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1Professor Emeritus, Faculty of Health Sciences, Universidade de Brasília, 70919-970, Brasília, DF, Brazil. jg.dorea@gmail.com.
Insights
Thimerosal-containing vaccines (TCVs) pose unnecessary ethylmercury (EtHg) risks to developing brains in less developed countries. Thimerosal-free vaccines reduce risks like contact dermatitis and tic disorders, offering a safer alternative for pediatric immunization.
Area of Science:
- Pediatric medicine
- Toxicology
- Neuroscience
Background:
- Pediatric immunization is crucial for preventing infectious diseases.
- Thimerosal-containing vaccines (TCVs) are still used in less developed countries, exposing infants and pregnant mothers to ethylmercury (EtHg).
- Developed nations have largely transitioned to Thimerosal-free vaccines due to toxicity concerns.
Purpose of the Study:
- To evaluate the risks and benefits associated with Thimerosal-containing vaccines (TCVs) versus Thimerosal-free vaccines.
- To assess the impact of ethylmercury (EtHg) exposure from TCVs on neurodevelopment and other adverse effects.
Main Methods:
- Comparative analysis of adverse effect profiles between TCVs and Thimerosal-free vaccines.
- Review of studies examining the association between Thimerosal exposure and neurodevelopmental outcomes, including tic disorders.
- Consideration of combined exposure to organic mercury compounds.
Main Results:
- TCVs are associated with an increased risk of tic disorders and potential negative impacts on neurobehavioral tests.
- Thimerosal-free vaccines show a decrease in adverse effects like contact dermatitis.
- Ethylmercury (EtHg) exposure from TCVs during early development is a significant risk factor.
Conclusions:
- The continued use of pediatric TCVs in less developed countries presents an unjustifiable risk of EtHg exposure and neurotoxicity.
- Thimerosal-free vaccines offer measurable benefits, including a reduced risk of tic disorders compared to TCVs.
Abstract:
Pediatric immunization is essential to prevent, control and eradicate children`s infectious diseases. Newborns and infants in less developed countries have a concentrated schedule of Thimerosal-containing vaccines (TCVs); pregnant mothers are also immunized with TCVs. Metabolic changes during early development are demonstrably an important risk factor for ethylmercury (EtHg) effects on neurodevelopment, while exposure to Thimerosal sensitizes susceptible individuals to life-long contact dermatitis. Concerns regarding toxicity of Hg have moved rich nations to withdraw it from medicines and, in particular, Thimerosal from pediatric vaccines; it has been more than 20 years since rich countries started using Thimerosal-free vaccines. TCVs and Thimerosal-free vaccines show dissimilar profiles of adverse effects. Thimerosal-free vaccines have shown a decrease in contact dermatitis, while TCVs showed a significant association with increased risk of tic disorders; in some circumstances, EtHg in combination with other neurotoxic substances negatively impacted neurobehavioral tests. In studies that explored vaccines and risk of tics, Thimerosal was a necessary factor. However, when the binary exposure to organic Hg forms (TCV-EtHg and fish-MeHg) was considered, effects on neurobehavioral tests were inconsistent.
Conclusions:
(a) The indiscriminate use of pediatric-TCVs in less developed countries carries an unjustifiable and excessive EtHg exposure with an unnecessary risk of neurotoxicity to the developing brain; (b) measurable benefits (of Thimerosal-free) and measurable risks of tic disorders have been associated with the (Thimerosal-containing) type of vaccine;
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