Dominant lethal and heritable translocation tests with chlorambucil and melphalan in male mice

W M Generoso1, K L Witt, K T Cain

  • 1Biology Division, ORNL, Oak Ridge, TN 37831-8077, USA.

Mutation Research
|December 1, 1995
PubMed

Insights

Cancer chemotherapy agents chlorambucil and melphalan are potent mutagens. These chemicals cause reproductive harm and genetic damage, including dominant lethal mutations and heritable translocations in male mice.

Area of Science:

  • Toxicology
  • Genetics
  • Reproductive Biology

Background:

  • Cancer chemotherapy agents can be potent mutagens with demonstrated genetic effects in humans.
  • Increasing numbers of cancer survivors necessitate understanding the reproductive and genetic hazards of these treatments.

Purpose of the Study:

  • To assess the genetic and reproductive hazards of chlorambucil and melphalan in male mice.
  • To evaluate the induction of dominant lethal mutations and heritable translocations by these chemotherapy agents.

Main Methods:

  • Testing chlorambucil and melphalan for dominant lethal mutations and heritable translocations in male mice.
  • Analyzing germ cell stages for cytotoxic effects and genetic damage.

Main Results:

  • Both chlorambucil and melphalan exhibited reproductive effects due to cytotoxicity in specific male germ cell stages.
  • These agents induced dominant lethal mutations and heritable translocations in postmeiotic germ cells, particularly spermatids.

Conclusions:

  • Extensive data now exist for assessing the genetic and reproductive hazards of chlorambucil and melphalan.
  • Therapeutic exposure to these chemotherapy agents poses risks to reproductive health and genetic integrity.