Alginate fibres: an overview of the production processes and applications in wound management
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[1] O. Smidsrod,et al. Dependence upon the gel-sol state of the ion-exchange properties of alginates. , 1972, Acta chemica Scandinavica.
[2] H. Klasen,et al. A historical review of the use of silver in the treatment of burns. II. Renewed interest for silver. , 2000, Burns : journal of the International Society for Burn Injuries.
[3] E. Morris,et al. Biological interactions between polysaccharides and divalent cations: The egg‐box model , 1973 .
[4] L. Ehrenberg,et al. Correlation between Chemical Structure and Physical Properties of Alginates. , 1967 .
[5] H J Klasen,et al. Historical review of the use of silver in the treatment of burns. I. Early uses. , 2000, Burns : journal of the International Society for Burn Injuries.
[6] Qun Wang,et al. Preparation of alginate/soy protein isolate blend fibers through a novel coagulating bath , 2006 .
[7] A. Lansdown,et al. Silver. 2: Toxicity in mammals and how its products aid wound repair. , 2002, Journal of wound care.
[8] M. Ågren. Zinc oxide increases degradation of collagen in necrotic wound tissue , 1993, The British journal of dermatology.
[9] A. Haug,et al. A study on the constitution of alginic acid by partial acid hydrolysis , 1965 .
[10] E. Atkins,et al. Structural components of alginic acid. I. The crystalline structure of poly‐β‐D‐mannuronic acid. Results of X‐ray diffraction and polarized infrared studies , 1973, Biopolymers.
[11] A. D. Russell,et al. Antibacterial activity of Actisorb Plus, Actisorb and silver nitrate. , 1994, The Journal of hospital infection.
[12] O. Smidsrod,et al. Uronic acid sequence in alginate from different sources , 1974 .
[13] S. Whittington,et al. The Molecular Basis for Some Physical Properties of Polyuronides. , 1972 .
[14] Bjørn Larsen,et al. A p.m.r. study of the composition and sequence of uronate residues in alginates , 1979 .
[15] Yimin Qin. Ion-Exchange Properties of Alginate Fibers , 2005 .
[16] U. Mirastschijski,et al. The release of zinc ions from and cytocompatibility of two zinc oxide dressings. , 2004, Journal of wound care.
[17] N. H. Chamberlain,et al. The Production of Rayon from Alginic Acid , 2008 .
[18] S. Thomas,et al. An in vitro analysis of the antimicrobial properties of 10 silver-containing dressings. , 2003, Journal of wound care.
[19] Yoshinari Kobayashi,et al. Enzyme‐Entrapping behaviors in alginate fibers and their papers , 1987, Biotechnology and bioengineering.
[20] S. Thomas,et al. A comparison of the antimicrobial effects of four silver-containing dressings on three organisms. , 2003, Journal of wound care.
[21] G. R. Sanderson,et al. A method for the determination of uronic acid sequence in alginates. , 1972, Carbohydrate research.
[22] C. Dealey. The Care of Wounds , 1994 .
[23] M. Ågren. Zinc in wound repair. , 1999, Archives of dermatology.
[24] Bjørn Larsen,et al. 13C-n.m.r. studies of monomeric composition and sequence in alginate , 1981 .
[25] Yimin Qin,et al. The conversion of calcium alginate fibers into alginic acid fibers and sodium alginate fibers , 2006 .
[26] A. Lansdown,et al. Contreet Foam and Contreet Hydrocolloid: an insight into two new silver-containing dressings. , 2003, Journal of wound care.
[27] H. Flood,et al. Qunantitative Determination of the Uronic Acid Composition of Alginates. , 1962 .
[28] Ronghua Huang,et al. Preparation and characterization of alginate/gelatin blend fibers , 2005 .
[29] Yimin Qin. Silver‐containing alginate fibres and dressings , 2005, International wound journal.