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Calcium signaling-related proteins are associated with broncho-pulmonary dysplasia progression
Cinzia Magagnotti1, Piero Giuseppe Matassa, Angela Bachi
1ProMiFa, Protein Microsequencing Facility, San Raffaele Scientific Institute, Milan, Italy.
Insights
This study identified specific protein changes in broncho-alveolar lavage fluid (BALF) of premature infants with bronchopulmonary dysplasia (BPD). These findings offer potential biomarkers for early diagnosis and novel therapeutic targets for BPD.
Area of Science:
- Neonatology
- Pulmonology
- Proteomics
Background:
- Bronchopulmonary dysplasia (BPD) is a chronic lung disorder following premature birth and respiratory distress syndrome (RDS).
- Infant BPD characteristics have evolved, with current patients being extremely premature and exhibiting impaired lung development.
- Understanding BPD pathogenesis, influenced by genetics and environment, is crucial for developing new therapies.
Purpose of the Study:
- To investigate protein alterations in broncho-alveolar lavage fluid (BALF) to understand BPD pathogenesis at the site of injury.
- To identify potential biomarkers for early diagnosis and therapeutic targets in BPD.
Main Methods:
- Analysis of BALF protein profiles from preterm infants at various developmental stages.
- Proteomic approach comparing BALF samples from infants with mild and severe BPD, matched for gestational age.
Main Results:
- Gestational age is confirmed as a factor in BPD progression.
- Fewer calcium signaling-related proteins were detected in severe BPD cases, correlating with disease severity.
- Significant differences in BALF protein profiles were observed even among patients with similar clinical phenotypes and treatments.
Conclusions:
- BALF protein profiling provides insights into local molecular changes relevant for BPD diagnosis and characterization.
- Identified protein subsets may serve as biomarkers for predicting BPD clinical course and treatment response.
- These findings support the development of novel, targeted therapies for BPD based on infant age and disease severity.
Abstract:
Broncho-pulmonary dysplasia (BPD) is a chronic pulmonary disorder that follows premature birth. It is preceded by respiratory distress syndrome (RDS), characterized by acute respiratory failure due to deficiency of surfactant at birth. Clinical characteristics of infants affected by BPD have widely changed in the last decades: they are extraordinarly immature, with impaired alveolar and vascular lung development. To build up new therapeutic strategies for BPD babies, it is necessary to understand the pathogenic mechanisms, which are complicated by environmental risk factors and genetic predisposition. Therefore, the aim of this study was to highlight protein changes in the broncho-alveolar lavage fluid (BALF), thus providing an appropriate picture on what is happening in the locus of injury. We analyzed BALF samples from preterm babies, born at different stages of lung development. We confirmed that gestational age is relevant for BPD progression, but we also detected few de-regulated proteins in the younger babies; we discovered less abundant calcium signaling-related proteins, consistent with BPD severity, comparing severe to mild BPD babies with matched gestational age. In conclusion, this study suggests a subset of proteins to be investigated to better treat BPD babies and facilitate the definition of potential drug targets for novel therapies.
Biological Significance:
Pulmonary biomarkers are needed to predict the clinical course of lung disease, status, progression and response to treatment. A key aspect in biomarker discovery is uncovering molecules that appear early during disease initiation, when the natural history of the disease can be modified. Using a proteomic-based approach we compared broncho-alveolar lavage fluid (BALF) protein profile from preterm neonates at different postmenstrual ages, to have a molecular description of broncho-pulmonary dysplasia (BPD) progression. BALF provided a snapshot of local molecular changes, which are relevant for early diagnosis, assessment and characterization of lung disorders. We showed that even if the studied patients had similar clinical phenotype (they all developed severe BPD and they were all cured in the same way in terms of mechanical ventilation, surfactant administration, antenatal steroid treatment and ibuprofen treatment for patent ductus arteriosus), however their BALF protein profiling displayed significant differences in a subset of proteins, which could be exploited to facilitate the development of novel effective therapies, distinct for age and severity of the disease.
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