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  4. Attenuated reovirus displays oncolysis with reduced host toxicity
 
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2011
Journal Article
Title

Attenuated reovirus displays oncolysis with reduced host toxicity

Abstract
Background: Although the naturally occurring reovirus causes only mild symptoms in humans, it shows considerable potential as an oncolytic agent because of its innate ability to target cancer cells. In immunocompromised hosts, however, wild-type reovirus can target healthy tissues, including heart, liver, pancreas and neural structures. Methods: We characterized an attenuated form of reovirus (AV) derived from a persistently infected cell line through sequence analysis, as well as western blot and in vitro transcription and translation techniques. To examine its pathogenesis and oncolytic potential, AV reovirus was tested on healthy embryonic stem cells, various non-transformed and transformed cell lines, and in severe combined immunodeficiency (SCID) mice with tumour xenografts. Results: Sequence analysis of AV reovirus revealed a premature STOP codon in its sigma 1 attachment protein. Western blot and in vitro translation confirmed the presence of a truncated ?1. In comparison to wild-type reovirus, AV reovirus did not kill healthy stem cells or induce black tail formation in SCID mice. However, it did retain its ability to target cancer cells and reduce tumour size. Conclusion: Despite containing a truncated attachment protein, AV reovirus still preferentially targets cancer cells, and compared with wild-type reovirus it shows reduced toxicity when administered to immunodeficient hosts, suggesting the potential use of AV reovirus in combination cancer therapy.
Author(s)
Kim, Mimi
University of Calgary
Garant, Katy A.
Dalhousie University Halifax
Nieden, Nicole zur
Fraunhofer-Institut für Zelltherapie und Immunologie IZI  
Alain, Tommy
University of Calgary
Loken, Steven D.
University of Calgary
Urbanski, Stefan J.
University of Calgary
Forsyth, Peter A.
University of Calgary
Rancourt, Derrick
University of Calgary
Lee, Patrick W.
Dalhousie University Halifax
Johnston, Randal N.
University of Calgary
Journal
The British journal of cancer  
Open Access
DOI
10.1038/sj.bjc.6606053
Language
English
Fraunhofer-Institut für Zelltherapie und Immunologie IZI  
Keyword(s)
  • mammalian reovirus

  • attenuated

  • persistent infection

  • oncolysis

  • reduced toxicity

  • sigma1

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