Technological aspects of the formation of a matrix based on polyvinyl alcohol cryogels, its structure, and its physicomechanical and physicochemical properties are presented. The prospects of using the PVA cryogel matrix for the immobilisation of biologically active compounds are discussed.
UkhartsevaI.Yu., The influence of temperature effects on the structure and physicomechanical properties of filled polyvinyl alcohol gels. Plast. Massy, (8): 15–17 (2002).
4.
LozinskiiV.I., Characteristic features of the freezing of polyvinyl alcohol solutions: relationship with the properties of hydrogels produced after defrosting. Kolloidn. Zh., 51(4): 685–690 (1989).
5.
BelyatskayaO.N., The influence of temperature and time effects on the process of modification of polyvinyl alcohol. Plast. Massy, (6): 16–18 (1995).
GuZ.-Q., The development of artificial cartilage – PVA gel. Univ. Sci. Technol. Beijing, 21(1): 40–43 (1999).
8.
NikolaevA.F., and MosyaginaL.P., Polyvinyl alcohol and copolymers of vinyl alcohol in medicine. Plast. Massy, (3): 34–42 (2000).
9.
LozinskiiV.I., Russian Patent 2190644. A composite for the production of polyvinyl alcohol gel and a method for producing the cryogel. MPK C 08 L 29/04 (2002).
10.
UkhartsevaI.Yu., The influence of temperature effects on the structure and physicomechanical properties of filled polyvinyl alcohol gels. Plast. Massy, (8): 15–17 (2002).
11.
KulaginaG.S., The sorption of water by polyvinyl alcohol. Vys. Soed., 49(4): 654–662 (2007).
12.
ChizhikS.A., The complex characterisation of materials by scanning probe microscopy, in Heat and Mass Transfer 2003, A.V. Lykov Institute of Heat and Mass Exchange, National Academy of Sciences of Belarus, Minsk, pp. 226–232 (2003).
UkhartsevaI.Yu., The polarisation characteristics of filled gels based on polyvinyl alcohol. Plast. Massy, (6): 40–42 (1998).
15.
UkhartsevaI.Yu., and TsvetkovaE.A., Filled gels based on water-soluble polymers. 7th European Polymer Federation Symposium on Polymeric Materials, Szczecin, Poland, p. 115 (1998).
16.
BondarenkoP.I., Assessment of the bioactivity of polyvinyl alcohol gels in relation to E. coli test culture ATCC 25922. Mater. Tekhnol. Instrum., 16(1): 78–81 (2011).
17.
Shtil'manM.I., Polymers in biologically active systems. Sorosovsk. Obraz. Zh., (5): 48–53 (1998).
18.
UkhartsevaI.Yu., High-molecular-weight compounds for the immobilisation of biologically active substances. Plast. Massy, (7): 49–55 (2010).
19.
TsvetkovaE.A., and UkhartsevaI.Yu., Aspects of the application of high-molecular-weight compounds of targeted biological action. Plast. Massy, (9): 45–51 (2012).