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8.4: Multiplicative Interaction

  • Page ID
    309701
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    Risk assessment approaches, as explained in the previous page, assume that exposures are isolated events. Therefore, when multiple exposure types are present, the assumption is that the total impact is simply the sum of their individual effects. Growing evidence shows that when exposures interact, the resulting overall impact is often much higher than predicted by just adding their separate effects; this is called multiplicative interaction. 

    An example of multiplicative interaction in public health is the interaction between radon and cigarette smoke. Together, radon gas in households of smokers significantly amplifies lung cancer risk, meaning the combined risk is greater than the sum of individual risks. This occurs because cigarette smoke can promote the growth of radon-initiated cells (cells that have undergone malignant transformation due to damage from radon gas decay products), making them more susceptible to the harmful effects of both exposures. Radon is the second leading cause of lung cancer overall, and the leading cause in non-smokers, but the risk for smokers exposed to radon is dramatically higher. For example, at a radon level of 4 pCi/L, the lifetime risk of lung cancer is about 7 in 1,000 for non-smokers but rises to 62 in 1,000 for ever-smokers, according to EPA estimates (Lanz, Mendez, & Philbert, 2013; Vanderweele & Knol, 2014). 

     

    Reference

    Lantz, P. M., Mendez, D., & Philbert, M. A. (2013). Radon, smoking, and lung cancer: The need to refocus radon control policy. American Journal of Public Health 103, 443_447. doi.org/10.2105/AJPH.2012.300926

    Vanderweele, T. J., & Knol, M. J. (2014).  A tutorial on interaction. Epidemiologic Methods, vol. 3, no. 1, pp. 33-72. doi.org/10.1515/em-2013-0005

     


    This page titled 8.4: Multiplicative Interaction was last modified on Wed, 25 Mar 2026 23:12:12 GMT and is shared under a CC BY-NC-SA 4.0 license and was authored, remixed, and/or curated by Fabiane Morales.