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Development of amphotropic murine retrovirus vectors resistant to inactivation by human serum

M N Pensiero1, C A Wysocki, K Nader

  • 1Genetic Therapy, Inc., Gaithersburg, MD 20878, USA.

Human Gene Therapy
|June 10, 1996
PubMed

Insights

Amphotropic retrovirus vectors (RV) for gene therapy can be inactivated by human serum. Using human producer cells, like 293, can confer resistance to serum inactivation, improving RV safety for therapeutic applications.

Area of Science:

  • Gene Therapy
  • Virology
  • Immunology

Background:

  • Replication-deficient amphotropic retrovirus vectors (RV) are crucial for human gene therapy.
  • Inactivation by human serum poses a significant challenge for in vivo RV applications.
  • Murine leukemia viruses (MLV) are known to be inactivated by human serum via complement activation.

Purpose of the Study:

  • To investigate whether amphotropic RV can be made resistant to human serum inactivation by using appropriate producer cells.
  • To evaluate the sensitivity of different producer cell lines and their derived RV to human serum.

Main Methods:

  • Retrovirus vectors (RV) were produced using various human (293, HOS, TE671) and murine (NIH-3T3) cell lines.
  • Parental cell lines, RV-producer cells, and RV were tested for sensitivity to human serum inactivation.
  • The role of the amphotropic envelope protein in serum sensitivity was assessed by expressing env in TE671 cells.

Main Results:

  • Murine cell lines (NIH-3T3, PA317) and their derived RV were sensitive to human serum inactivation.
  • Human cell lines (293, HOS) and their derived RV were generally resistant to serum inactivation.
  • TE671-derived RV showed sensitivity to inactivation, despite TE671 cells being resistant, suggesting complex interactions.

Conclusions:

  • The choice of producer cell line significantly impacts the susceptibility of amphotropic RV to human serum inactivation.
  • Utilizing human producer cells, particularly 293, can enhance RV resistance to serum, a critical factor for successful gene therapy.
  • Further research is needed to fully understand the mechanisms underlying serum sensitivity and optimize RV for clinical use.

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