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Modulation of genotoxic and related effects by carotenoids and vitamin A in experimental models: mechanistic issues

S De Flora1, M Bagnasco, H Vainio

  • 1Department of Health Sciences, University of Genoa, Italy. sdf@unige.it

Mutagenesis
|May 7, 1999
PubMed

Insights

Carotenoids and vitamin A do not appear genotoxic. They exhibit protective mechanisms against tumor promotion and progression, and modulate genotoxicant effects, suggesting a role in preventing cancer and mutation-related diseases.

Area of Science:

  • Nutritional biochemistry
  • Molecular toxicology
  • Cancer prevention research

Background:

  • Carotenoids and vitamin A are essential nutrients with potential roles in health and disease.
  • Their complex interactions with genotoxic agents and cellular processes are not fully understood.
  • Existing data suggest both protective and potentially harmful effects under specific conditions.

Purpose of the Study:

  • To critically review and synthesize available data on the mechanisms by which carotenoids and vitamin A modulate genotoxic and related effects.
  • To evaluate their direct genotoxic potential and their influence on the effects of known genotoxicants.
  • To elucidate the pathways and cellular targets involved in their biological activities.

Main Methods:

  • A critical review of an ad hoc constructed database of nearly 500 results from experimental models.
  • Analysis of data from 32 related nutrients, including beta-carotene and other carotenoids, and various forms of vitamin A.
  • Evaluation of 67 in vitro and in vivo test systems assessing distinct cellular targets and endpoints.

Main Results:

  • Carotenoids and vitamin A are generally not genotoxic per se and exhibit protective roles, inhibiting N-myc gene expression and up-regulating cell-to-cell communication.
  • They modulate genotoxicants requiring metabolic activation by inhibiting enzymes involved in xenobiotic metabolism (Phase I and II).
  • Additional protective mechanisms include scavenging reactive oxygen species and modulating signal transduction pathways.

Conclusions:

  • Carotenoids and vitamin A exert protective effects via multiple mechanisms, potentially inhibiting cancer initiation and mutation-related diseases.
  • These findings align with observational studies and animal models showing cancer-preventive activity.
  • However, recent clinical trials indicate potential increased lung cancer risk with supplemental use in high-risk individuals, contrasting mechanistic premises.

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