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Published on: March 31, 2020
Pathogenesis of solitary right aortic arch: a mass effect hypothesis based on observations of serial human embryonic
Zhe W Jin1, Tomonori Yamada2, Ji H Kim3
11Department of Anatomy,Histology and Embryology,Yanbian University Medical College,Yanji City,Jilin Province,China.
Insights
Solitary right aortic arch is not caused by gene cascade dysfunction. Sympathetic ganglia may play a role in the development of anomalous ductus arteriosus associated with this condition.
Area of Science:
- Embryology
- Developmental Biology
- Cardiovascular Anatomy
Background:
- The solitary right aortic arch is a rare congenital anomaly.
- Its embryological origin and association with ductus arteriosus abnormalities require further elucidation.
Purpose of the Study:
- To investigate the embryological basis of solitary right aortic arch.
- To explore the potential role of sympathetic nerve ganglia in associated ductus arteriosus malformations.
Main Methods:
- Serial sectioning of fifteen 5- to 6-week-old embryos.
- Serial sectioning of ten 8- to 9-week-old fetuses.
Main Results:
- Pathogenesis appears unrelated to systemic left/right axis gene cascade dysfunction.
- Disappearance of the right aortic arch precedes ductus arteriosus attachment migration.
- Sympathetic ganglia may obstruct blood flow, influencing ductus arteriosus development and position.
Conclusions:
- Solitary right aortic arch is likely associated with abnormalities in surrounding structures.
- The timing and location of obstruction, potentially influenced by sympathetic ganglia, are critical for ductus arteriosus development.
- A mass effect from sympathetic ganglia may explain various anomalous ductus arteriosus presentations.
Abstract:
In general, solitary right aortic arch carries the left-sided ductus arteriosus communicating between the left subclavian and pulmonary arteries or the right-sided ductus connecting the descending aorta to the left pulmonary artery. Serial sections of fifteen 5- to 6-week-old embryos and ten 8- to 9-week-old fetuses suggested that the pathogenesis was unrelated to inversion due to dysfunction in gene cascades that control the systemic left/right axis. With inversion, conversely, the ductus or the sixth pharyngeal arch artery should connect to the right pulmonary artery. The disappearance of the right aortic arch started before the caudal migration of the aortic attachment of the ductus. Sympathetic nerve ganglia developed immediately posterior to both aortae, with a single embryonic specimen showing a large ganglion at the midline close to the union of the aortic arches. These ganglia may interfere with blood flow through the distal left arch, resulting in the ductus ending at the descending aorta behind the oesophagus. In another fetus examined, a midline shift of the ductus course resulted in the trachea curving posteriorly. Therefore, solitary right arch is likely to accompany abnormalities of the surrounding structures. The timing and site of the obstruction should be different between types: an almost midline obstruction near the aortic union needed for the development of the left-sided ductus and a distal obstruction near the left subclavian arterial origin needed for the development of the right-sided ductus. A mass effect of the sympathetic ganglia may explain the pathogenesis of any type of anomalous ductus arteriosus shown in previous reports of the solitary right arch.
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