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Antioxidant alterations link polycyclic aromatic hydrocarbons to blood pressure in children
Qihua Wang1, Xijin Xu2, Zhijun Zeng3
1Laboratory of Environmental Medicine and Developmental Toxicology, Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment, Jinan University, Guangzhou 511443, Guangdong, China.
Insights
Polycyclic aromatic hydrocarbon (PAH) exposure in children is linked to lower blood pressure and decreased antioxidant levels, suggesting impaired vascular function. High PAH levels and reduced antioxidants may pose risks for blood pressure changes in children.
Area of Science:
- Environmental Health
- Pediatric Health
- Toxicology
Background:
- Polycyclic aromatic hydrocarbons (PAHs) exposure is a global concern, with potential links to cardiovascular health.
- The association between PAH exposure and blood pressure in children is controversial, and the role of antioxidants is not well understood.
Purpose of the Study:
- To investigate the relationship between PAH exposure, blood pressure, and antioxidant concentrations in children.
- To explore the impact of e-waste recycling area exposure on these parameters.
Main Methods:
- Recruited 403 children (2-7 years) from an e-waste area (Guiyu) and a reference area (Haojiang).
- Measured blood pressure, plasma vitamin E, serum superoxide dismutase (SOD), serum glutathione peroxidase (GPx), and urinary hydroxylated PAHs (OH-PAHs).
- Utilized statistical analysis to determine associations and interactions between exposure, antioxidants, and blood pressure.
Main Results:
- Children in the e-waste area had higher OH-PAH levels but lower blood pressure, SOD, and GPx concentrations.
- PAH exposure was associated with lower systolic pressure, pulse pressure, SOD, GPx, and vitamin E levels.
- Antioxidants (SOD and GPx) were associated with higher blood pressure, while interactions between PAHs and vitamin E affected blood pressure.
Conclusions:
- PAH exposure, particularly at high levels, combined with decreased antioxidant levels, may be risk factors for reduced blood pressure in children.
- PAH-exposed children may exhibit impaired vascular function, indicated by disordered blood pressure.
- Environmental interventions in e-waste areas are crucial to mitigate health risks associated with PAH exposure in children.
Abstract:
Exposure to polycyclic aromatic hydrocarbons (PAHs) is associated with changes in blood pressure. However, the association is controversial in different studies, and antioxidants' roles involved in it remain unclear. To investigate the associations among PAH exposure, blood pressure, and antioxidant concentrations, we recruited 403 children (2-7 years old), of which 203 were from Guiyu, an e-waste-recycling area (exposed group), and 200 were from Haojiang, a nearby non-e-waste area (reference group). Levels of blood pressure, plasma vitamin E, serum superoxide dismutase (SOD), serum glutathione peroxidase (GPx), and eight urinary hydroxylated PAHs (OH-PAHs) were measured. Compared with Haojiang children, Guiyu children had higher urinary OH-PAH concentrations but lower systolic pressure, pulse pressure, serum SOD concentration, and serum GPx concentration (all P < 0.05). PAH exposure was associated with lower systolic pressure, pulse pressure, SOD (adjusted β = -0.091, -0.104 and -0.154, respectively, all P < 0.05, in all children), GPx (adjusted β∑7LMW-OH-PAHs-T3 = -0.332, only in Haojiang children) and vitamin E (adjusted OR∑7LMW-OH-PAHs = 0.838, 95% CI: 0.706, 0.995, only in Guiyu children). Serum SOD and GPx were associated with higher blood pressure (βSOD-T2 for diastolic pressure = 0.215 in all children, βSOD-T3 for systolic pressure = 0.193 in all children, βSOD-T3 for pulse pressure = 0.281 in high-∑8OH-PAHs children, βGPx-T2 = 0.283 and βGPx-T3 = 0.289 for diastolic pressure in Haojiang children, all P < 0.05). Interactions between PAHs and vitamin E were associated with lower systolic pressure and pulse pressure; simple effects of vitamin E to raise systolic pressure and pulse pressure were only significant in low-∑8OH-PAHs children. Our results indicate that PAH exposure, especially at high levels, and further antioxidant-decrease are potential risk factors for blood-pressure decrease in children; vascular function of PAH-exposed children may be impaired, manifesting as disordered blood pressure.
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