110
Bacterial Cellulose
Lee,. K.-Y.,. J.. J.. Blaker,. and. A.. Bismarck.. 2009.. Surface. functionalisation. of. . bacterial.
. cellulose.as.the.route.to.produce.green.polylactide.nanocomposites.with.improved.
properties..Compos. Sci. Technol..69:2724–2733.
Legnani,. C.,. C.. Vilani,. V.. L.. Calil,. H.. S.. Barud,. W.. G.. Quirino,. C.. A.. Achete,.
S. J. L. Ribeiro,.and.M..Cremona..2008..Bacterial.cellulose.membrane.as.flexible.
substrate.for.organic.light.emitting.devices..Thin Solid Films.517:1016–1020.
Li,.J.,.Y..Wan,.L..Li,.H..Liang,.and.J..Wang..2009..Preparation.and.characterization.of.
2,3-dialdehyde.bacterial.cellulose.for.potential.biodegradable.tissue.engineering.scaffolds..Mater. Sci. Eng. C.29:1635–1642.
Lucchesi,. C.,. B.. M.. Ferreira,. E.. A.. Duek,. A.. R.. Santos,. Jr.,. and. P.. P.. Joazeiro.. 2008..
Increased.response.of.Vero.cells.to.PHBV.matrices.treated.by.plasma..J. Mater.
Sci. Mater. Med..19:635–643.
Ma,. Z.,. Z.. Mao,. and. C.. Gao.. 2007.. Surface. modification. and. property. analysis. of.
biomedical. .
polymers.used.for.tissue.engineering..Colloids Surfaces B.60:137–157.
Maneerung,.T.,.S..Tokura,.and.R..Rujiravanit..2008..Impregnation.of.silver.nanoparticles.
into.bacterial.cellulose.for.antimicrobial.wound.dressing..Carbohyd. Polym..72:43–51.
Nguyen,.D..N.,.N..M..N..Ton,.and.V..V..M..Le..2009..Optimization.of.Saccharomyces
cerevisiae immobilization. in. bacterial. cellulose. by. “adsorption-incubation”.
method..Int. Food Res. J..15:59–64.
Nguyen,. V.. T.,. M.. J.. Gidley,. and. G..A.. Dykes.. 2008.. Potential. of. a. nisin-containing.
bacterial.cellulose.film.to.inhibit.Listeria.monocytogenes.on.processed.meats..
Food Microbiol..25:471–478.
Nogi,. M.,. K.. Abe,. K.. Handa,. F.. Nakatsubo,. S.. Ifuku,. and. H.. Yano.. 2006.. Property.
enhancement.of.optically.transparent.bionanofiber.composites.by.acetylation..
Appl. Phys. Lett..89:233123.
Ogawa,.R.,.Y..Miura,.S..Tokura,.and.T..Koriyama..1992..Susceptibilities.of.bacterial. .
. cellulose.containing.N-acetylglucosamine.residues.for.cellulolytic.and.chitinolytic.enzymes..Int. J. Biol. Macromol..14:343–347.
Osman,.S..A.,.F..C..Souza,.and.J..E..Dolci..2007..Estudo.experimental.sobre.a.aplicação.
de. película. de. celulose. bacteriana. (bionext). em. área. cruenta. de. ressecção. de.
concha.nasal.de.coelhos..Acta ORL/Técnicas de Otorrinolaringologia.25:304–311.
Perlin,. A.. S.. 2006.. Glycol-cleavage. oxidation.. Adv. Carbohydr. Chem. Biochem..
60:183–250.
Pertile,.R..A..N.,.F..K..Andrade,.C..Alves,.Jr.,.and.M..Gama..2010..Surface.modification.
of. bacterial. cellulose. by. nitrogen-containing. plasma. for. improved. interaction.
with.cells..Carbohyd. Polym..82:692–698.
Phisalaphong,. M.,. and. N.. Jatupaiboon.. 2008.. Biosynthesis. and. characterization. of.
bacteria.cellulose-chitosan.film..Carbohyd. Polym..74:482–488.
Rezaee,.A.,.H..Godini,.and.H..Bakhtou..2008a..Microbial.cellulose.as.support.material.
for.the.immobilization.of.denitrifying.bacteria..Environ. Eng. Manag. J..7:589–594.
Rezaee,. A.,. H.. Godini,. S.. Dehestani,. A.. Reza. Yazdanbakhsh,. G.. Mosavi,. and.
A. Kazemnejad..2008b..Biological.denitrification.by.Pseudomonas stutzeri.immobilized.on.microbial.cellulose..World J. Microbiol. Biotechnol..24:2397–2402.
Sannino,. A.,. C.. Demitri,. and. M.. Madaghiele.. 2009.. Biodegradable. cellulose-based.
hydrogels:.design.and.applications..Materials.2:353–373.
Shah,.J.,.and.R..M..Brown..2005..Towards.electronic.paper.displays.made.from.microbial.cellulose..Appl. Microbiol. Biotechnol..66:352–355.
Bacterial Cellulose
Lee,. K.-Y.,. J.. J.. Blaker,. and. A.. Bismarck.. 2009.. Surface. functionalisation. of. . bacterial.
. cellulose.as.the.route.to.produce.green.polylactide.nanocomposites.with.improved.
properties..Compos. Sci. Technol..69:2724–2733.
Legnani,. C.,. C.. Vilani,. V.. L.. Calil,. H.. S.. Barud,. W.. G.. Quirino,. C.. A.. Achete,.
S. J. L. Ribeiro,.and.M..Cremona..2008..Bacterial.cellulose.membrane.as.flexible.
substrate.for.organic.light.emitting.devices..Thin Solid Films.517:1016–1020.
Li,.J.,.Y..Wan,.L..Li,.H..Liang,.and.J..Wang..2009..Preparation.and.characterization.of.
2,3-dialdehyde.bacterial.cellulose.for.potential.biodegradable.tissue.engineering.scaffolds..Mater. Sci. Eng. C.29:1635–1642.
Lucchesi,. C.,. B.. M.. Ferreira,. E.. A.. Duek,. A.. R.. Santos,. Jr.,. and. P.. P.. Joazeiro.. 2008..
Increased.response.of.Vero.cells.to.PHBV.matrices.treated.by.plasma..J. Mater.
Sci. Mater. Med..19:635–643.
Ma,. Z.,. Z.. Mao,. and. C.. Gao.. 2007.. Surface. modification. and. property. analysis. of.
biomedical. .
polymers.used.for.tissue.engineering..Colloids Surfaces B.60:137–157.
Maneerung,.T.,.S..Tokura,.and.R..Rujiravanit..2008..Impregnation.of.silver.nanoparticles.
into.bacterial.cellulose.for.antimicrobial.wound.dressing..Carbohyd. Polym..72:43–51.
Nguyen,.D..N.,.N..M..N..Ton,.and.V..V..M..Le..2009..Optimization.of.Saccharomyces
cerevisiae immobilization. in. bacterial. cellulose. by. “adsorption-incubation”.
method..Int. Food Res. J..15:59–64.
Nguyen,. V.. T.,. M.. J.. Gidley,. and. G..A.. Dykes.. 2008.. Potential. of. a. nisin-containing.
bacterial.cellulose.film.to.inhibit.Listeria.monocytogenes.on.processed.meats..
Food Microbiol..25:471–478.
Nogi,. M.,. K.. Abe,. K.. Handa,. F.. Nakatsubo,. S.. Ifuku,. and. H.. Yano.. 2006.. Property.
enhancement.of.optically.transparent.bionanofiber.composites.by.acetylation..
Appl. Phys. Lett..89:233123.
Ogawa,.R.,.Y..Miura,.S..Tokura,.and.T..Koriyama..1992..Susceptibilities.of.bacterial. .
. cellulose.containing.N-acetylglucosamine.residues.for.cellulolytic.and.chitinolytic.enzymes..Int. J. Biol. Macromol..14:343–347.
Osman,.S..A.,.F..C..Souza,.and.J..E..Dolci..2007..Estudo.experimental.sobre.a.aplicação.
de. película. de. celulose. bacteriana. (bionext). em. área. cruenta. de. ressecção. de.
concha.nasal.de.coelhos..Acta ORL/Técnicas de Otorrinolaringologia.25:304–311.
Perlin,. A.. S.. 2006.. Glycol-cleavage. oxidation.. Adv. Carbohydr. Chem. Biochem..
60:183–250.
Pertile,.R..A..N.,.F..K..Andrade,.C..Alves,.Jr.,.and.M..Gama..2010..Surface.modification.
of. bacterial. cellulose. by. nitrogen-containing. plasma. for. improved. interaction.
with.cells..Carbohyd. Polym..82:692–698.
Phisalaphong,. M.,. and. N.. Jatupaiboon.. 2008.. Biosynthesis. and. characterization. of.
bacteria.cellulose-chitosan.film..Carbohyd. Polym..74:482–488.
Rezaee,.A.,.H..Godini,.and.H..Bakhtou..2008a..Microbial.cellulose.as.support.material.
for.the.immobilization.of.denitrifying.bacteria..Environ. Eng. Manag. J..7:589–594.
Rezaee,. A.,. H.. Godini,. S.. Dehestani,. A.. Reza. Yazdanbakhsh,. G.. Mosavi,. and.
A. Kazemnejad..2008b..Biological.denitrification.by.Pseudomonas stutzeri.immobilized.on.microbial.cellulose..World J. Microbiol. Biotechnol..24:2397–2402.
Sannino,. A.,. C.. Demitri,. and. M.. Madaghiele.. 2009.. Biodegradable. cellulose-based.
hydrogels:.design.and.applications..Materials.2:353–373.
Shah,.J.,.and.R..M..Brown..2005..Towards.electronic.paper.displays.made.from.microbial.cellulose..Appl. Microbiol. Biotechnol..66:352–355.
