Association of long-term exposure to traffic-related PM10 with heart rate variability and heart rate dynamics in healthy subjects.

Autor: Meier-Girard, Delphine1 delphine.meier@ukbb.ch, Delgado-Eckert, Edgar1, Schaffner, Emmanuel1, Schindler, Christian1, Künzli, Nino1, Adam, Martin1, Pichot, Vincent1, Kronenberg, Florian1, Imboden, Medea1, Frey, Urs1, Probst-Hensch, Nicole1
Předmět:
Zdroj: Environment International. Apr2019, Vol. 125, p107-116. 10p.
Abstrakt: Abstract Background Epidemiological evidence on the influence of long-term exposure to traffic-related particulate matter (TPM 10) on heart rate variability (HRV) is weak. Objective To evaluate the association of long-term exposure (10 years) with TPM 10 on the regulation of the autonomic cardiovascular system and heart rate dynamics (HRD) in an aging general population, as well as potential modifying effects by the a priori selected factors sex, smoking status, obesity, and gene variation in selected glutathione S-transferases (GSTs). Methods We analyzed data from 1593 SAPALDIA cohort participants aged ≥ 50 years. For each participant, various HRV and HRD parameters were derived from 24-hour electrocardiogram recordings. Each parameter obtained was then used as the outcome variable in multivariable mixed linear regression models in order to evaluate the association with TPM 10. Potential modifying effects were assessed using interaction terms. Results No association between long-term exposure to TPM 10 and HRV/HRD was observed in the entire study population. However, HRD changes were found in subjects without cardiovascular morbidity and both HRD and HRV changes in non-obese subjects without cardiovascular morbidity. Subjects without cardiovascular morbidity with homozygous GSTM1 gene deletion appeared to be more susceptible to the effects of TPM 10. Conclusion This study suggests that long-term exposure to TPM 10 triggers adverse changes in the regulation of the cardiovascular system. These adverse effects were more visible in the subjects without cardiovascular disease, in whom the overall relationship between TPM 10 and HRV/HRD could not be masked by underlying morbidities and the potential counteracting effects of related drug treatments. Highlights • Long-term exposure to TPM 10 triggers adverse effects on the heart function. • Evidences of such adverse effects were found in healthy subjects. • Homozygous GSTM gene deletion appears to be an effect modifier of TPM 10. [ABSTRACT FROM AUTHOR]
Databáze: GreenFILE