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Original Articles

Physical and mechanical properties of thermosensitive xanthan/collagen-inspired protein composite hydrogels

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Pages 125-133 | Received 23 Feb 2015, Accepted 16 Jul 2015, Published online: 30 Nov 2015

References

  • Henderson, D.; Trokhymchuk, A. In-layer structuring of like-charged macroions in a thin film. Ind. Eng. Chem. Res. 2005, 44, 1175.
  • Ren, C.; Ma, Y. Phase behavior in thin films of confined colloid−polymer mixtures. J. Am. Chem. Soc. 2006, 128, 2733.
  • Herman, D.; Walz, J. Y. Stabilization of weakly charged microparticles using highly charged nanoparticles. Langmuir 2013, 29, 5982.
  • Van der Gucht, J.; Spruijt, E.; Lemmers, M.; Cohen Stuart, M. A. Polyelectrolyte complexes: bulk phases and colloidal systems. J. Colloid Interface Sci. 2011, 361, 407.
  • Voets, I. K.; de Keizer, A.; de Waard, P.; Frederik, P. M.; Bomans, P. H. H.; Schmalz, H.; Walther, A.; King, S. M.; Leermakers, F. A. M.; Cohen Stuart, M. A. Double-faced micelles from water-soluble polymers. Angew. Chem., Int. Ed. Engl. 2006, 45, 6673.
  • Lemmers, M.; Sprakel, J.; Voets, I. K.; van der Gucht, J.; Cohen Stuart, M. A. Angew. Chem., Int. Ed. Engl. 2010, 49, 708.
  • Pham, T. H. T.; Wang, J.; Werten, M. W.; Snijkers, F.; de Wolf, F. A.; Cohen Stuart, M. A.; van der Gucht, J. Multi-responsive physical gels formed by a biosynthetic asymmetric triblock protein polymer and a polyanion. Soft Matter 2013, 9, 8923.
  • Golinska, M. D.; de Wolf, F. A.; Cohen Stuart, M. A.; Hernandez-Garcia, A.; de Vries R. Pearl-necklace complexes of flexible polyanions with neutral–cationic diblock copolymers. Soft Matter 2013, 9, 6406.
  • KELTROL®/KELZAN® Xanthan Gum, 8th edn.; Huber Company: Edison, NJ, 2008.
  • Sanderson, G. R. Applications of xanthan gum. Brit. Polym. J. 1981, 13, 71.
  • Rochefort, W. E.; Middleman, S. Rheology of xanthan gum: salt, temperature, and strain effects in oscillatory and steady shear experiments. J. Rheol. 1987, 31, 337.
  • Phaechamud, T.; Ritthidej, G. C. Sustained-release from layered matrix system comprising chitosan and xanthan gum. Drug Dev. Ind. Pharm. 2007, 33, 595.
  • Hamman, J. H. Chitosan based polyelectrolyte complexes as potential carrier materials in drug delivery systems. Mar. Drugs 2010, 8, 1305.
  • Argin-Soysal, S.; Kofinas, P.; Lo, Y. M. Effect of complexation conditions on xanthan–chitosan polyelectrolyte complex gels. Food Hydrocolloids 2009, 23, 202.
  • Laneuville, S. I.; Turgeon, S. L.; Sanchez, C.; Paquin, P. Gelation of native α-lactoglobulin induced by electrostatic attractive interaction with xanthan gum. Langmuir 2006, 22, 7351.
  • Le, X. T.; Turgeon, S. L. Rheological and structural study of electrostatic cross-linked xanthan gum hydrogels induced by β-lactoglobulin. Soft Matter 2013, 9, 3063.
  • Dickinson, E. Interfacial structure and stability of food emulsions as affected by protein–polysaccharide interactions. Soft Matter 2008, 4, 932.
  • Wagner, B.; Tharmann, R.; Haase, I.; Fischer, M.; Bausch, A. R. Cytoskeletal polymer networks: The molecular structure of cross-linkers determines macroscopic properties. Proc. Natl. Acad. Sci. USA 2006, 103, 13974.
  • Werten, M. W. T.; Teles, H.; Moers, A. P. H. A.; Wolbert, E. J. H.; Sprakel, J.; Eggink, G.; de Wolf, F. A. Precision gels from collagen-inspired triblock copolymers. Biomacromolecules 2009, 10, 1106.
  • Werten, M. W. T.; Wisselink, W. H.; van den Bosch, T. J. J.; de Bruin, E. C.; de Wolf, F. A. Secreted production of a custom-designed, highly hydrophilic gelatin in Pichia pastoris. Protein Eng. 2001, 14, 447.
  • Berth, G.; Dautzenberg, H.; Harding, S. E.; Rother, G.; Christensen, B. E.; Smidsrød, O. Static light scattering studies on xanthan in aqueous solutions. Macromolecules 1996, 29, 3491.
  • Zirnsak, M. A.; Boger, D. V.; Tirtaatmadja, V. Steady shear and dynamic rheological properties of xanthan gum solutions in viscous solvents. J. Rheol. 1999, 43, 627.
  • Norwood, D. P.; Benmouna, M.; Reed, W. F. Static light scattering from mixtures of polyelectrolytes in low ionic strength solutions. Macromolecules 1996, 29, 4293.
  • Zhang, S.; Zhang, Z.; Vardhanabhuti, B. Effect of charge density of polysaccharides on selfassembled intragastric gelation of whey protein polysaccharide under simulated gastric conditions. Food Funct. 2014, 5, 1829.
  • Hernandez-Garcia, A.; Werten, M. W. T.; Cohen Stuart, M.; de Wolf, F. A.; de Vries, R. Coating of single DNA molecules by genetically engineered protein diblock copolymers. Small 2012, 8, 3491.
  • Skrzeszewska, P. J.; de Wolf, F. A.; Werten, M. W. T.; Moers, A. P. H. A.; Cohen Stuart, M. A.; van der Gucht, J. Physical gels of telechelic triblock copolymers with precisely defined junction multiplicity. Soft Matter 2009, 5, 2057.
  • Pham, T. T. H.; Skrzeszewska, P. J.; Werten, M. W. T.; Rombouts, W. H.; Cohen Stuart, M. A.; de Wolf, F. A.; van der Gucht, J. Disulfide bond-stabilized physical gels of an asymmetric collagen-inspired telechelic protein polymer. Soft Matter 2013, 9, 6391.
  • Tolstoguzov, V. Some thermodynamic considerations in food formulation. Food Hydrocolloids 2003, 17, 1.
  • Ma, L.; Barbosa-Canovas, G. V. Viscoelastic properties of xanthan gels interacting with cations. J. Food Sci. 1997, 62, 1124.
  • Marudova-Zsivanovits, M.; Jilov, N.; Gencheva, E. Rheological investigation of xanthan gum–chromium gelation and its relation to enhanced oil recovery. J. Appl. Polym. Sci. 2007, 103, 160.
  • Camesano, T. A.; Wilkinson, K. J. Single molecule study of xanthan conformation using atomic force microscopy. Biomacromolecules 2001, 2, 1184.
  • Song, K. W.; Kuk, H. Y.; Chang, G. S. Rheology of concentrated xanthan gum solutions: Oscillatory shear flow behavior. Korea-Aust. Rheol. J. 2006, 18, 67.
  • Storm, C.; Pastore, J. J.; MacKintosh, F. C.; Lubensky, T. C.; Janmey, P. A. Nonlinear elasticity in biological gels. Nature 2005, 435, 191.

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