Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human Rhinoviruses

Picornaviridae represent a very large family of small RNA viruses, some of which are the cause of important human and animal diseases. Since no specific therapy against any of these viruses currently exists, palliative symptomatic treatments are employed. The early steps of the picornavirus replicat...

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Main Authors: Raffaello Pompei, Samuela Laconi, Maria A. Madeddu
Format: Article
Language:English
Published: MDPI AG 2011-04-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/16/5/3479/
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spelling doaj-19b81485f3504e5db5945a25c2d88bb02020-11-24T23:56:17ZengMDPI AGMolecules1420-30492011-04-011653479348710.3390/molecules16053479Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human RhinovirusesRaffaello PompeiSamuela LaconiMaria A. MadedduPicornaviridae represent a very large family of small RNA viruses, some of which are the cause of important human and animal diseases. Since no specific therapy against any of these viruses currently exists, palliative symptomatic treatments are employed. The early steps of the picornavirus replicative cycle seem to be privileged targets for some antiviral compounds like disoxaril and pirodavir. Pirodavir’s main weakness is its cytotoxicity on cell cultures at relatively low doses. In this work some original synthetic compounds were tested, in order to find less toxic compounds with an improved protection index (PI) on infected cells. Using an amino group to substitute the oxygen atom in the central chain, such as that in the control molecule pirodavir, resulted in decreased activity against Rhinoviruses and Polioviruses. The presence of an -ethoxy-propoxy- group in the central chain (as in compound I-6602) resulted in decreased cell toxicity and in improved anti-Rhinovirus activity. This compound actually showed a PI >700 on HRV14, while pirodavir had a PI of 250. These results demonstrate that modification of pirodavir’s central hydrocarbon chain can lead to the production of novel derivatives with low cytotoxicity and improved PI against some strains of Rhinoviruses.http://www.mdpi.com/1420-3049/16/5/3479/antiviralsrhinovirusespirodavir
collection DOAJ
language English
format Article
sources DOAJ
author Raffaello Pompei
Samuela Laconi
Maria A. Madeddu
spellingShingle Raffaello Pompei
Samuela Laconi
Maria A. Madeddu
Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human Rhinoviruses
Molecules
antivirals
rhinoviruses
pirodavir
author_facet Raffaello Pompei
Samuela Laconi
Maria A. Madeddu
author_sort Raffaello Pompei
title Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human Rhinoviruses
title_short Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human Rhinoviruses
title_full Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human Rhinoviruses
title_fullStr Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human Rhinoviruses
title_full_unstemmed Study of the Biological Activity of Novel Synthetic Compounds with Antiviral Properties against Human Rhinoviruses
title_sort study of the biological activity of novel synthetic compounds with antiviral properties against human rhinoviruses
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2011-04-01
description Picornaviridae represent a very large family of small RNA viruses, some of which are the cause of important human and animal diseases. Since no specific therapy against any of these viruses currently exists, palliative symptomatic treatments are employed. The early steps of the picornavirus replicative cycle seem to be privileged targets for some antiviral compounds like disoxaril and pirodavir. Pirodavir’s main weakness is its cytotoxicity on cell cultures at relatively low doses. In this work some original synthetic compounds were tested, in order to find less toxic compounds with an improved protection index (PI) on infected cells. Using an amino group to substitute the oxygen atom in the central chain, such as that in the control molecule pirodavir, resulted in decreased activity against Rhinoviruses and Polioviruses. The presence of an -ethoxy-propoxy- group in the central chain (as in compound I-6602) resulted in decreased cell toxicity and in improved anti-Rhinovirus activity. This compound actually showed a PI >700 on HRV14, while pirodavir had a PI of 250. These results demonstrate that modification of pirodavir’s central hydrocarbon chain can lead to the production of novel derivatives with low cytotoxicity and improved PI against some strains of Rhinoviruses.
topic antivirals
rhinoviruses
pirodavir
url http://www.mdpi.com/1420-3049/16/5/3479/
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