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.

AMB Express
|May 9, 2024
PubMed

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.

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