
While it is not yet known what causes autism, researchers believe that a complex interaction between environmental factors and genetics is responsible for the condition. Separating these factors, however, can be a challenge. But a new study may have found a way to isolate genetics from environmental contributors to the disease, allowing researchers to focus on the link between heavy metal levels and autism risk.
According to the latest data from the United States Centers for Disease Control and Prevention (CDC), as many as 1 in 68 children in the United States have autism spectrum disorder (ASD).
A recent study explores a new factor that may contribute to the risk of developing ASD: the concentration of heavy metals in a child’s body.The new research was led by Manish Arora, Ph.D., an environmental scientist and dentist at the Icahn School of Medicine at Mount Sinai in New York City, NY, and the findings were published in the journal Nature Communications.
For instance, such studies have had to approximate the toxic metal exposure based on the metal concentrations in the bloodstream. However, this estimation was done after the children had already been diagnosed with ASD, rather than before.
Additionally, some of these studies were not able to account for genetic factors that may have influenced the results; generally, separating environmental factors from genetic ones in the development of autism is challenging for researchers.
The method used in this new study, however, manages to bypass many of these limitations. By looking at naturally shed baby teeth, the researchers explain, they have access to information that goes as far back as a baby’s prenatal life. And by studying twins, Prof. Arora and colleagues were able to separate genetic influences from environmental ones.
To determine how much metal the babies’ bodies contained before and after birth, the researchers used lasers to analyze the growth rings on the babies’ teeth.Laser technology allowed the scientists to accurately extract specific layers of dentine, which is the substance that lies beneath the tooth enamel.
This correspondence between growth dentine layers, their levels of lead, and the exposure to lead during different developmental stages, has been previously demonstrated by Prof. Arora and team in research they carried out previously.
The researchers looked at the teeth of 32 pairs of twins, as well as separately studying the teeth of 12 individuals from twin pairs.The scientists were able to compare tooth development patterns and metal concentrations in pairs of twins in which only one twin had ASD, in twins that both had the disorder, and in pairs in which neither of the twins had ASD.
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