Cryophylactic Solution Based on Pectic Oligosaccharides for the Creation of New Dosage Forms

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For the first time in a wide temperature range, the rheology of aqueous solutions of oligo-and polysaccharides obtained by the method of combined fractionation from the secondary phytomass of apple pomace and albedo pomelo has been studied. The values of the freezing point have been determined and the possibility of the practical use of oligosaccharides as components of special-purpose preparations in liquid dosage form has been shown. On the basis of oligosaccharides obtained by the method of combined fractionation from the secondary phytomass of apple pomace and albedo pomelo, cryophylactic media have been created for the first time, possessing physicochemical stability in a wide temperature range. The main rheological and temperature characteristics of the obtained compositions have been studied and the possibility of the practical use of oligosaccharides as components of medical preparations for special purposes in liquid dosage form has been shown.

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585-598

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September 2021

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[1] A.Z. Guseinov, S. S. Kireev Fundamentals of infusion therapy. Parenteral and enteral nutrition: Monograph. St. Petersburg-Tula: Publishing house of TulSU, (2014).

Google Scholar

[2] I. Lozinsky Cryogels based on natural and synthetic polymers: preparation, properties and applications, Uspekhi khimii, 71 (6) (2002) 559-585.

Google Scholar

[3] W.E. Hennink, C.F. Nostrum Novel crosslinking methods to design hydrogels. Advanced Drug Delivery Reviews. 54 (2002) 13-36.

DOI: 10.1016/s0169-409x(01)00240-x

Google Scholar

[4] O.E. Filippova Smart, polymer hydrogels. Nature. Chemistry series. 8 (2005) 11-17.

Google Scholar

[5] Khokhlov A.R. Susceptible Gels, Soros Educational Journal. 11 (1998). 138-142.

Google Scholar

[6] S.K.H. Gulrez, G.O. Phillips, S.Al. Assaf Hydrogels: methods of preparation, characterisation and applications in Progress in Molecular and Environmental Bioengineering, From Analysis and Modeling to Technology Applications, Ed. A. Carpi. – Croatia: Rijeka, INTECH Open Access Publisher, (2011).

DOI: 10.5772/24553

Google Scholar

[7] D.A. Slobodova, R.M Gorshkova, et al., Combined Fractionation of Protopectin Degradation Products, Fibre Chemistry, 51 (5) (2020) 333 - 339.

DOI: 10.1007/s10692-020-10107-8

Google Scholar

[8] C Filisetti-cozzi, N.C. Carpita Metod opredeleniya uronovykh kislot bez ucheta neytral'nykh sakharov. Anal. Biochem., (1991).

Google Scholar

[9] C.P. Kelko Determination of DE, Control metod, (2001).

Google Scholar

[10] State Pharmacopoeia of the Russian Federation XIV ed. - OFS 1.2.1.0003.15 Osmolarity,.

Google Scholar

[11] A.M. Belous, V.I. Grishchenko Cryobiology, (1994).

Google Scholar

[12] P.Perel, et al.Colloids versus crystalloids for fluid resuscitation in critically ill patients (Review), Cochrane Database Syst. Rev, 3 (2013) 1-64.

DOI: 10.1002/14651858.cd000567.pub5

Google Scholar

[13] H. Qiu et al., Polyacrylate/(Carboxymethylcellulose Modified Montmorillonite) Superabsorbent Nanocomposite: Preparation and Water Absorbency, J. Applied Polymer Science, 107 (1) (2008) 118–123.

DOI: 10.1002/app.26261

Google Scholar

[14] T.C. Mutter et al., Hydroxyethyl starch (HES) versus other fluid therapies: effects on kidney function, Cochrane Database Syst. Rev, 7 (2013) 1-88.

DOI: 10.1002/14651858.cd007594.pub3

Google Scholar

[15] A. Engert et al., The European hematology association roadmap for european hematol-ogy research: a consensus document, Haematologica, 101 (2) (2016) 115-208.

Google Scholar

[16] E. Gunister et al., Synthesis and characterization of chitosan-MMT biocomposite systems., Carbohydrate Polymers, 67 (3) (2007) 358–365.

DOI: 10.1016/j.carbpol.2006.06.004

Google Scholar

[17] S.V. Zenin The structured state of water as a basis for managing the behavior and safety of living systems: dis. Dr. bio. Sciences., Moscow, (1999).

Google Scholar