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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Exploiting non-permissive CHO cells as a rapid and efficient method for recombinant HSV-1 isolation
Mishar Kelishadi1, Hosein Shahsavarani2,3,4, Alijan Tabarraei5,6
1Department of Molecular Virology, Pasture Institute of Iran, Tehran, Iran.
Abstract:
Using herpes simplex virus type 1 (HSV-1) as a therapeutic tool has recently emerged as a promising strategy for enhancing the treatment of various cancers, particularly those associated with the nervous system, which is the virus's natural site of infection. These viruses are specifically engineered to infect and eradicate tumor cells while leaving healthy cells unharmed. To introduce targeted mutations in specific viral genes, gene-modification techniques such as shuttle vector homologous recombination are commonly employed. Plaque purification is then utilized to select and purify the recombinant virus from the parental viruses. However, plaque purification becomes problematic when the insertion of the desired gene at the target site hampers progeny virus replication, resulting in a lower titer of cell-released virus than the parental virus. This necessitates a laborious initial screening process using approximately 10-15 tissue culture dishes (10 cm), making plaque purification time-consuming and demanding. Although the recently developed CRISPR-Cas9 system significantly enhances the efficiency of homologous integration and editing precision in viral genes, the purification of recombinant variants remains a tedious task. In this study, we propose a rapid and innovative method that employs non-permissive Chinese hamster ovary (CHO) cells, representing a remarkable improvement over the aforementioned arduous process. With this approach, only 1-2 rounds of plaque purification are required. Our proposed protocol demonstrates great potential as a viable alternative to current methods for isolating and purifying recombinant HSV-1 variants expressing fluorescent reporter genes using CHO cells and plaque assays.
Insights
Researchers developed a faster method to purify modified herpes simplex virus type 1 (HSV-1) for cancer therapy. Using non-permissive Chinese hamster ovary (CHO) cells simplifies the purification of engineered oncolytic viruses, reducing time and effort.
Area of Science:
- Oncolytic virotherapy
- Molecular virology
- Gene editing
Background:
- Herpes simplex virus type 1 (HSV-1) is engineered as an oncolytic virus for cancer treatment, particularly for nervous system tumors.
- Current methods for purifying recombinant HSV-1, such as plaque purification, are laborious and time-consuming due to low viral titers.
- CRISPR-Cas9 enhances gene editing efficiency but purification challenges persist.
Purpose of the Study:
- To develop a rapid and efficient method for isolating and purifying recombinant HSV-1 variants.
- To overcome the limitations of traditional plaque purification for engineered oncolytic viruses.
Main Methods:
- Utilized non-permissive Chinese hamster ovary (CHO) cells for plaque assays.
- Employed plaque purification on CHO cells to isolate recombinant HSV-1.
- Assessed the efficiency of the method for purifying variants expressing fluorescent reporter genes.
Main Results:
- The proposed method significantly reduces the number of plaque purification rounds required (1-2 rounds).
- This approach streamlines the isolation of recombinant HSV-1 variants.
- The protocol is effective for purifying engineered HSV-1 expressing reporter genes.
Conclusions:
- Non-permissive CHO cells offer a viable and improved alternative for purifying recombinant HSV-1.
- The developed method represents a significant advancement over traditional, laborious purification techniques.
- This protocol has the potential to accelerate the development and application of oncolytic HSV-1 therapies.

