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Assessment of pulmonary function by impulse oscillometry and spirometry in children with type 1 diabetes mellitus
Ayşe Anık1, Ahmet Anık2, Pınar Uysal3
1Department of Pediatrics, School of Medicine, Aydın Adnan Menderes University, Aydın, Turkey.
Insights
Children with type 1 diabetes mellitus (T1DM) show subclinical lung function impairments. These issues correlate with disease duration and metabolic control, impacting respiratory health.
Area of Science:
- Pediatric Endocrinology
- Pulmonology
- Diabetology
Background:
- Type 1 Diabetes Mellitus (T1DM) can affect multiple organ systems.
- Early detection of complications is crucial for managing T1DM in children.
- Lung function assessment in pediatric T1DM is an emerging area of research.
Purpose of the Study:
- To evaluate lung function using impulse oscillometry (IOS) and spirometry in children with T1DM.
- To compare lung function parameters between children with T1DM and healthy controls.
- To investigate the association between lung function, disease duration, and metabolic control (HbA1c) in pediatric T1DM.
Main Methods:
- A cohort of 51 children with T1DM and 53 healthy controls (HC) were enrolled.
- Pulmonary function was assessed using IOS and spirometry.
- Demographic, clinical, and laboratory data, including HbA1c, were collected and analyzed.
Main Results:
- Children with T1DM exhibited higher IOS resistance (zR5, zR10, zR20) and lower spirometry expiratory flow rates (zFEF75, zFEF25-75) compared to HCs.
- Impaired lung function parameters (IOS zR5-20, zAX) were associated with poorer glycemic control.
- Disease duration positively correlated with IOS parameters (zR5-20, zFres).
- A specific IOS cutoff (zR5-20 ≤ 2.28) showed good sensitivity and specificity for identifying well-controlled T1DM (HbA1c < 7%).
Conclusions:
- Subclinical lung function impairment is present in children with T1DM.
- Lung function abnormalities are linked to the duration of T1DM and the level of metabolic control.
- IOS parameters may serve as sensitive indicators for monitoring respiratory health in pediatric T1DM.
Aim:
To assess the lung functions with impulse oscillometry (IOS) and spirometry in children with type 1 diabetes mellitus (T1DM).
Methods:
Fifty-one children with T1DM, and sex- and age-matched 53 healthy control (HC) subjects were included in this study. Demographic, clinical, and laboratory characteristics of the subjects were recorded and their pulmonary functions were analyzed by IOS and spirometry.
Results:
In IOS, zR5, zR10, and zR20 levels were higher in children with T1DM compared with HCs (P = .019, P = .017, and P = .002, respectively). In spirometry, zFEF75 and zFEF25-75 were lower in children with T1DM compared with HCs (P = .025, P = .001, respectively). In IOS, zR5-20 (P = .008, P = .005, respectively) and zAX (P = .013, P = .009, respectively) were significantly lower in good-controlled group compared with moderate- and poor-controlled group. In spirometry, zFEF25-75 was significantly higher in good-controlled group compared with moderate- and poor-controlled group (P = .005, P = .009, respectively). HbA1c was positively correlated with zR5-20 value (r = .339; P = .017) in male children with T1DM. The duration of the disease was positively correlated with zR5-20 (r = .290; P = .043) and zFres (r = .358; P = .010). According to the receiver operating characteristic curve analysis to estimate optimal cut-offs to discriminate good control level of T1DM (HbA1c < 7%), a zR5-20 ≤ 2.28 demonstrated a 75.0% sensitivity and 82.9% specificity, with an area under the curve of 0.805 ([confidence interval, 0.615-0.995]; P = .007).
Conclusions:
This study showed subclinical impairment of lung functions which is associated with disease duration and the degree of metabolic control in children with T1DM.
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