Preview

Problems of Particularly Dangerous Infections

Advanced search

Prospective Sorption Matrices for Antitoxic Cholera Enterosorbent Constructing

https://doi.org/10.21055/0370-1069-2013-2-66-69

Abstract

Demonstrated is the possibility of constructing of oral anti-cholera preparations based on sorption matrices with immobilized specific ligand. Various enterosorbents (activated charcoal, polysorb, polyfepan, and chitosan) have been used as sorption matrices, cholera antitoxic immunoglobulins (ATIg) – as specific ligands. Toxin-neutralizing activity of the ATIg immobilized on polysorb has been observed
in vivo in 1:64000 dilutions and that of ATIg immobilized on activated charcoal, polyfepan, and chitosan – in 1:32000. Their specific activity
in vitro has been defined in dot-blot immunoassay in 1:10000 and 1:5000 dilutions, respectively. High toxin-neutralizing activity, as well as specific one has proved the suitability of all tested matrices for antitoxic cholera enterosorbents constructing. However, polysorb and chitosan are accepted to be the most prospective matrices in view of the studied characteristics and properties. To stabilize the properties of the obtained experimental prototype sorbents, AT/Ig-polysorb and AT/Ig-chitosan, applied has been the method of liophilisation with glycocol stabilizer. Dried samples retain their original biological properties.

About the Authors

T. V. Alenkina
Russian Research Anti-Plague Institute “Microbe”
Russian Federation


M. V. Ovchinnikova
Russian Research Anti-Plague Institute “Microbe”
Russian Federation


M. N. Kireev
Russian Research Anti-Plague Institute “Microbe”
Russian Federation


A. K. Nikiforov
Russian Research Anti-Plague Institute “Microbe”
Russian Federation


References

1. Bakalinskaya O.N., Koval’ N.M., Kartel’ N.T. [Obtainment of carbon-based sorbents with bio-specific activity]. Efferentnaya Terapiya. 2003; 9(2):16–22.

2. Belyakov N.A., Solomennikov A.V. [Enterosorption – a mechanism of the curative action]. Efferentnaya Terapiya. 1997; 3(2):15–8.

3. Bol’shakov I.N., Nasibov S.M., Kuklin E.Yu., Prokhod’ko A.A. [Application of chitosan and its products in case of inflammatory gastrointestinal tract diseases]. In: [Chitine and Chitosan. Obtainment, Properties, and Application]. M.: Nauka; 2002. P. 280–301.

4. Gamzazade A.I., Nasibov S.M., Nikitin L.N. [Chitosan modification using carbon dioxide]. Sverkhkritich. Flyuidy: Teoriya i Praktika. 2006; 1(2):60–8.

5. Zubareva A.A., Kurek D.V., Sizova S.V., Svirshchevskaya E.V., Varlamov V.P. [Specification of physical-chemical characteristics of the modified chitosan nanoparticles]. Rossiyskie Tekhnologii. 2012; 7(7–8): 102–6.

6. Nikolaev V.G. [Enterosorption: current state of the issue and prospective]. Vestnik Probl. Biol. Med. 2007; 4:7–17.

7. Severin S.E., Solov’eva A.G., editors. [Practice Guidelines on Biochemistry: Tutorial. 2-nd Edition]. M.: MSU Publishing House; 1989. P. 83–4.

8. Sundukov A.V., Alikeeva G.K., Kozhevnikova G.M., Yushchuk N.D., Safiulina N.Kh. [Cholera]. Lechashchiy Vrach. 2011; 10:50–4.

9. Tokmalaev A.K. [Application of enterosorbents for treating acute intestinal infections]. Lechashchiy Vrach. 2011; 5:12–8.

10. Yushchuk N.D., Rozenblyum A.Yu. [Gastrointestinal tract disorder syndrome in case of infectious diseases]. In: [Infectious Diseases: National Guidelines]. M.: GEOTAR-Media; 2007. P. 276–82.


Review

For citations:


Alenkina T.V., Ovchinnikova M.V., Kireev M.N., Nikiforov A.K. Prospective Sorption Matrices for Antitoxic Cholera Enterosorbent Constructing. Problems of Particularly Dangerous Infections. 2013;(2):66-69. (In Russ.) https://doi.org/10.21055/0370-1069-2013-2-66-69

Views: 665


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0370-1069 (Print)
ISSN 2658-719X (Online)