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Published on: June 16, 2020
Respiratory manifestations of Marfan syndrome: a narrative review
Mon Hnin Tun1, Bryan Borg2,3, Maurice Godfrey4
1Department of Pediatrics, University of Alberta, Edmonton, Canada.
Objective:
The prevalence of Marfan syndrome (MFS) is estimated to be 1 in 10,000 to 15,000 individuals, but the phenotype of MFS may not be apparent and hence its diagnosis may not be considered by clinicians. Furthermore, the effects of MFS on the lungs and breathing are underrecognized despite the high morbidity that can occur. The objective of this Narrative Review is to delineate the molecular consequences of a defective fibrillin-1 protein and the skeletal and lung abnormalities in MFS that may contribute to respiratory compromise. It is important for clinicians to be cognizant of these MFS-associated respiratory conditions, and a contemporaneous review is needed.
Background:
MFS is an autosomal dominant, connective tissue disorder caused by mutations in the FIBRILLIN-1 (FBN1) gene, resulting in abnormal elastic fibers as well as increased tissue availability of transforming growth factor-beta (TGFβ), both of which lead to the protean clinical abnormalities. While these clinical characteristics are most often recognized in the cardiovascular, skeletal, and ocular systems, MFS may also cause significant impairment on the lungs and breathing.
Methods:
We searched PubMed for the key words of "Marfan syndrome," "pectus excavatum," and "scoliosis" with that of "lung disease," "breathing", or "respiratory disease." The bibliographies of identified articles were further searched for relevant articles not previously identified. Each relevant article was reviewed by one or more of the authors and a narrative review was composed.
Conclusions:
Though the classic manifestations of MFS are cardiovascular, skeletal, and ocular, FBN1 gene mutation can induce a variety of effects on the respiratory system, inducing substantial morbidity and potentially increased mortality. These respiratory effects may include chest wall and spinal deformities, emphysema, pneumothorax, sleep apnea, and potentially increased incidence of asthma, bronchiectasis, and interstitial lung disease. Further research into approaches to prevent respiratory complications is needed, but improved recognition of the respiratory complications of MFS is necessary before this research is likely to occur.
Insights
Marfan syndrome (MFS), caused by FBN1 gene mutations, significantly impacts the respiratory system, leading to various lung and breathing complications. Early recognition of these underrecognized MFS respiratory issues is crucial for patient care and further research.
Area of Science:
- Genetics and Molecular Biology
- Pulmonology
- Connective Tissue Disorders
Background:
- Marfan syndrome (MFS) is an autosomal dominant disorder caused by FBN1 gene mutations.
- It leads to abnormal elastic fibers and increased TGFβ, causing widespread clinical abnormalities.
- While cardiovascular, skeletal, and ocular issues are common, respiratory impairment is often underrecognized.
Purpose of the Study:
- To review the molecular basis of Marfan syndrome (MFS) related to fibrillin-1 protein.
- To delineate skeletal and lung abnormalities in MFS contributing to respiratory compromise.
- To emphasize the importance of clinician awareness regarding MFS-associated respiratory conditions.
Main Methods:
- A comprehensive literature search was conducted using PubMed.
- Keywords included "Marfan syndrome," "pectus excavatum," "scoliosis," "lung disease," "breathing," and "respiratory disease."
- Bibliographies of identified articles were cross-referenced for additional relevant studies.
Main Results:
- FBN1 gene mutations in MFS can cause diverse respiratory effects, including chest wall and spinal deformities.
- Respiratory complications encompass emphysema, pneumothorax, sleep apnea, and potentially increased incidence of asthma, bronchiectasis, and interstitial lung disease.
- These respiratory manifestations contribute to significant morbidity and potentially increased mortality in MFS patients.
Conclusions:
- Marfan syndrome (MFS) significantly impacts the respiratory system beyond its classic manifestations.
- Recognition of MFS-associated respiratory conditions is vital for clinical management and to guide future research.
- Further research is needed to develop strategies for preventing respiratory complications in MFS.
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