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Smoking Behaviors Among Tobacco-Using Parents of Hospitalized Children and Association With Child Cotinine Level
Karen M Wilson1,2, Angela Moss3, Michelle Lowary4
1Department of Pediatrics, Icahn School of Medicine at Mount Sinai, New York City, New York; karen.wilson@mssm.edu.
Insights
Parental smoking habits, including smoking inside the home, significantly increase children's exposure to secondhand smoke. Even with outdoor-only policies, children show concerning levels of cotinine, a toxin exposure marker.
Area of Science:
- Environmental Health
- Pediatrics
- Public Health
Background:
- Understanding parental tobacco use is crucial for effective child exposure interventions.
- Parental smoking is a significant risk factor for child health outcomes.
Purpose of the Study:
- To examine the association between parental smoking practices and cotinine levels in hospitalized children.
- To identify specific parental smoking behaviors linked to higher child cotinine levels.
Main Methods:
- Secondary analysis of data from a randomized controlled trial on smoking cessation.
- Parent-reported demographics and smoking habits compared with child urine cotinine levels.
- Multivariable linear regression used to analyze log-transformed cotinine levels.
Main Results:
- 213 children with complete data.
- Higher cotinine levels associated with more smokers per household (ratio 2.99).
- Smoking inside the home showed a significant association with higher cotinine levels (ratio 4.11).
Conclusions:
- Multiple smokers in the home and indoor smoking increase child smoke exposure.
- Children exposed to secondhand smoke show significant cotinine levels, even with outdoor-only smoking rules.
Objectives:
Understanding patterns of parental tobacco use and their association with child exposure can help us target interventions more appropriately. We aimed to examine the association between parental smoking practices and cotinine levels of hospitalized children.
Methods:
This is a secondary analysis of data collected from parents of hospitalized children, recruited for a cessation intervention randomized controlled trial. Smoking parents were identified by using a medical record screening question. Parent-reported demographics and smoking habits were compared to child urine cotinine by using geometric means and log-transformed cotinine levels in multivariable linear regression analyses.
Results:
A total of 213 patients had complete baseline parent-interview and urine cotinine data. The median age was 4 (interquartile range: 1-9); 57% were boys; 56% were white, 12% were Black, and 23% were multiracial; 36% identified as Hispanic. Most families (54%) had 1 smoker in the home; 36% had 2, and 9% had ≥3. Many (77%) reported having a ban on smoking in the home, and 86% reported smoking only outside. The geometric mean cotinine level of the cohort was 0.98 ng/mL. Higher cotinine levels were associated with more smokers in the home (ratio of 2.99) and smoking inside the house (ratio of 4.11).
Conclusions:
Having more smokers in the home and parents who smoke inside are associated with increased smoke exposure; however, even children whose families who smoke only outside the home have significant levels of cotinine, a marker for toxin exposure.
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