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The associations of particulate matter short-term exposure and serum lipids are modified by vitamin D status: A panel study of young healthy adults. | LitMetric

The associations of particulate matter short-term exposure and serum lipids are modified by vitamin D status: A panel study of young healthy adults.

Environ Pollut

Guangdong Provincial Engineering Technology Research Center of Environmental Pollution and Health Risk Assessment, Department of Occupational and Environmental Health, School of Public Health, Sun Yat-Sen University, Guangzhou, 510080, China. Electronic address:

Published: January 2023

AI Article Synopsis

  • The study investigates how vitamin D levels affect the relationship between particulate matter (PM) exposure and blood lipid levels in young, healthy adults.
  • Conducted in Guangzhou, China, the research included 88 participants and analyzed various sizes of PM alongside serum lipids and vitamin D concentrations over five weeks.
  • Findings reveal that lower vitamin D levels (under 15 ng/mL) were linked to significant increases in triglycerides and low-density lipoprotein cholesterol with higher PM exposure, while these associations were not significant in those with higher vitamin D levels (15 ng/mL or more).

Article Abstract

Particulate matter (PM) exposure is associated to the adverse change in blood lipids. Vitamin D is beneficial to lipid metabolism, but whether vitamin D levels modifies the impact of air pollutants on lipids is unclear. The purpose of the study was to investigate if vitamin D modifies the associations of PM and serum lipids in young healthy people. From December 2017 to January 2018, a panel study with five once weekly follow-ups was conducted on 88 healthy adults aged 21.09 (1.08) (mean (SD)) years on average in Guangzhou, China. We measured serum lipids, serum 25-hydroxyvitamin D (25(OH)D) concentrations (440 blood samples in total), mass concentrations of particulate matter with diameters ≤2.5 μm (PM), ≤1.0 μm (PM), and ≤0.5 μm (PM), and number concentrations of particulate matter with diameters ≤0.2 μm (PN) and ≤0.1 μm (PN) at each follow-up. Linear mixed-effect models were applied to assess the interaction of vitamin D and size-fractionated PM short-term exposure on four lipid metrics. We found the interactions between 25(OH)D and size-fractionated PM exposure on blood lipids in different lags (lag 3 days and 4 days). An interquartile range increase in PM, PM, PM were significantly associated with increments of 12.30%, 12.99%, and 13.66% in triglycerides (TGs) at lag 4 days at vitamin D levels <15 ng/mL group, respectively. Similar results were found for PN, PN and low-density lipoprotein cholesterol (LDL-C). All the associations between size-fractionated PM and blood lipids were found null statistically significant in vitamin D levels ≥15 ng/mL group.

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Source
http://dx.doi.org/10.1016/j.envpol.2022.120686DOI Listing

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