Paratransgenic Control of Vector Borne Diseases

<p>Conventional methodologies to control vector borne diseases with chemical pesticides are often associated with environmental toxicity, adverse effects on human health and the emergence of insect resistance. In the paratransgenic strategy, symbiotic or commensal microbes of host insects are...

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Main Author: Ivy Hurwitz, Annabeth Fieck, Amber Read, Heidi Hillesland, Nichole Klein, Angray Kang, Ravi Durvasula
Format: Article
Language:English
Published: Ivyspring International Publisher 2011-01-01
Series:International Journal of Biological Sciences
Online Access:http://www.biolsci.org/v07p1334.htm
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spelling doaj-383549f7e3214e0595f9719d123bd07e2020-11-24T23:34:03ZengIvyspring International PublisherInternational Journal of Biological Sciences1449-22882011-01-017913341344Paratransgenic Control of Vector Borne DiseasesIvy Hurwitz, Annabeth Fieck, Amber Read, Heidi Hillesland, Nichole Klein, Angray Kang, Ravi Durvasula<p>Conventional methodologies to control vector borne diseases with chemical pesticides are often associated with environmental toxicity, adverse effects on human health and the emergence of insect resistance. In the paratransgenic strategy, symbiotic or commensal microbes of host insects are transformed to express gene products that interfere with pathogen transmission. These genetically altered microbes are re-introduced back to the insect where expression of the engineered molecules decreases the host's ability to transmit the pathogen. We have successfully utilized this strategy to reduce carriage rates of <i>Trypanosoma cruzi,</i> the causative agent of Chagas disease, in the triatomine bug, <i>Rhodnius prolixus</i>, and are currently developing this methodology to control the transmission of <i>Leishmania donovani</i> by the sand fly <i>Phlebotomus argentipes</i>. Several effector molecules, including antimicrobial peptides and highly specific single chain antibodies, are currently being explored for their anti-parasite activities in these two systems. In preparation for eventual field use, we are actively engaged in risk assessment studies addressing the issue of horizontal gene transfer from the modified bacteria to environmental microbes.</p>http://www.biolsci.org/v07p1334.htm
collection DOAJ
language English
format Article
sources DOAJ
author Ivy Hurwitz, Annabeth Fieck, Amber Read, Heidi Hillesland, Nichole Klein, Angray Kang, Ravi Durvasula
spellingShingle Ivy Hurwitz, Annabeth Fieck, Amber Read, Heidi Hillesland, Nichole Klein, Angray Kang, Ravi Durvasula
Paratransgenic Control of Vector Borne Diseases
International Journal of Biological Sciences
author_facet Ivy Hurwitz, Annabeth Fieck, Amber Read, Heidi Hillesland, Nichole Klein, Angray Kang, Ravi Durvasula
author_sort Ivy Hurwitz, Annabeth Fieck, Amber Read, Heidi Hillesland, Nichole Klein, Angray Kang, Ravi Durvasula
title Paratransgenic Control of Vector Borne Diseases
title_short Paratransgenic Control of Vector Borne Diseases
title_full Paratransgenic Control of Vector Borne Diseases
title_fullStr Paratransgenic Control of Vector Borne Diseases
title_full_unstemmed Paratransgenic Control of Vector Borne Diseases
title_sort paratransgenic control of vector borne diseases
publisher Ivyspring International Publisher
series International Journal of Biological Sciences
issn 1449-2288
publishDate 2011-01-01
description <p>Conventional methodologies to control vector borne diseases with chemical pesticides are often associated with environmental toxicity, adverse effects on human health and the emergence of insect resistance. In the paratransgenic strategy, symbiotic or commensal microbes of host insects are transformed to express gene products that interfere with pathogen transmission. These genetically altered microbes are re-introduced back to the insect where expression of the engineered molecules decreases the host's ability to transmit the pathogen. We have successfully utilized this strategy to reduce carriage rates of <i>Trypanosoma cruzi,</i> the causative agent of Chagas disease, in the triatomine bug, <i>Rhodnius prolixus</i>, and are currently developing this methodology to control the transmission of <i>Leishmania donovani</i> by the sand fly <i>Phlebotomus argentipes</i>. Several effector molecules, including antimicrobial peptides and highly specific single chain antibodies, are currently being explored for their anti-parasite activities in these two systems. In preparation for eventual field use, we are actively engaged in risk assessment studies addressing the issue of horizontal gene transfer from the modified bacteria to environmental microbes.</p>
url http://www.biolsci.org/v07p1334.htm
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