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Published on: October 19, 2013
Altered urinary excretion of elastin cross-links in premature infants who develop bronchopulmonary dysplasia
Insights
Infants developing bronchopulmonary dysplasia (BPD) show increased urinary desmosines, indicating elastin degradation. This suggests lung injury in BPD infants, with impaired elastin turnover potentially due to nutritional issues.
Area of Science:
- Neonatal Medicine
- Pulmonology
- Biochemistry
Background:
- Respiratory insufficiency in premature infants often necessitates high oxygen (O2) concentrations.
- Bronchopulmonary dysplasia (BPD) is a severe lung disease associated with prolonged mechanical ventilation and high O2 exposure.
- Elastin degradation products, such as desmosines, can serve as biomarkers for lung tissue remodeling and injury.
Purpose of the Study:
- To investigate whether elastin degradation is elevated in premature infants requiring high O2 concentrations.
- To compare urinary desmosine excretion patterns in infants who develop BPD versus those with less severe lung disease.
Main Methods:
- Quantified urinary desmosine excretion using amino acid analysis in 14 premature male infants over 3 weeks.
- Categorized infants into "low-O2" (<=40% O2 beyond 8h) and BPD groups (>=60% O2 for >=72h).
Main Results:
- Infants who developed BPD exhibited significantly different desmosine excretion patterns compared to "low-O2" infants (p<0.05).
- At week 1, BPD infants had higher desmosine excretion than "low-O2" infants (p<0.05).
- Desmosine excretion increased in "low-O2" infants from days 7-9 to 20-22, but decreased in BPD infants during the same period.
Conclusions:
- Elevated urinary desmosines in BPD infants by day 9 likely indicate lung injury.
- Decreased desmosine excretion after day 9 in BPD infants suggests impaired elastin synthesis and turnover, possibly linked to nutritional deficiencies.
Abstract:
In order to determine whether elastin degradation is increased in infants whose respiratory insufficiency requires ventilation with high concentrations of O2, we quantitated, by amino acid analysis, the elastin degradation products (desmosines) excreted in the urine of 14 premature male infants during the first 3 wk of life. Eight of these infants, the "low-O2" infants, did not have severe lung disease and did not require more than 40% O2 beyond the first 8 h of life. The other 6 infants, selected retrospectively because they developed bronchopulmonary dysplasia (BPD), were ventilated with more than 60% O2 for at least the first 72 h of life. The pattern of desmosine excretion observed in infants who developed BPD differed significantly (p less than 0.05) from the excretion pattern seen in "low-O2" infants during the first 3 wk of life. At the end of the first week of life, desmosine excretion was significantly greater (p less than 0.05) in the infants who later developed BPD than in the "low-O2" infants without severe lung disease. From Days 7-9 to 20-22, desmosine excretion increased in the "low-O2" infants from 6.9 +/- 1.7 micrograms/kg to 9.0 +/- 3.5 micrograms/kg. In contrast, desmosine excretion did not remain elevated in the BPD infants, decreasing from 10.6 +/- 2.2 micrograms/kg to 6.1 +/- 2.9 micrograms/kg during the same period. In the BPD infants, elevated desmosine excretion through Day 9 is likely to reflect lung injury, whereas decreased desmosine excretion beyond Day 9 suggests that elastin synthesis and turnover is impaired, possibly as a result of nutritional deficiencies.(ABSTRACT TRUNCATED AT 250 WORDS)
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