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1.
Biomed Khim ; 70(3): 161-167, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38940205

RESUMO

Electrochemical profiling of formaldehyde-inactivated poliovirus particles demonstrated a relationship between the D-antigen concentration and the intensity of the maximum amplitude currents of the poliovirus samples. The resultant signal was therefore identified as electrochemical oxidation of the surface proteins of the poliovirus. Using registration of electrooxidation of amino acid residues of the capsid proteins, a comparative electrochemical analysis of poliovirus particles inactivated by electrons accelerated with doses of 5 kGy, 10 kGy, 15 kGy, 25 kGy, 30 kGy at room temperature was carried out. An increase in the radiation dose was accompanied by an increase in electrooxidation signals. A significant increase in the signals of electrooxidation of poliovirus capsid proteins was detected upon irradiation at doses of 15-30 kGy. The data obtained suggest that the change in the profile and increase in the electrooxidation signals of poliovirus capsid proteins are associated with an increase in the degree of structural reorganization of surface proteins and insufficient preservation of the D-antigen under these conditions of poliovirus inactivation.


Assuntos
Proteínas do Capsídeo , Poliovirus , Poliovirus/efeitos da radiação , Poliovirus/química , Proteínas do Capsídeo/química , Proteínas do Capsídeo/efeitos da radiação , Inativação de Vírus/efeitos da radiação , Oxirredução , Formaldeído/química , Humanos , Vírion/química , Vírion/efeitos da radiação
2.
Biomed Khim ; 69(5): 253-280, 2023 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-37937429

RESUMO

Traditional antiviral vaccines are currently created by inactivating the virus chemically, most often using formaldehyde or ß-propiolactone. These approaches are not optimal since they negatively affect the safety of the antigenic determinants of the inactivated particles and require additional purification stages. The most promising platforms for creating vaccines are based on pseudoviruses, i.e., viruses that have completely preserved the outer shell (capsid), while losing the ability to reproduce owing to the destruction of the genome. The irradiation of viruses with electron beam is the optimal way to create pseudoviral particles. In this review, with the example of the poliovirus, the main algorithms that can be applied to characterize pseudoviral particles functionally and structurally in the process of creating a vaccine preparation are presented. These algorithms are, namely, the analysis of the degree of genome destruction and coimmunogenicity. The structure of the poliovirus and methods of its inactivation are considered. Methods for assessing residual infectivity and immunogenicity are proposed for the functional characterization of pseudoviruses. Genome integrity analysis approaches, atomic force and electron microscopy, surface plasmon resonance, and bioelectrochemical methods are crucial to structural characterization of the pseudovirus particles.


Assuntos
Poliomielite , Poliovirus , Vacinas , Humanos , Poliovirus/genética , Formaldeído , Propiolactona , Poliomielite/prevenção & controle
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