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Original Articles

Assessing the Importance of Organic Matrix Materials in Biofilm Chemical Reactivity: Insights from Proton and Cadmium Adsorption onto the Commercially Available Biopolymer Alginate

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Pages 266-273 | Received 26 Apr 2010, Accepted 25 May 2010, Published online: 24 Mar 2011

REFERENCES

  • Beveridge , T J and Murray , R GE . 1980 . Sites of metal deposition in the cell wall of Bacillus subtilis. . J Bacteriol , 141 : 876 – 887 .
  • Bhaskar , P V and Bhosle , N B . 2006 . Bacterial extracellular polymeric substance (EPS): A carrier of heavy metals in the marine food-chain . Environ Inter , 32 : 191 – 198 .
  • Borrok , D , Fein , J B and Kulpa , C F . 2004 . Proton and Cd adsorption onto natural bacterial consortia: Testing universal adsorption behaviour . Geochim Cosmochim Acta , 68 : 3231 – 3238 .
  • Borrok , D , Turner , B F and Fein , J B . 2005 . A universal surface complexation framework for modeling proton binding onto bacterial surfaces in geologic settings . Amer J Sci , 305 : 826 – 853 .
  • Boyanov , M I , Kelly , S D , Kemner , K M , Bunker , B A , Fein , J B and Fowle , D A . 2003 . Adsorption of cadmium to Bacillus subtilis bacterial cell walls: A pH-dependent X-ray absorption fine structure spectroscopy study . Geochim Cosmochim Acta , 67 : 3299 – 3311 .
  • Christensen , B E and Charaklis , W G . 1990 . “ Physical and chemical properties of biofilms ” . In Biofilms , Edited by: Charaklis , WG and Marshall , KC . 93 – 130 . New York : Wiley .
  • Conti , E , Flaibani , A , O'Regan , M and Sutherland , I . 1994 . Alginate from Pseudomonas fluorescens and Pseudomonas putida: production and properties . Microbiology , 140 : 1128 – 1132 .
  • Daughney , C J and Fein , J B . 1998 . The effect of ionic strength on the adsorption of H+, Cd2+, Pb2+ and Cu2+ by Bacillus subtilis and Bacillus licheniformis: A surface complexation model . J Coll Interf Sci , 198 : 53 – 77 .
  • Daughney , C J , Fowle , D A and Fortin , D . 2001 . The effect of growth phase on proton and metal adsorption by Bacillus subtilis. . Geochim Cosmochim Acta , 65 : 1025 – 1035 .
  • Davis , T A , Kalis , E J , Pinheiro , J P , Town , R M and van Leeuwen , H P . 2008 . Cd(II) Speciation in alginate gels . Environ Sci Technol , 42 : 7242 – 7247 .
  • Davis , T A and Volesky , B Mucci . 2003 . A review of biochemistry of heavy metal biosorption by brown algae . Water Res , 37 : 4311 – 4330 .
  • Dragget , K I , Smidsrød , O and Skjäk-Braek , G . 2005 . “ Alginates from algae ” . In Polysaccharides and Polyamides in the Food Industry: Properties, Production and Patents , Edited by: Steinbüchel , A and Rhee , SK . 1 – 30 . Weinheim : Wiley-VCH .
  • Doshi , H , Ray , A and Kothari , I L . 2008 . Bioaccumulation of heavy metals by green algae . Curr Microbiol , 56 : 46 – 255 .
  • Eboigbodin , K E and Biggs , C A . 2008 . Characterization of the extracellular polymeric substances produced by Escherichia coli using infrared spectroscopic, proteomic, and aggregation studies . Biomacromolecules , 9 : 686 – 695 .
  • Fatin-Rouge , N , Dupont , A , Vidonne , A , Dejeu , J , Fievet , P and Foissy , A . 2006 . Removal of some divalent cations from water by membrane-filtration assisted with alginate . Water Res , 40 : 1303 – 1309 .
  • Filipiuk , D , Fuks , L and Majdan , M . 2004 . Transition metal complexes with uronic acids . J Mol Struct , 744–747 : 705 – 709 .
  • Flemming , H C and Wingender , J . 2001 . Relevance of microbial extracellular polymeric substances (EPSs) –Part I: Structural and ecological aspects . Water Sci Technol , 43 : 1 – 8 .
  • Fourest , E and Volesky , B . 1996 . Contribution of sulfonate groups and alginate to heavy metal biosorption by the dry mass of Sargassum fluitans . Environ Sci Technol , 30 : 277 – 282 .
  • Fourest , E and Volesky , B . 1997 . Alginate properties and heavy metal biosorption by marine algae . Appl Biochem Biotechnol , 67 : 215 – 226 .
  • Freitas , F , Alves , V D , Pais , J , Costa , N , Oliveira , C , Mafra , L , Hilliou , L , Oliveira , R and Rei , M AM . 2009 . Characterization of an extracellular polysaccharide produced by a Pseudomonas strain grown on glycerol . Bioresour Technol , 100 : 859 – 865 .
  • Gadd , G M . 1993 . Interaction of fungui with toxic metals . New Phytol , 124 : 25 – 60 .
  • Galun , M , Keller , P and Malki , D . 1983 . Removal of uranium (VI) from solution by fungal biomass wall-related biopolymers . Science , 219 : 285 – 286 .
  • Ginn , B R , Szymanowski , J S and Fein , J.B. 2008 . Metal and proton binding onto the roots of Fescue rubra . Chemical Geology , 253 : 120 – 135 .
  • Guibaud , G , Van Hullebusch , E and Bordas , F . 2006 . Lead and cadmium biosorption by extracellular polymeric substances (EPS) extracted from activated sludges: pH-sorption edge tests and mathematical equilibrium modelling . Chemosphere , 64 : 1955 – 1962 .
  • Guibaud , G , Bordas , F , Saaid , A , D'abzac , P and Van Hullebusch , E . 2008 . Effect of pH on cadmium and lead binding by extracellular polymeric substances (EPS) extracted from environmental bacterial strains . Coll Surf B: Biointerfaces , 63 : 48 – 54 .
  • Haas , J R . 2004 . Effects of cultivation conditions on acid–base titration properties of Shewanella putrefaciens . Chem Geol , 209 : 67 – 81 .
  • Haug , A , Larsen , B and Smidsrød , O. 1966 . A study on the constitution of alginic acid by partial acid hydrolysis . Acta Chem Scand , 20 : 183 – 190 .
  • Hetzer , A , Daughney , C J and Morgan , H W . 2006 . Cadmium ion biosorption by the thermophilic bacteria Geobacillus stearothermophilus and G. thermocatenulatus. . Appl Environ Microbiol , 72 : 4020 – 4027 .
  • Herbelin , A L and Westall , J C . 1999 . FITEQL 4.0: A computer program for determination of chemical equilibrium constants from experimental data. Report 99–01 , Corvallis : Department of Chemistry, Oregon State University .
  • Hunt , S . 1986 . “ Diversity of biopolymer structure and its potential for ion-binding applications ” . In Immobilization of Ions by Bio-Sorption , Edited by: Ecches , H and Hunt , S . Chichester, , UK : Ellis Harwood .
  • Jodra , Y and Mijangos , F . 2003 . Cooperative biosorption of copper on calcium alginate enclosing iminodiacetic type resin . Environ Sci Technol , 37 : 4362 – 4367 .
  • Johnson , K J , Szymanowski , J ES , Borrok , D , Huynh , T Q and Fein , J B . 2007 . Proton and metal adsorption onto bacterial consortia: Stability constants for metal–bacterial surface complexes . Chem Geol , 239 : 13 – 26 .
  • Kaulbach , E S , Szymanowski , J ES and Fein , J B . 2005 . Surface complexation modeling of proton and Cd adsorption onto an algal cell wall . Environ Sci Technol , 39 : 4060 – 4065 .
  • Konhauser , K O , Fyfe , W S , Schultze-Lam , S and Beveridge , T J . 1994 . Iron phosphate precipitation by epilithic microbial biofilms in Arctic Canada . Can J Earth Sci , 31 : 1320 – 1324 .
  • Körstgens , V , Flemming , H C , Wingender , J and Borchard , W . 2001 . Influence of calcium ions on the mechanical properties of a model biofilm of mucoid Pseudomonas aeruginosa . Water Sci Technol , 43 : 49 – 57 .
  • Lee , J W , Ashby , R D and Day , D F . Role of acetylation on metal induced precipitation of alginates . Carbohydr Polym , 29 337 – 345 .
  • Lui , H and Fang , H HP . 2002 . Characterization of electrostatic binding sites of extracellular polymers by linear programming analysis of titration data . Biotechnol Bioeng , 80 : 806 – 811 .
  • Majidi , V , Laude , D A and Holcombe , J A . 1990 . Investigation of the metal-algae binding site with 113Cd nuclear magnetic resonance . Environ Sci Technol , 24 : 1309 – 1312 .
  • Melvik , J E and Dornish , M . 2004 . “ Alginate as a carrier for cell immobilisation ” . In Fundamentals of Cell Immobilisation Biotechnology, Volume 1 , Edited by: Nedovic , V and Willaert , R . 43 New York : Springer-Verlag .
  • Papageorgiou , S K , Kouvelos , E P , Favvas , E P , Sapalidis , A A , Romanos , G E and Katsaros , F K . 2010 . Metal–carboxylate interactions in metal–alginate complexes studied with FTIR spectroscopy . Carbohydr Res , 345 : 469 – 473 .
  • Phoenix , V R , Martinez , R E , Konhauser , K O and Ferris , F G . 2002 . Characterization and Implications of the cell surface reactivity of Calothrix sp. Strain KC97 . Appl Environ Microbiol , 68 : 4827 – 4834 .
  • Saude , N and Hunter , G A . 2002 . Production and molecular weight characteristics of alginate fromfree and immobilized-cell cultures of Azotobacter vinelandii. . Proc Biochem , 37 : 895 – 900 .
  • Simsek-Ege , F A , Bond , G M and Stringer , J . 2003 . Polyelectrolyte complex formation between alginate and chitosan as a function of pH . J Appl Polym Sci , 88 : 346 – 351 .
  • Smith , D S and Kramer , J R . 1999 . Multi-site proton interactions with natural organic matter . Environ Inter , 25 : 307 – 314 .
  • Smith , R M and Martell , AE. 1982 . Critical Stability Constants V , New York : Plenum Press .
  • Sutherland , I W . 1995 . Polysaccharide lyases . FEMS Microbiol Rev , 16 : 323 – 347 .
  • Sutherland , I W . 2001 . Exopolysaccharides in biofilms, flocs and related structures . Water Sci Technol , 43 : 77 – 86 .
  • Truitt , R E and Weber , J H . 1981 . Determination of complexing capacity of fulvic acid for copper (II) and cadmium (II) by dialysis titration . Anal Chem , 53 : 337 – 342 .
  • Ueshima , M , Ginn , B R , Haack , E A , Szymanowski , J ES and Fein , J B . 2008 . Cd adsorption onto Pseudomonas putida in the presence and absence of extracellular polymeric substances . Geochim Cosmochim Acta , 72 : 5885 – 5895 .
  • Won , S W , Choi , S B and Yun , Y S . 2005 . Interaction between protonated waste biomass of Corynebacterium glutamicum and anionic dye Reactive Red 4 . Coll Surf A: Physicochem Eng Aspects , 262 : 175 – 180 .
  • Yee , N and Fein , J . 2001 . Cd adsorption onto bacterial surfaces: A universal adsorption edge? . Geochim Cosmochim Acta , 65 : 2037 – 2042 .

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