Related Experiment Video
Updated: May 18, 2026

Studying Wnt Signaling During Patterning of Conducting Airways
Published on: October 16, 2016
Partial absence of pleuropericardial membranes in Tbx18- and Wt1-deficient mice
Julia Norden1, Thomas Grieskamp, Vincent M Christoffels
1Institut für Molekularbiologie, OE5250, Medizinische Hochschule Hannover, Hannover, Germany.
Abstract:
The pleuropericardial membranes are fibro-serous walls that separate the pericardial and pleural cavities and anchor the heart inside the mediastinum. Partial or complete absence of pleuropericardial membranes is a rare human disease, the etiology of which is poorly understood. As an attempt to better understand these defects, we wished to analyze the cellular and molecular mechanisms directing the separation of pericardial and pleural cavities by pleuropericardial membranes in the mouse. We found by histological analyses that both in Tbx18- and Wt1-deficient mice the pleural and pericardial cavities communicate due to a partial absence of the pleuropericardial membranes in the hilus region. We trace these defects to a persisting embryonic connection between these cavities, the pericardioperitoneal canals. Furthermore, we identify mesenchymal ridges in the sinus venosus region that tether the growing pleuropericardial membranes to the hilus of the lung, and thus, close the pericardioperitoneal canals. In Tbx18-deficient embryos these mesenchymal ridges are not established, whereas in Wt1-deficient embryos the final fusion process between these tissues and the body wall does not occur. We suggest that this fusion is an active rather than a passive process, and discuss the interrelation between closure of the pericardioperitoneal canals, lateral release of the pleuropericardial membranes from the lateral body wall, and sinus horn development.
Insights
Absence of pleuropericardial membranes, crucial for separating cavities, is a rare congenital defect. This study reveals Tbx18 and Wt1 genes are vital for closing embryonic connections, preventing these defects.
Area of Science:
- Developmental biology
- Anatomy
- Genetics
Background:
- Pleuropericardial membranes separate the pericardial and pleural cavities, anchoring the heart.
- Absence of these membranes is a rare congenital defect with poorly understood etiology.
Purpose of the Study:
- To investigate the cellular and molecular mechanisms of pleuropericardial membrane formation in mice.
- To understand the etiology of partial or complete absence of pleuropericardial membranes.
Main Methods:
- Histological analysis of Tbx18- and Wt1-deficient mouse embryos.
- Tracing the development and closure of pericardioperitoneal canals.
Main Results:
- Tbx18 and Wt1 deficiency leads to communication between pleural and pericardial cavities due to absent or unfused pleuropericardial membranes.
- Defects stem from persisting pericardioperitoneal canals.
- Mesenchymal ridges in the sinus venosus region are crucial for tethering membranes and closing canals.
Conclusions:
- Tbx18 is essential for establishing mesenchymal ridges.
- Wt1 is required for the fusion of membranes with the body wall.
- Canal closure involves active fusion, lateral release of membranes, and sinus horn development.
Related Concept Videos
Pulmonary Tuberculosis III
The first classification is based on the development of the disease, and it includes the following categories:
Pleura of the Lungs

