266
Index
. controlled.biotechnological.
production.of,.184–186
. corn.steep.liquor.and,.28–29,.37–38
. cosmetic.applications.of,.170–172
. degree.of.polymerization.(DP).in,.
24–25
. density,.34–35
. effect.of.growth.medium.
components.on.production.of,.
26–29,.47,.220–225
. enzyme.immobilization,.101–103
. ethanol.and,.28
. flat,.44–46
. genetic.modifications.of.G. xylinus.
for.enhanced.production.of,.
29–31
. hydrophobic.derivatives,.105–106
. immobilization.of.cells.in,.103–104
. as.implant.material.for.regeneration.
of.chondral.defects,.186–188
. influence.of.oxygen.availability.on.
tube.formation.in.production.of,.
36–37
. investigations.on.cell.adherence.of,.
38–39
. lactate.and,.27–28
. mechanical.properties.in.biomaterials,.
183
. medical.implants.from,.186–193
. meniscus.microweaver,.210–212
. modifications.for.optoelectronic.
devices,.104–105
. network.formation.factors,.24–26
. pH.and.production.of,.25
. porosity,.181–183
. precipitation.of.metal.ions,.106–107
. scale-dependent.properties.of,.
202–207
. semicontinuous.generation.of.flat,.
63–65
. static.cultivation,.45–47
. sterilization,.183–184
. suitability.as.a.biomaterial,.177–186
. variety.of.generation.processes,.
44–48,.184–186
. as.vascular.graft.material,.189–193
. vascular.system.and,.31–38,.189–193
. as.viable.candidate.for.tissue.
engineering.scaffolds,.199–202
. water-soluble.polysaccharides.and,.
25–26
Bacterial.nanocellulose.(BNC).gels
. application.as.replacement.of.
biomaterials,.82–88
. bNC-gelatin.DN,.74–78
. bNC-PAAm.DN,.78–82
. effect.of.AAm.monomer.
concentration.in,.79–80
. effect.of.cross-linking.in,.77–78,.80–81
. effect.of.DN.in,.74–77,.78,.79
. effect.of.water.content.in,.78,.81–82
. mechanical.properties,.74–82
. wear.property,.83–84
Bacterium xylinum,.13
Batch.fermentation.under.stirring.using.
PCSs,.53–54
Bcs.operon,.7,.9–10,.11
Benzalkonium,.101
Bioactive.wound.dressings,.160
Bioactivity,.179–180
Biocompatibility,.177–179,.244
Biodegradation,.85–87,.97–100
. and.BNC.suitability.for.biomaterials,.
180–181
Biodirected.epitaxial.nanodeposition.
on.molecular.tracks.of.NOC.
template,.128–131
. critical.factors.in,.131–134
Biomaterials,.20–21,.175–176
. application.of.BNC-based.DN.gels.as.
replacement.of,.82–88
. chondral.defects.and,.186–188
. conductive.BNC.as,.254–257
. investigations.on.cell.adherence.of,.
38–39
. medical.implants.from.BNC,.186–193
. production,.31–38
. suitability.of.BNC.as,.177–186
. vascular.graft,.189–193
Biomimetic.mineralization.of.apatite,.
217–218
. on.BC.templates,.227
. introduction.to,.218–220
. morphology.and.structural.analyses.
of.mineralized.Ca-P.phase,.
228–234
. preparation.of.BC.templates.for,.
220–227
Index
. controlled.biotechnological.
production.of,.184–186
. corn.steep.liquor.and,.28–29,.37–38
. cosmetic.applications.of,.170–172
. degree.of.polymerization.(DP).in,.
24–25
. density,.34–35
. effect.of.growth.medium.
components.on.production.of,.
26–29,.47,.220–225
. enzyme.immobilization,.101–103
. ethanol.and,.28
. flat,.44–46
. genetic.modifications.of.G. xylinus.
for.enhanced.production.of,.
29–31
. hydrophobic.derivatives,.105–106
. immobilization.of.cells.in,.103–104
. as.implant.material.for.regeneration.
of.chondral.defects,.186–188
. influence.of.oxygen.availability.on.
tube.formation.in.production.of,.
36–37
. investigations.on.cell.adherence.of,.
38–39
. lactate.and,.27–28
. mechanical.properties.in.biomaterials,.
183
. medical.implants.from,.186–193
. meniscus.microweaver,.210–212
. modifications.for.optoelectronic.
devices,.104–105
. network.formation.factors,.24–26
. pH.and.production.of,.25
. porosity,.181–183
. precipitation.of.metal.ions,.106–107
. scale-dependent.properties.of,.
202–207
. semicontinuous.generation.of.flat,.
63–65
. static.cultivation,.45–47
. sterilization,.183–184
. suitability.as.a.biomaterial,.177–186
. variety.of.generation.processes,.
44–48,.184–186
. as.vascular.graft.material,.189–193
. vascular.system.and,.31–38,.189–193
. as.viable.candidate.for.tissue.
engineering.scaffolds,.199–202
. water-soluble.polysaccharides.and,.
25–26
Bacterial.nanocellulose.(BNC).gels
. application.as.replacement.of.
biomaterials,.82–88
. bNC-gelatin.DN,.74–78
. bNC-PAAm.DN,.78–82
. effect.of.AAm.monomer.
concentration.in,.79–80
. effect.of.cross-linking.in,.77–78,.80–81
. effect.of.DN.in,.74–77,.78,.79
. effect.of.water.content.in,.78,.81–82
. mechanical.properties,.74–82
. wear.property,.83–84
Bacterium xylinum,.13
Batch.fermentation.under.stirring.using.
PCSs,.53–54
Bcs.operon,.7,.9–10,.11
Benzalkonium,.101
Bioactive.wound.dressings,.160
Bioactivity,.179–180
Biocompatibility,.177–179,.244
Biodegradation,.85–87,.97–100
. and.BNC.suitability.for.biomaterials,.
180–181
Biodirected.epitaxial.nanodeposition.
on.molecular.tracks.of.NOC.
template,.128–131
. critical.factors.in,.131–134
Biomaterials,.20–21,.175–176
. application.of.BNC-based.DN.gels.as.
replacement.of,.82–88
. chondral.defects.and,.186–188
. conductive.BNC.as,.254–257
. investigations.on.cell.adherence.of,.
38–39
. medical.implants.from.BNC,.186–193
. production,.31–38
. suitability.of.BNC.as,.177–186
. vascular.graft,.189–193
Biomimetic.mineralization.of.apatite,.
217–218
. on.BC.templates,.227
. introduction.to,.218–220
. morphology.and.structural.analyses.
of.mineralized.Ca-P.phase,.
228–234
. preparation.of.BC.templates.for,.
220–227
