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Essential and Toxic Elements in Infant Cereal in Brazil: Exposure Risk Assessment
Michele C Toledo1, Janice S Lee2, Bruno Lemos Batista3
1School of Public Health, University of São Paulo, São Paulo 01246-904, SP, Brazil.
Insights
Infant cereals in Brazil pose health risks due to toxic and essential elements. Rice cereal, high in arsenic, presents the greatest cancer risk, with all samples exceeding safe levels for at least one element.
Area of Science:
- Environmental Health
- Food Safety
- Toxicology
Background:
- Infant cereals are among the first solid foods introduced to infants.
- Concerns exist regarding toxic and excess essential elements in infant cereals.
- Rice cereal is a popular choice but often contains high levels of inorganic arsenic.
Purpose of the Study:
- To evaluate cancer and non-cancer risks from essential and toxic elements in Brazilian infant cereals.
- To identify specific elements contributing to these risks.
- To inform public health policies for risk management.
Main Methods:
- Analysis of 18 infant cereal samples from Brazil.
- Estimation of incremental lifetime cancer risks.
- Calculation of non-cancer hazard quotients (HQs) for various elements including arsenic, cadmium, zinc, and others.
Main Results:
- Rice cereal showed the highest cancer risk, primarily due to inorganic arsenic.
- All analyzed infant cereals had at least one element with an HQ > 1.
- Zinc and cadmium frequently exceeded safe levels (HQ > 1).
Conclusions:
- Infant cereal consumption in Brazil is associated with potential cancer and non-cancer risks.
- Reducing toxic and excess essential elements is crucial for mitigating these risks.
- Public policies are recommended to manage risks associated with elements in infant cereals.
Abstract:
Infant cereals, one of the first solid foods introduced to infants, have been reported to pose risks to human health because they contain toxic elements and an excess of essential elements. The objective of this study was to assess the cancer and non-cancer risk of exposure to essential and toxic elements in infant cereal in Brazil. In our analyses, we included data from 18 samples of infant cereals made from different raw materials and estimated the incremental lifetime cancer risks and non-cancer hazard quotients (HQs) for their consumption. Rice cereal is particularly concerning because it is immensely popular and usually contains high levels of inorganic arsenic. In addition to arsenic, we assessed aluminum, boron, barium, cadmium, chromium, copper, lead, manganese, nickel, selenium, silver, strontium, and zinc. The cancer risk was highest for rice cereal, which was also found to have an HQ > 1 for most of the tested elements. Inorganic As was the element associated with the highest cancer risk in infant cereal. All of the infant cereals included in this research contained at least one element with an HQ > 1. The essential and non-essential elements that presented HQ > 1 more frequently were zinc and cadmium, respectively. The cancer and non-cancer risks could potentially be decreased by reducing the amount of toxic and essential elements (when in excess), and public policies could have a positive influence on risk management in this complex scenario.
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