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Experimental Protocol for Examining Behavioral Response Profiles in Larval Fish: Application to the Neuro-stimulant Caffeine
Published on: July 24, 2018
Movement disorder and neuromuscular change in zebrafish embryos after exposure to caffeine
Yau-Hung Chen1, Yi-Hui Huang, Chi-Chung Wen
1Graduate Institute of Life Sciences, Tamkang University, No. 151 Ying-chuan Road, Tamsui, Taipei County, Taiwan. yauhung@mail.tku.edu.tw
Abstract:
Though caffeine is broadly distributed in many plants and foods, little is known about the teratogenic effects of caffeine during early embryonic development. Here, we used zebrafish as a model to test toxicity and teratogenicity since they have transparent eggs, making the organogenesis of zebrafish embryos easier to observe. When the exposure doses of caffeine were less than 150 ppm (17.5, 35, 50, 100 and 150 ppm), the zebrafish embryos exhibited no significant differences in survival rates after comparison with vehicle-control (0 ppm) group. As the exposure dosages increased, the survival rates decreased. No embryos survived after treatment with 300 ppm caffeine or higher dosages. The most evident change in embryos treated with caffeine was a shorter body length (vehicle-control: 3.26+/-0.01 mm, n=49; vs 150 ppm of caffeine: 2.67+/-0.03 mm, n=50). In addition, caffeine-treated embryos exhibited significantly reduced tactile sensitivity frequencies of touch-induced movement (vehicle-control: 9.93+/-0.77 vs 17.5-150 ppm caffeine: 5.37+/-0.52-0.10+/-0.06). Subtle changes are easily observed by staining with specific monoclonal antibodies F59, Znp1 and Zn5 to detect morphological changes in muscle fibers, primary motor axons and secondary motor axon projections, respectively. Our data show that the treatment of caffeine leads to misalignment of muscle fibers and motor neuron defects, especially secondary motor neuron axonal growth defects.
Insights
Caffeine exposure during early development causes significant teratogenic effects in zebrafish embryos, including reduced body length and motor neuron defects. Higher doses of caffeine led to decreased survival rates, with no embryos surviving at 300 ppm.
Area of Science:
- Developmental biology
- Toxicology
- Neuroscience
Background:
- Caffeine is a widely consumed substance with largely unknown teratogenic effects on early embryonic development.
- Zebrafish embryos offer a transparent model for observing organogenesis and developmental toxicity.
Purpose of the Study:
- To investigate the teratogenic effects of caffeine on zebrafish embryos during early development.
- To determine dose-dependent toxicity and identify specific morphological and functional defects induced by caffeine.
Main Methods:
- Zebrafish embryos were exposed to varying concentrations of caffeine (17.5-300 ppm).
- Survival rates, body length, and tactile sensitivity were assessed.
- Monoclonal antibodies (F59, Znp1, Zn5) were used to detect muscle fiber and motor neuron morphology.
Main Results:
- Caffeine exposure reduced survival rates, with no survival above 300 ppm.
- Caffeine-treated embryos showed significantly shorter body length and reduced tactile sensitivity.
- Defects in muscle fiber alignment and motor neuron development, particularly secondary motor axon growth, were observed.
Conclusions:
- Caffeine exhibits dose-dependent teratogenic effects on zebrafish embryonic development.
- Caffeine exposure disrupts normal muscle and motor neuron development, impacting embryonic growth and function.
- Zebrafish serve as a valuable model for studying caffeine's developmental toxicity.

