Study of interaction of polystyrene sulfonate with polymerization degree of 8 and polyallylamine with bilayer lipids membranes
Identifieur interne : 000682 ( Istex/Corpus ); précédent : 000681; suivant : 000683Study of interaction of polystyrene sulfonate with polymerization degree of 8 and polyallylamine with bilayer lipids membranes
Auteurs : S. V. Artyushenko ; N. A. Kontarov ; N. V. YuminovaSource :
- Biophysics [ 0006-3509 ] ; 2012-03-01.
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Abstract
Abstract: Interaction of polystyrene sulfonate (polymerization degree of 8, PSS-8) and polyallylamine (PAA, mol. mass 60 kDa) with viruses of the para- and orthomyxovirus family (on the examples of measles, parotiditis, and influenza viruses) suppresses their infectivity. The possible mechanism of virus-inhibiting action of these chemical compounds is damaging of interfacial antigenic proteins of para- and orthomyxoviruses. In this study we detected the change of surface tension of bilayer lipid membrane in the presence of PSS-8 and PAA. This process could lead to impairment of fusion and self-assembly of virions.
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DOI: 10.1134/S0006350912020029
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<front><div type="abstract" xml:lang="en">Abstract: Interaction of polystyrene sulfonate (polymerization degree of 8, PSS-8) and polyallylamine (PAA, mol. mass 60 kDa) with viruses of the para- and orthomyxovirus family (on the examples of measles, parotiditis, and influenza viruses) suppresses their infectivity. The possible mechanism of virus-inhibiting action of these chemical compounds is damaging of interfacial antigenic proteins of para- and orthomyxoviruses. In this study we detected the change of surface tension of bilayer lipid membrane in the presence of PSS-8 and PAA. This process could lead to impairment of fusion and self-assembly of virions.</div>
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<abstract lang="en">Abstract: Interaction of polystyrene sulfonate (polymerization degree of 8, PSS-8) and polyallylamine (PAA, mol. mass 60 kDa) with viruses of the para- and orthomyxovirus family (on the examples of measles, parotiditis, and influenza viruses) suppresses their infectivity. The possible mechanism of virus-inhibiting action of these chemical compounds is damaging of interfacial antigenic proteins of para- and orthomyxoviruses. In this study we detected the change of surface tension of bilayer lipid membrane in the presence of PSS-8 and PAA. This process could lead to impairment of fusion and self-assembly of virions.</abstract>
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