196
Bacterial Cellulose
Nakayama,.A.,.A..Kakugo,.J..P..Gong,.Y..Osada,.M..Takai,.T..Erata,.and.S..Kawano..
2004..High.mechanical.strength.double-network.hydrogel.with.bacterial.cellulose..Adv. Funct. Mater..14:1124–1128.
Recouvreux,.D..O..S.,.C..R..Rambo,.F..V..Berti,.C..A..Carminatti,.R..V..Antonio,.and.
L. M..Porto..2011..Novel.three-dimensional.cocoon-like.hydrogels.for.soft.tissue.
regeneration..Mater. Sci. Eng. C.31:151–157.
Schumann,. D..A.,. J.. Wippermann,. D.. O.. Klemm,. F.. Kramer,. D.. Koth,. H.. Kosmehl,.
T. Wahlers,.and.S..Salehi-Gelani..2009..Artificial.vascular.implants.from.bacterial.
cellulose:.preliminary.results.of.small.arterial.substitutes..Cellulose.16:877–85.
Sieminski,. A.. L.,. and. K.. J.. Gooch.. 2000.. Biomaterial-microvasculature. interactions..
Biomaterials.21:2233–2241.
Sokolnicki,.A..M.,.R..J..Fisher,.T..P..Harrah,.and.D..L..Kaplan..2006..Permeability.of.
bacterial.cellulose.membranes..J. Membrane Sci..272:15–27.
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.
Tang,.W.,.S..Jia,.Y..Jia,.and.H..Yang..2010..The.influence.of.fermentation.conditions.
and.post-treatment.methods.on.porosity.of.bacterial.cellulose.membrane..World
J. Microbiol. Biotechnol. 26:125–131.
Teoh.S..H..2004..Introduction.to.biomaterials.engineering.and.processing—an.overview..In:.Engineering Materials for Biomedical Applications,.ed..S..H..Teoh,.1–16..
Singapore:.World.Scientific.Publishing.
Wan,.Y..Z.,.Y..Huang,.C..D..Yuan,.S..Raman,.Y..Zhu,.H..J..Jiang,.F..He,.and.C..Gao..2007..
Biomimetic.synthesis.of.hydroxyapatite/bacterial.cellulose.nanocomposites.for.
biomedical.applications..Mater. Sci. Eng. C.27:855–864.
Watanabe,.K.,.Y..Eto,.S..Takano,.S..Nakamori,.H..Shibai,.and.S..Yamanaka..1993..A.new.
bacterial.cellulose.substrate.for.mammalian.cell.culture..Cytotechnology.13:107–114.
Wesarg,. F.,. N.. Heßler,. D.. Kralisch,. D.. Klemm,. W.. Fried,. and. F.. A.. Müller.. 2010..
Structural. and. mechanical. properties. of. bacterial. nanocellulose. produced.
by. different. Gluconacetobacter. strains.. Paper. presented. at. the. 239th. American.
Chemical.Society.National.Meeting,.March.23–29,.San.Francisco,.CA.
Williams,. D.. F.. 1999.. The Williams Dictionary of Biomaterials.. Liverpool:. Liverpool.
University.Press.
Williams,.K..L..2007..Depyrogenation.validation,.pyroburden,.and.endotoxin.removal..
Drugs Pharm. Sci. 167:301–327.
Zaborowska,.M.,.A..Bodin,.H..Baeckdahl,.J..Popp,.A..Goldstein,.and.P..Gatenholm..2010..
Microporous.bacterial.cellulose.as.a.potential.scaffold.for.bone.regeneration..Acta
Biomater..6:2540–2547.
Bacterial Cellulose
Nakayama,.A.,.A..Kakugo,.J..P..Gong,.Y..Osada,.M..Takai,.T..Erata,.and.S..Kawano..
2004..High.mechanical.strength.double-network.hydrogel.with.bacterial.cellulose..Adv. Funct. Mater..14:1124–1128.
Recouvreux,.D..O..S.,.C..R..Rambo,.F..V..Berti,.C..A..Carminatti,.R..V..Antonio,.and.
L. M..Porto..2011..Novel.three-dimensional.cocoon-like.hydrogels.for.soft.tissue.
regeneration..Mater. Sci. Eng. C.31:151–157.
Schumann,. D..A.,. J.. Wippermann,. D.. O.. Klemm,. F.. Kramer,. D.. Koth,. H.. Kosmehl,.
T. Wahlers,.and.S..Salehi-Gelani..2009..Artificial.vascular.implants.from.bacterial.
cellulose:.preliminary.results.of.small.arterial.substitutes..Cellulose.16:877–85.
Sieminski,. A.. L.,. and. K.. J.. Gooch.. 2000.. Biomaterial-microvasculature. interactions..
Biomaterials.21:2233–2241.
Sokolnicki,.A..M.,.R..J..Fisher,.T..P..Harrah,.and.D..L..Kaplan..2006..Permeability.of.
bacterial.cellulose.membranes..J. Membrane Sci..272:15–27.
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.
Tang,.W.,.S..Jia,.Y..Jia,.and.H..Yang..2010..The.influence.of.fermentation.conditions.
and.post-treatment.methods.on.porosity.of.bacterial.cellulose.membrane..World
J. Microbiol. Biotechnol. 26:125–131.
Teoh.S..H..2004..Introduction.to.biomaterials.engineering.and.processing—an.overview..In:.Engineering Materials for Biomedical Applications,.ed..S..H..Teoh,.1–16..
Singapore:.World.Scientific.Publishing.
Wan,.Y..Z.,.Y..Huang,.C..D..Yuan,.S..Raman,.Y..Zhu,.H..J..Jiang,.F..He,.and.C..Gao..2007..
Biomimetic.synthesis.of.hydroxyapatite/bacterial.cellulose.nanocomposites.for.
biomedical.applications..Mater. Sci. Eng. C.27:855–864.
Watanabe,.K.,.Y..Eto,.S..Takano,.S..Nakamori,.H..Shibai,.and.S..Yamanaka..1993..A.new.
bacterial.cellulose.substrate.for.mammalian.cell.culture..Cytotechnology.13:107–114.
Wesarg,. F.,. N.. Heßler,. D.. Kralisch,. D.. Klemm,. W.. Fried,. and. F.. A.. Müller.. 2010..
Structural. and. mechanical. properties. of. bacterial. nanocellulose. produced.
by. different. Gluconacetobacter. strains.. Paper. presented. at. the. 239th. American.
Chemical.Society.National.Meeting,.March.23–29,.San.Francisco,.CA.
Williams,. D.. F.. 1999.. The Williams Dictionary of Biomaterials.. Liverpool:. Liverpool.
University.Press.
Williams,.K..L..2007..Depyrogenation.validation,.pyroburden,.and.endotoxin.removal..
Drugs Pharm. Sci. 167:301–327.
Zaborowska,.M.,.A..Bodin,.H..Baeckdahl,.J..Popp,.A..Goldstein,.and.P..Gatenholm..2010..
Microporous.bacterial.cellulose.as.a.potential.scaffold.for.bone.regeneration..Acta
Biomater..6:2540–2547.
