111
Bacterial Cellulose Surface Modifications
Shirai,.A.,.M..Takahashi,.H..Kaneko,.S..Nishimura,.M..Ogawa,.N..Nishi,.and.S..Tokura..
1994..Biosynthesis.of.a.novel.polysaccharide.by.Acetobacter xylinum..Int. J. Biol.
Macromol..16:297–300.
Shirai,.A.,.N..Sakairi,.N..Nishi,.and.S..Tokura..1997..Preparation.of.a.novel.(1→4)-β-Dglycan. by. Acetobacter xylinum—a. proposed. mechanism. for. incorporation. of. a.
N-acetylglucosamine.residue.into.bacterial.cellulose..Carbohyd. Polym..32:223–227.
Shpigel,.E.,.A..Goldlust,.G..Efroni,.A..Avraham,.A..Eshel,.M..Dekel,.and.O..Shoseyov..
1999.. Immobilization. of. recombinant. heparinase. I. fused. to. cellulose-binding.
domain..Biotechnol. Bioeng..65:17–23.
Sun,.D.,.J..Yang,.and.X..Wang..2010..Bacterial.cellulose/TiO 2 .hybrid.nanofibers.prepared. by. the. surface. hydrolysis. method. with. molecular. precision.. Nanoscale.
2:287–292.
Svensson,.A.,.E..Nicklasson,.T..Harrah,.B..Panilaitis,.D..L..Kaplan,.M..Brittberg,.and.
P. Gatenholm..2005..Bacterial.cellulose.as.a.potential.scaffold.for.tissue.engineering.of.cartilage..Biomaterials.26:419–431.
Tomé,. L.,. L.. Brandão,.A.. Mendes,.A.. Silvestre,. C.. Neto,.A.. Gandini,. C.. Freire,. and.
I. Marrucho.. 2010.. Preparation. and. characterization. of. bacterial. cellulose.
. membranes.with.tailored.surface.and.barrier.properties..Cellulose.17:1203–1211.
Tomsic,.B.,.B..Simoncic,.B..Orel,.A..Vilcnik,.and.H..Spreizer..2007..Biodegradability.
of.cellulose.fabric.modified.by.imidazolidinone..Carbohyd. Polym..69:478–488.
Vesel,. A.,. I.. Junkar,. U.. Cvelbar,. J.. Kovac,. and. M.. Mozetic.. 2008.. Surface. modification.of.polyester.by.oxygen-.and.nitrogen-plasma.treatment..Surf. Interface Anal..
40:1444–1453.
Vyjayanthi,. J.. P.,. and. S.. Suresh.. 2010.. Decolorization. of. drimarene. red. dye. using.
. palladized.bacterial.cellulose.in.a.reactor..Water Environ. Res..82:601–609.
Wan,.Y.,.C..Gao,.M..Han,.H..Liang,.K..Ren,.Y..Wang,.and.H..Luo..2011..Preparation.
and.characterization.of.bacterial.cellulose/heparin.hybrid.nanofiber.for.potential.vascular.tissue.engineering.scaffolds..Polym. Adv. Technol..22:2643–2648.
Wang,.W.,.T.-J..Zhang,.D.-W..Zhang,.H.-Y..Li,.Y.-R..Ma,.L.-M..Qi,.Y.-L..Zhou,.and.X.-X..
Zhang..2011..Amperometric.hydrogen.peroxide.biosensor.based.on.the.immobilization.of.heme.proteins.on.gold.nanoparticles-bacteria.cellulose.nanofibers.
nanocomposite..Talanta.84:71–77.
Wang,.Y..X.,.J..L..Robertson,.W..B..Spillman,.Jr.,.and.R..O..Claus..2004..Effects.of.the.
chemical.structure.and.the.surface.properties.of.polymeric.biomaterials.on.their.
biocompatibility..Pharm. Res..21:1362–1373.
Watanabe,. K.,. Y.. Eto,. S.. Takano,. S.. Nakamori,. H.. Shibai,. and. S.. Yamanaka.. 1993..
A new.bacterial.cellulose.substrate.for.mammalian.cell.culture..A.new.bacterial.
cellulose.substrate..Cytotechnology.13:107–114.
Wei,.B.,.G..Yang,.and.F..Hong..2011..Preparation.and.evaluation.of.a.kind.of.bacterial.
cellulose.dry.films.with.antibacterial.properties..Carbohyd. Polym..84:533–538.
Wu,. S.-C.,. and. Y.-K.. Lia.. 2008..Application. of. bacterial. cellulose. pellets. in. enzyme.
immobilization..J. Mol. Catal. B Enzym..54:103–108.
Yano,. H.,. J.. Sugiyama,. A.. N.. Nakagaito,. M.. Nogi,. T.. Matsuura,. M.. Hikita,. and.
K. Handa..2005..Optically.transparent.composites.reinforced.with.networks.of.
bacterial.nanofibers..Adv. Mater..17:153–155.
Zilla,. P.,. D.. Bezuidenhout,. and. P.. Human.. 2007.. Prosthetic. vascular. grafts:. wrong.
models,.wrong.questions.and.no.healing..Biomaterials.28:5009–5027.
Bacterial Cellulose Surface Modifications
Shirai,.A.,.M..Takahashi,.H..Kaneko,.S..Nishimura,.M..Ogawa,.N..Nishi,.and.S..Tokura..
1994..Biosynthesis.of.a.novel.polysaccharide.by.Acetobacter xylinum..Int. J. Biol.
Macromol..16:297–300.
Shirai,.A.,.N..Sakairi,.N..Nishi,.and.S..Tokura..1997..Preparation.of.a.novel.(1→4)-β-Dglycan. by. Acetobacter xylinum—a. proposed. mechanism. for. incorporation. of. a.
N-acetylglucosamine.residue.into.bacterial.cellulose..Carbohyd. Polym..32:223–227.
Shpigel,.E.,.A..Goldlust,.G..Efroni,.A..Avraham,.A..Eshel,.M..Dekel,.and.O..Shoseyov..
1999.. Immobilization. of. recombinant. heparinase. I. fused. to. cellulose-binding.
domain..Biotechnol. Bioeng..65:17–23.
Sun,.D.,.J..Yang,.and.X..Wang..2010..Bacterial.cellulose/TiO 2 .hybrid.nanofibers.prepared. by. the. surface. hydrolysis. method. with. molecular. precision.. Nanoscale.
2:287–292.
Svensson,.A.,.E..Nicklasson,.T..Harrah,.B..Panilaitis,.D..L..Kaplan,.M..Brittberg,.and.
P. Gatenholm..2005..Bacterial.cellulose.as.a.potential.scaffold.for.tissue.engineering.of.cartilage..Biomaterials.26:419–431.
Tomé,. L.,. L.. Brandão,.A.. Mendes,.A.. Silvestre,. C.. Neto,.A.. Gandini,. C.. Freire,. and.
I. Marrucho.. 2010.. Preparation. and. characterization. of. bacterial. cellulose.
. membranes.with.tailored.surface.and.barrier.properties..Cellulose.17:1203–1211.
Tomsic,.B.,.B..Simoncic,.B..Orel,.A..Vilcnik,.and.H..Spreizer..2007..Biodegradability.
of.cellulose.fabric.modified.by.imidazolidinone..Carbohyd. Polym..69:478–488.
Vesel,. A.,. I.. Junkar,. U.. Cvelbar,. J.. Kovac,. and. M.. Mozetic.. 2008.. Surface. modification.of.polyester.by.oxygen-.and.nitrogen-plasma.treatment..Surf. Interface Anal..
40:1444–1453.
Vyjayanthi,. J.. P.,. and. S.. Suresh.. 2010.. Decolorization. of. drimarene. red. dye. using.
. palladized.bacterial.cellulose.in.a.reactor..Water Environ. Res..82:601–609.
Wan,.Y.,.C..Gao,.M..Han,.H..Liang,.K..Ren,.Y..Wang,.and.H..Luo..2011..Preparation.
and.characterization.of.bacterial.cellulose/heparin.hybrid.nanofiber.for.potential.vascular.tissue.engineering.scaffolds..Polym. Adv. Technol..22:2643–2648.
Wang,.W.,.T.-J..Zhang,.D.-W..Zhang,.H.-Y..Li,.Y.-R..Ma,.L.-M..Qi,.Y.-L..Zhou,.and.X.-X..
Zhang..2011..Amperometric.hydrogen.peroxide.biosensor.based.on.the.immobilization.of.heme.proteins.on.gold.nanoparticles-bacteria.cellulose.nanofibers.
nanocomposite..Talanta.84:71–77.
Wang,.Y..X.,.J..L..Robertson,.W..B..Spillman,.Jr.,.and.R..O..Claus..2004..Effects.of.the.
chemical.structure.and.the.surface.properties.of.polymeric.biomaterials.on.their.
biocompatibility..Pharm. Res..21:1362–1373.
Watanabe,. K.,. Y.. Eto,. S.. Takano,. S.. Nakamori,. H.. Shibai,. and. S.. Yamanaka.. 1993..
A new.bacterial.cellulose.substrate.for.mammalian.cell.culture..A.new.bacterial.
cellulose.substrate..Cytotechnology.13:107–114.
Wei,.B.,.G..Yang,.and.F..Hong..2011..Preparation.and.evaluation.of.a.kind.of.bacterial.
cellulose.dry.films.with.antibacterial.properties..Carbohyd. Polym..84:533–538.
Wu,. S.-C.,. and. Y.-K.. Lia.. 2008..Application. of. bacterial. cellulose. pellets. in. enzyme.
immobilization..J. Mol. Catal. B Enzym..54:103–108.
Yano,. H.,. J.. Sugiyama,. A.. N.. Nakagaito,. M.. Nogi,. T.. Matsuura,. M.. Hikita,. and.
K. Handa..2005..Optically.transparent.composites.reinforced.with.networks.of.
bacterial.nanofibers..Adv. Mater..17:153–155.
Zilla,. P.,. D.. Bezuidenhout,. and. P.. Human.. 2007.. Prosthetic. vascular. grafts:. wrong.
models,.wrong.questions.and.no.healing..Biomaterials.28:5009–5027.
