DOI: 10.1021/acs.est.6c07147 ISSN: 0013-936X

Strontium and Lead Accelerate, Calcium Protects: Arterial Stiffness Progression in an 11-Year Prospective Cohort Study

Sencai Lin, Ying Yang, Junxiu He, Yu Bao, Hong Cheng, Weifan Kong, Xiuming Feng, Xiaolin Liang, Xiaoting Ge, Xiaobo Yang

Abstract

Arterial stiffness measured by estimated pulse wave velocity (ePWV) is an established predictor of cardiovascular disease. Long-term metal exposure may drive arterial stiffness progression, but prior studies largely relied on single-time assessments of exposure or outcome, overlooking heterogeneity in ePWV progression and its longitudinal links to long-term metal exposure. In an 11-year prospective study of 707 participants from the Manganese-Exposed Workers Healthy Cohort, we repeatedly quantified blood cell metals and computed cumulative exposure indices (CEIs). Latent class mixed models identified low and high ePWV trajectories. A one-quantile increase in CEI of a five-metal mixture [strontium (Sr), calcium (Ca), lead (Pb), magnesium, and manganese] was associated with belonging to the high ePWV trajectory (OR = 1.62; 95% CI: 1.14–2.31), with CEI_Sr and CEI_Pb as positive drivers and CEI_Ca inversely associated. The stronger CEI_Sr and CEI_Pb effects were observed in participants with high body mass index or smokers. The distinct trajectories of metal exposure were further identified; we found that the high-decreasing Pb trajectory was associated with higher odds of the high ePWV trajectory compared with the low-decreasing Pb trajectory (OR = 3.98; 95% CI: 1.28–13.26). We provided insights into the longitudinal links between long-term metal exposure and arterial stiffness progression, emphasizing the critical role of metal biomonitoring and primary prevention of arteriosclerosis in high-risk populations.