006, I : Biomacromolecules. 7, 5, s. 1399-1409

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  3. Dynamic light scattering and fluorescence study of the interaction between double-stranded DNA and poly(amido amine) dendrimers

    Ainalem, M-L., Karin Schillén & Tommy Nylander, 2007, I : Biomacromolecules. 8, 5, s. 1557-1563

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  4. Protein Release from Galactoglucomannan Hydrogels: Influence of Substitutions and Enzymatic Hydrolysis by beta-Mannanase.

    Andersson, A., Edlund, U., Sjöberg, J., Albertsson, A-C. & Henrik Stålbrand, 2008, I : Biomacromolecules. 9, 8, s. 2104-2110

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  5. Supramolecular Organization in Self-Assembly of Chromatin and Cationic Lipid Bilayers is Controlled by Membrane Charge Density

    Berezhnoy, N. V., Lundberg, D., Korolev, N., Lu, C., Yan, J., Miguel, M., Björn Lindman & Nordenskioeld, L., 2012, I : Biomacromolecules. 13, 12, s. 4146-4157

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  6. Cryogelation of Chitosan Using Noble-Metal Ions: In Situ Formation of Nanoparticles.

    Berillo, D., Bo Mattiasson & Kirsebom, H., 2014, I : Biomacromolecules. 15, 6, s. 2246-2255

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  7. Binding and Release of Consensus Peptides by Poly(acrylic acid) Microgels.

    Bysell, H., Artur Schmidtchen & Malmsten, M., 2009, I : Biomacromolecules. 10, s. 2162-2168

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  8. Interaction between DNA and charged colloids could be hydrophobically driven

    Cárdenas, M., Karin Schillén, Pebalk, D., Tommy Nylander & Björn Lindman, 2005, I : Biomacromolecules. 6, 2, s. 832-837

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  9. Isotropic-nematic phase equilibrium and phase separation of kappa-carrageenan in aqueous salt solution: Experimental and theoretical approaches

    Chronakis, I. S. & Ramzi, M., 2002, I : Biomacromolecules. 3, 4, s. 793-804

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  10. Interaction between covalent DNA gels and a cationic surfactant

    Costa, D., Hansson, P., Schneider, S., Miguel, MG. & Björn Lindman, 2006, I : Biomacromolecules. 7, 4, s. 1090-1095

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  11. Cellulose-Organic Montmorillonite Nanocomposites as Biomacromolecular Quorum-Sensing Inhibitor

    Demircan, D., Ilk, S. & Baozhong Zhang, 2017 okt 9, I : Biomacromolecules. 18, 10, s. 3439-3446 8 s.

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  12. Structural disorder in silk proteins reveals the emergence of elastomericity

    Cedric Dicko, Porter, D., Bond, J., Kenney, J. M. & Vollrath, F., 2008 jan 1, I : Biomacromolecules. 9, 1, s. 216-221 6 s.

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  13. Secondary structures and conformational changes in flagelliform, cylindrical, major, and minor ampullate silk proteins. Temperature and concentration effects

    Cedric Dicko, Knight, D., Kenney, J. M. & Vollrath, F., 2004 nov 1, I : Biomacromolecules. 5, 6, s. 2105-2115 11 s.

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  14. Spider silk protein refolding is controlled by changing pH

    Cedric Dicko, Vollrath, F. & Kenney, J. M., 2004 maj 1, I : Biomacromolecules. 5, 3, s. 704-710 7 s.

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  15. Structural conformation of spidroin in solution: A synchrotron radiation circular dichroism study

    Cedric Dicko, Knight, D., Kenney, J. M. & Vollrath, F., 2004 maj 1, I : Biomacromolecules. 5, 3, s. 758-767 10 s.

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  16. Progression of Self-Assembly of Amelogenin Protein Supramolecular Structures in Simulated Enamel Fluid

    Engelberth, S. A., Bacino, M. S., Sandhu, S., Li, W., Johan Bonde & Habelitz, S., 2018, I : Biomacromolecules. 19, 10, s. 3917-3924 8 s.

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  17. NMR, cloud-point measurements and enzymatic depolymerization: Complementary tools to investigate substituent patterns in modified celluloses

    Fitzpatrick, F., Herje Schagerlöf, Andersson, T., Richardson, S., Folke Tjerneld, Karl-Gustav Wahlund & Wittgren, B., 2006, I : Biomacromolecules. 7, 10, s. 2909-2917

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  18. beta-Casein adsorption at the silicon oxide-aqueous solution interface: Calcium ion effects

    Follows, D., Holt, C., Tommy Nylander, Thomas, R. K. & Tiberg, F., 2004, I : Biomacromolecules. 5, 2, s. 319-325

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  19. Cyclodextrin-surfactant complex: A new route in DNA decompaction

    Gonzalez Perez, A., Dias, R., Tommy Nylander & Björn Lindman, 2008, I : Biomacromolecules. 9, 3, s. 772-775

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  20. On cellulose dissolution and aggregation in aqueous tetrabutylammonium hydroxide

    Gubitosi, M., Duarte, H., Luigi Gentile, Ulf Olsson & Medronho, B., 2016 sep 12, I : Biomacromolecules. 17, 9, s. 2873-2881 9 s.

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  21. Degradation of Mannan I and II Crystals by Fungal endo-β-1,4-Mannanases and a β-1,4-Mannosidase Studied with Transmission Electron Microscopy

    Hägglund, P., Sabini, E., Boisset, C., Wilson, K., Chanzy, H. & Henrik Stålbrand, 2001, I : Biomacromolecules. 2, 3, s. 694-699

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  22. Effects of polyols, saccharides, and glycoproteins on thermoprecipitation of phenylboronate-containing copolymers

    Ivanov, A., Shiomori, K., Kawano, Y., Galaev, I. & Bo Mattiasson, 2006, I : Biomacromolecules. 7, 4, s. 1017-1024

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  23. Effect of the head-group geometry of amino acid-based cationic surfactants on interaction with plasmid DNA

    Jadhav, V., Maiti, S., Dasgupta, A., Das, P. K., Dias, R., Miguel, M. & Björn Lindman, 2008, I : Biomacromolecules. 9, 7, s. 1852-1859

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  24. Effect of poly(propylene imine) glycodendrimers on β-amyloid aggregation in vitro and in APP/PS1 transgenic mice, as a model of brain amyloid deposition and Alzheimer's disease

    O Klementieva, Aso, E., Filippini, D., Benseny-Cases, N., Carmona, M., Juvés, S., Appelhans, D., Cladera, J. & Ferrer, I., 2013 okt 14, I : Biomacromolecules. 14, 10, s. 3570-80

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