Systemic toxicity evaluation of novel tobacco products in Caenorhabditis elegans

Haiqing Cai1, Yilu Xu2, Shen Tang3

  • 1The Fourth People's Hospital of Nanning, Nanning, HIV/AIDS Clinical Treatment Center of Guangxi, 530023, China.

Insights

Novel tobacco products, including e-cigarettes and snus, show adverse effects on Caenorhabditis elegans, causing toxicity, reduced movement, and developmental issues. Oxidative stress appears to be a primary mechanism driving these harmful impacts.

Area of Science:

  • Toxicology
  • Nematology
  • Biomedical Science

Background:

  • Novel tobacco products (NTPs) are emerging alternatives to traditional tobacco, with limited understanding of their toxicological profiles.
  • Assessing the safety of NTPs is crucial due to their increasing market presence and potential health implications.

Purpose of the Study:

  • To investigate the adverse effects of various novel tobacco products on the model organism Caenorhabditis elegans (C. elegans).
  • To provide foundational data for the toxicity assessment and risk evaluation of novel tobacco products.

Main Methods:

  • C. elegans (L4 stage) were exposed to electronic cigarette liquid (e-liquid), e-cigarette aerosol extract (e-aerosol), and two flavors of snus (mint and black tea).
  • Toxicological endpoints measured included acute toxicity (LC50), locomotion behavior, body length, reproductive performance, development, lifespan, and oxidative stress (DAF-16 redistribution).

Main Results:

  • Acute toxicity varied, with e-liquid and e-aerosol showing higher toxicity than snus.
  • All tested NTPs impaired nematode locomotion and reproduction, with snus exhibiting more pronounced effects.
  • NTPs caused developmental retardation and, at higher concentrations (20% lethal rate), snus shortened C. elegans lifespan.
  • Oxidative stress was induced by all NTPs, indicated by DAF-16 redistribution, particularly in snus-exposed worms.

Conclusions:

  • Novel tobacco products induce multiple adverse effects in C. elegans, including acute toxicity, behavioral impairment, and reduced lifespan.
  • The observed toxicity is dependent on the type and concentration of the tobacco product.
  • Oxidative stress is a key mechanism underlying the toxicity of novel tobacco products in C. elegans.

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