Poly(vinyl alcohol-co-vinyl acetate) Glutaraldehyde
Water–HCl
solutions
À12 to
À18
Preparation and study of physicochemical properties and
macroporous morphology of
resulting cryogels
[91, 198]
Poly(vinyl alcohol-co-vinyl acetate) + particles of activated
carbon
À12
Preparation and study of carbon-filled
cryogels
[199, 200]
Poly(acrylamide)
Glutaraldehyde
Water-alkaline
solutions
À5 to
À20
Preparation and study of physicochemical properties and
macroporous morphology of
resulting cryogels
[176, 201]
Chitosan + ovalbumin
Glutaraldehyde
Aqueous acetic acid
À18
Preparation of cryogel matrices for
enzyme immobilization
[202]
Chitosan + gelatine
Glutaraldehyde
Aqueous acetic acid
À12
Preparation and study of physicochemical properties of resulting
cryogels
[203]
Chitosan + gelatine + hydroxyapatite
À20
Preparation and study of macroporous
scaffolds for tissue engineering
aims
[204]
Chitosan + agarose
Glutaraldehyde
Aqueous acetic acid
À20
Preparation of macroporous chromatographic matrices
[205]
Chitosan + gelatine + polypyrrole
À12
Synthesis and study of
electroconducting cryogel
matrices
[206]
Desoxyribonucleic acid
Ethylene glycol
diglycidyl ether
Water–alkaline
solution
À18
Preparation of DNA-cryogels, study
of their properties, microstructure,
and functional activities
[207–209]
Heparin + NH
2 -end 4-arm star poly
(ethylene glycol)
Water-soluble
carbodiimide +
hydroxysulfosuccineimide
Water
À20
Preparation and study of wide pore
scaffolds for cell culture
[210]
(continued)
A Brief History of Polymeric Cryogels
19
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