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Fast and Accurate Exhaled Breath Ammonia Measurement
Published on: June 11, 2014
[Predictive significance of exhaled breath temperature for airway inflammation changes in children with asthma]
Hou-Lan Xiao1, Zhen-Hua Chen, Dong-Wu Zhang
1Department of Pediatrics, Foshan Gaoming District People's Hospital Affiliated to Guangdong Medical University, Foshan, Guangdong 528500, China. gdpueducn@126.com.
Insights
Exhaled breath temperature (EBT) can predict airway inflammation changes in children with asthma. Higher EBT levels correlate with poorer asthma control and increased inflammation, suggesting EBT
Area of Science:
- Pediatric Pulmonology
- Respiratory Medicine
- Biomarkers
Background:
- Asthma affects millions of children globally, necessitating reliable methods for monitoring airway inflammation.
- Current methods for assessing airway inflammation can be invasive or complex.
- Exhaled breath temperature (EBT) offers a potential non-invasive biomarker for respiratory conditions.
Purpose of the Study:
- To investigate the predictive value of exhaled breath temperature (EBT) for changes in airway inflammation in pediatric asthma patients.
- To assess the correlation between EBT, asthma control, and fractional exhaled nitric oxide (FeNO) levels.
Main Methods:
- A cohort study involving 60 children with asthma and 60 healthy controls.
- Exhaled breath temperature (EBT) measured using the X-halo device.
- Childhood Asthma Control Test (C-ACT) and FeNO levels assessed at baseline and follow-up visits.
Main Results:
- Children with asthma exhibited higher EBT and lower C-ACT scores than controls at the initial visit.
- At follow-up, significant differences in EBT and C-ACT scores were observed across asthma control groups (uncontrolled > partially-controlled > well-controlled).
- EBT positively correlated with FeNO in the uncontrolled asthma group, indicating increased airway inflammation.
Conclusions:
- Exhaled breath temperature (EBT) demonstrates predictive significance for airway inflammation dynamics in pediatric asthma.
- EBT serves as a valuable, non-invasive tool for monitoring asthma control and inflammation.
- Changes in EBT correlate with clinical asthma control and inflammatory markers like FeNO.
Objective:
To explore the predictive significance of exhaled breath temperature (EBT) for airway inflammation changes in children with asthma.
Methods:
A total of 60 children with asthma who met the inclusion criteria at the first visit were chosen as the asthma group, and 60 healthy children were selected as the control group. The EBT level was measured by the latest third-generation product (X-halo). The Childhood Asthma Control Test (C-ACT) score was recorded. EBT level and C-ACT score were compared between the asthma and control groups. At the subsequent visit one month later, the children were divided into well-controlled, partially-controlled, and uncontrolled groups according to their C-ACT scores. The EBT level and the FeNO level of the three groups were measured. EBT level and C-ACT score were compared among the three groups. The correlation between EBT and FeNO was analyzed. The data of initial diagnosis were reviewed, the EBT level and C-ACT score at the first visit were compared among the three groups, and the differences in EBT level and C-ACT score among the three groups at the second and first visits were evaluated.
Results:
At the first visit, the asthma group had a significantly higher EBT and a significantly lower C-ACT score compared with the control group (P<0.05). At the time of the subsequent visit, there was a significant difference in EBT level between the three groups, i.e., uncontrolled group > partially-controlled group > well-controlled group (P<0.05), and there was also a significant difference in C-ACT score between the three groups, i.e., well-controlled group > partially-controlled group > uncontrolled group (P<0.05). There were no significant differences in EBT level and C-ACT score at the first visit between the three groups. From the first visit to the subsequent visit, EBT level was significantly decreased in the well-controlled group (P<0.05), but significantly increased in both partially-controlled group uncontrolled groups (P<0.05); C-ACT score was significantly increased in the well-controlled and partially-controlled groups (P<0.05), but significantly decreased in the uncontrolled group (P<0.05). EBT and FeNO levels at the subsequent visit were positively correlated with each other in the uncontrolled group (P<0.05).
Conclusions:
EBT has predictive significance for the changes in airway inflammation in children with asthma.
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