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Urine phthalate levels were associated with skin barrier dysfunction and atopic sensitization in children
1Department of Pediatrics, Soonchunhyang University Gumi Hospital, Gumi, Republic of Korea. drmesh@gmail.com.
Insights
Urinary phthalate metabolites were linked to impaired skin barrier function in children, but not to atopic sensitization. This suggests phthalate exposure may increase susceptibility to fragile skin.
Area of Science:
- Environmental Health
- Pediatric Allergy
- Dermatology
Background:
- Phthalates are chemicals linked to immunological disorders and allergic diseases.
- Skin barrier dysfunction is a key factor in atopic diseases.
Purpose of the Study:
- To investigate the relationship between urinary phthalate levels, skin barrier function, and atopic sensitization in children.
- To assess the impact of high-molecular-weight phthalates (HMWP) and low-molecular-weight phthalates (LMWP) on skin barrier integrity and allergic outcomes.
Main Methods:
- 448 school children (aged 10-12) provided urine samples for phthalate metabolite analysis.
- Skin barrier function was assessed using trans epidermal water loss (TEWL) measurements.
- Specific immunoglobulin E (IgE) and total eosinophil counts were measured to evaluate allergic status.
Main Results:
- Urinary levels of both HMWP and LMWP were significantly associated with increased TEWL, indicating impaired skin barrier function.
- No significant association was found between phthalate metabolites and atopic sensitization or severe atopic dermatitis.
- Phthalate exposure showed significant differences in TEWL on the lower arm and leg.
Conclusions:
- Phthalate exposure is associated with skin barrier dysfunction in children.
- The study did not find a direct link between phthalate exposure and atopic sensitization.
- Children exposed to phthalates may have a higher risk of developing fragile skin barrier function.
Objective:
Phthalates can cause immunological disorders and aggravate allergic diseases. Thus, we investigated the relationship between urinary phthalate, skin barrier function, and atopic sensitization in children.
Patients And Methods:
In total, 448 school children [334 with severe allergic disease; and 123 with severe atopic dermatitis (AD)] aged 10-12 years were enrolled in this study between June and July 2017. Four high-molecular-weight phthalates (HMWP) [Σ4HMWP] and three low-molecular-weight phthalates (LMWP) [Σ3LMWP] metabolites in urine samples, specific immunoglobulin E (IgE), and total eosinophil count were measured. Four-part trans epidermal water loss (TEWL) (cheek, leg, and upper/lower arm; Σ4TEWL) was measured to evaluate the skin barrier function.
Results:
After adjusting for confounding variables, Σ4TEWL was significantly associated with the quartiles of urinary Σ4HMWP [adjusted β=7.897, 95% confidence interval (CI): 0.636-15.158, p=0.033] and Σ3LMWP (adjusted β=9.670, 95% CI: 2.422-16.919, p=0.009). The adjusted analyses revealed that the quartiles of urinary Σ4HMWP and Σ3LMWP were not significantly associated with total eosinophil count, atopic sensitization, and severe AD (p>0.05). According to the quartiles of urinary Σ4HMWP and Σ3LMWP, there were significant differences in the TEWL of the lower arm and leg (p<0.05) but not in cheek and upper arm.
Conclusions:
Exposure to HMWPs and LMWPs was significantly associated with skin barrier dysfunction but not with atopic sensitization. These results suggest that children exposed to phthalates may be more susceptible to fragile skin barrier function.
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