Index
A
Atactic polystyrene (a-PS), LL phase
separation, 168
Auxiliary pore-forming agents, 88, 93
Avrami plot, 191
B
Bacterial cellulose (BC), PVA
artificial cornea replacement, 303–304
cardiovascular tissue replacement, 302
composite cryogels, 302–304
effect of addition, 303
Bell-shaped temperature dependence, of
cryotropic gelation efficiency
adverse factors, 79–81
favorable factors, 79
gel-fraction yield
poly(styrene) preparation, in
nitrobenzene, 81–82
vs. temperature, in chitosan cryogels,
78, 79
gel-point time, acrylamide vs. N,N
00 -
methylene(bis)acrylamide, 82–83
for PVA cryogels, 83–84
solvent–monomers–initiator systems, 82
Belousov–Zhabotinsky (BZ) reaction, 144
Berghmans point, 169, 170
Bioreactors, mammalian cells as, 252–255
SEM pictures, 253, 255
urokinase in situ recovery, 253–254
Biotechnological applications, cryogels
biomolecules chromatography
composite cryogels, bioseparation,
264–265
double polymer networks, 265–266
grafting, 263–264
bioreactors, mammalian cells as, 252–255
SEM pictures, 253, 255
urokinase in situ recovery, 253–254
built from crosslinked cells, 252–254
cell entrapment, 248
immobilized biocatalysts, 249–250
SEM images, 251
chromatographic separation
cells, 255–258
organelles and subcellular particles,
258–260
viruses and phages, 260–263
continuous cell seeding, 252
functionality, 248
housings, 268–269
materials used for, 248
molecularly imprinted polymers, 269–271
endocrine disruptors, 271–274
heavy metal ions, 271
pharmaceuticals and pesticides, 274
proteins separation, 266
environmental pollutants, 267–268
high through-put screening, 267
Bovine serum albumin (BSA), PVA cryogel
rate of, 300
release profiles, 299–301
Serp-1, 301
thawing rate effect, 299
Burst effect, 218
Butyl rubber (PIB), crosslinking reactions of,
110, 111
C
Ca-alginate sponges, 36
Carbon-based particulate materials, 236–237
Carbon cryogels, 4
O. Okay (ed.), Polymeric Cryogels, Advances in Polymer Science 263,
DOI 10.1007/978-3-319-05846-7, © Springer International Publishing Switzerland 2014
323
A
Atactic polystyrene (a-PS), LL phase
separation, 168
Auxiliary pore-forming agents, 88, 93
Avrami plot, 191
B
Bacterial cellulose (BC), PVA
artificial cornea replacement, 303–304
cardiovascular tissue replacement, 302
composite cryogels, 302–304
effect of addition, 303
Bell-shaped temperature dependence, of
cryotropic gelation efficiency
adverse factors, 79–81
favorable factors, 79
gel-fraction yield
poly(styrene) preparation, in
nitrobenzene, 81–82
vs. temperature, in chitosan cryogels,
78, 79
gel-point time, acrylamide vs. N,N
00 -
methylene(bis)acrylamide, 82–83
for PVA cryogels, 83–84
solvent–monomers–initiator systems, 82
Belousov–Zhabotinsky (BZ) reaction, 144
Berghmans point, 169, 170
Bioreactors, mammalian cells as, 252–255
SEM pictures, 253, 255
urokinase in situ recovery, 253–254
Biotechnological applications, cryogels
biomolecules chromatography
composite cryogels, bioseparation,
264–265
double polymer networks, 265–266
grafting, 263–264
bioreactors, mammalian cells as, 252–255
SEM pictures, 253, 255
urokinase in situ recovery, 253–254
built from crosslinked cells, 252–254
cell entrapment, 248
immobilized biocatalysts, 249–250
SEM images, 251
chromatographic separation
cells, 255–258
organelles and subcellular particles,
258–260
viruses and phages, 260–263
continuous cell seeding, 252
functionality, 248
housings, 268–269
materials used for, 248
molecularly imprinted polymers, 269–271
endocrine disruptors, 271–274
heavy metal ions, 271
pharmaceuticals and pesticides, 274
proteins separation, 266
environmental pollutants, 267–268
high through-put screening, 267
Bovine serum albumin (BSA), PVA cryogel
rate of, 300
release profiles, 299–301
Serp-1, 301
thawing rate effect, 299
Burst effect, 218
Butyl rubber (PIB), crosslinking reactions of,
110, 111
C
Ca-alginate sponges, 36
Carbon-based particulate materials, 236–237
Carbon cryogels, 4
O. Okay (ed.), Polymeric Cryogels, Advances in Polymer Science 263,
DOI 10.1007/978-3-319-05846-7, © Springer International Publishing Switzerland 2014
323
