Evaluating the sensitivity of newborn rats and newborn hamsters to oncogenic DNA

Li Sheng-Fowler1, Wei Tu1, Kathryn Phy1

  • 1Division of Viral Products, Office of Vaccines Research and Review, Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, MD, 20993, USA.

Insights

This study found that current in vivo models are not sensitive enough to detect oncogenic DNA in vaccines. Researchers tested newborn rats and hamsters, but neither animal model could reliably detect tumor-causing DNA from cell lines.

Area of Science:

  • Biotechnology
  • Oncology
  • Vaccine Development

Background:

  • Vaccines are increasingly manufactured using tumorigenic cell lines, raising concerns about residual cellular DNA.
  • Assessing the oncogenic potential of this residual DNA is crucial for vaccine safety.

Purpose of the Study:

  • To establish and evaluate in vivo assays for quantifying the oncogenic activity of DNA from tumorigenic cell lines.
  • To determine the sensitivity of newborn rats and hamsters to tumor induction by oncogene-expressing DNA.

Main Methods:

  • Generated three oncogene-expression plasmids: pMSV-T24-H-ras (H-ras), pMSV-c-myc (c-myc), and a combined plasmid.
  • Induced tumors in mice using these plasmids.
  • Inoculated newborn hamsters and rats with varying doses of the combined plasmid and single-oncogene plasmids to assess tumor induction and sensitivity.

Main Results:

  • Newborn rats demonstrated higher sensitivity to tumor induction than newborn hamsters.
  • Activated H-ras oncogene induced tumors in both rodent species, whereas c-myc alone did not.
  • DNA from cell lines derived from induced tumors failed to induce tumors in newborn rats, indicating insufficient assay sensitivity.

Conclusions:

  • Available in vivo models lack the sensitivity to detect the oncogenicity of residual cellular DNA in vaccines.
  • Further development of more sensitive assays is required to ensure vaccine safety regarding tumorigenic cell line-derived DNA.