Figure 10.13
20 µm
EHT = 3.00 kV
Signal A = InLens
Date: 10 Jun 2011
WD = 8.5 mm
Mag = 500 X
Time: 12:52:11
213
Bacterial Nanocellulose Biomaterials with Controlled Architecture
Figure 10.13
SEM.showing.a.microchannel.in.a.BNC.scaffold.with.a.diameter.ranging.from.200.to.350.μm.
Acknowledgments
The. National. Science. Foundation. is. greatly. acknowledged. for. their. financial. support. of. project. NSFIIP-102642.. We. also. acknowledge. the. excellent.
technical.support.provided.by.Ms..Isabel.Löwstedt.for.the.creation.of.microvascularized.BNC.
References
Andersson,.J.,.H..Stenhamre,.H..Bäckdahl,.and.P..Gatenholm..2010..Behavior.of.human.
articular. chondrocytes. on. microporous. bacterial. cellulose. scaffolds.. J. Biomed.
Mater. Res. A.94:1124–1132.
Atala,. A.. 2002.. Experimental. and. clinical. experience. with. tissue. engineering. techniques.for.urethral.reconstruction..Urol. Clin North Am..29:485–492,.ix.
Bäckdahl,.H.,.M..Esguerra,.D..Delbro,.B..Risberg,.and.P..Gatenholm..2008..Engineering.
. tissue—bacterial.cellulose.as.a.potential.biomaterial..J. Tissue Eng. Regen. Med..
2(6):320–330.
20 µm
EHT = 3.00 kV
Signal A = InLens
Date: 10 Jun 2011
WD = 8.5 mm
Mag = 500 X
Time: 12:52:11
213
Bacterial Nanocellulose Biomaterials with Controlled Architecture
Figure 10.13
SEM.showing.a.microchannel.in.a.BNC.scaffold.with.a.diameter.ranging.from.200.to.350.μm.
Acknowledgments
The. National. Science. Foundation. is. greatly. acknowledged. for. their. financial. support. of. project. NSFIIP-102642.. We. also. acknowledge. the. excellent.
technical.support.provided.by.Ms..Isabel.Löwstedt.for.the.creation.of.microvascularized.BNC.
References
Andersson,.J.,.H..Stenhamre,.H..Bäckdahl,.and.P..Gatenholm..2010..Behavior.of.human.
articular. chondrocytes. on. microporous. bacterial. cellulose. scaffolds.. J. Biomed.
Mater. Res. A.94:1124–1132.
Atala,. A.. 2002.. Experimental. and. clinical. experience. with. tissue. engineering. techniques.for.urethral.reconstruction..Urol. Clin North Am..29:485–492,.ix.
Bäckdahl,.H.,.M..Esguerra,.D..Delbro,.B..Risberg,.and.P..Gatenholm..2008..Engineering.
. tissue—bacterial.cellulose.as.a.potential.biomaterial..J. Tissue Eng. Regen. Med..
2(6):320–330.
