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Updated: Oct 18, 2025

A Pipeline to Characterize Structural Heart Defects in the Fetal Mouse
Published on: December 16, 2022
Structural heart defects associated with ETB mutation, a cause of Hirschsprung disease
Ko-Chin Chen1, Ko-Chien Chen2, Zan-Min Song3
1Australian National University Medical School, Florey Building 54 Mills Road, Acton, ACT, 2601, Australia. ckochin@gmail.com.
Insights
Hirschsprung disease (HSCR) in sl/sl rats is linked to significant cardiac growth retardation, suggesting potential congenital heart defects in HSCR patients. Cardiac assessment may be necessary for these individuals.
Area of Science:
- Developmental Biology
- Genetics
- Cardiology
Background:
- Hirschsprung disease (HSCR), a neurocristopathy affecting 1 in 5000 births, is often associated with cardiac septal defects and conotruncal malformations.
- The role of HSCR candidate genes, such as Endothelin B receptor (ETB), in subtle cardiac changes remains under investigation.
Purpose of the Study:
- To investigate the association between HSCR and cardiac morphology.
- To compare cardiac morphology and quantitative measurements in sl/sl rats (a model for HSCR) with a control group.
Main Methods:
- Micro-computed tomography (micro-CT) scanning was used to analyze cardiac morphology and volumes in neonatal sl/sl rats and control littermates.
- Quantitative measurements of the whole heart, left ventricle (LV), right ventricle (RV), left atrium (LA), right atrium (RA), and aortic arch were performed.
- Statistical analysis compared organ volumes, growth rates, and organ-volume/bodyweight ratios between sl/sl and control rats.
Main Results:
- Significant volumetric reductions were observed in the whole heart, LV, RV, LA, and RA of sl/sl rats compared to controls (p < 0.05).
- Sl/sl rats exhibited a consistent trend of reduced growth rate (~20%) and organ-volume/bodyweight ratios (~25%).
- No significant differences were found in aortic arch measurements between sl/sl and control rats.
Conclusions:
- Despite normal gross morphology, sl/sl rats displayed significant cardiac growth retardation, supporting a link between HSCR (ETB-/- subtype) and cardiac anomalies.
- Cardiac structural reduction is likely due to enteric dysfunction, altered neural crest cell colonization, and coronary hypoperfusion.
- The findings suggest that HSCR patients may require cardiac assessment due to potential congenital heart defects, although the role of ETB in large vessel development appears minor.
Background:
HSCR, a colonic neurocristopathy affecting 1/5000 births, is suggested to associate with cardiac septal defects and conotruncal malformations. However, we question subtle cardiac changes maybe more commonly present due to multi-regulations by HSCR candidate genes, in this instance, ETB. To investigate, we compared the cardiac morphology and quantitative measurements of sl/sl rat to those of the control group.
Methods:
Eleven neonatal rats were generated from heterozygote (ETB+/-) crossbreeding. Age and bodyweight were recorded at time of sacrifice. Diffusion-staining protocols with 1.5% iodine solution was completed prior to micro-CT scanning. All rats were scanned using an in vivo micro-CT scanner, Caliper Quantum FX, followed by two quality-control scans using a custom-built ex vivo micro-CT system. All scans were reviewed for gross cardiac dysmorphology. Micro-CT data were segmented semi-automatically post-NLM filtering for: whole-heart, LV, RV, LA, RA, and aortic arch. Measurements were taken with Drishti. Following image analysis, PCR genotyping of rats was performed: five sl/sl rats, three wildtype, and three heterozygotes. Statistical comparisons on organ volume, growth rate, and organ volume/bodyweight ratios were made between sl/sl and the control group.
Results:
Cardiac morphology and constituents were preserved. However, significant volumetric reductions were recorded in sl/sl rats with respect to the control: whole heart (38.70%, p value = 0.02); LV (41.22%, p value = 0.01), RV (46.15%, p value = 0.02), LA (44.93%, p value = 0.06), and RA (39.49%, p value = 0.02). Consistent trend was observed in growth rate (~ 20%) and organ-volume/bodyweight ratios (~ 25%). On the contrary, measurements on aortic arch demonstrated no significant difference among the two groups.
Conclusion:
Despite the presence of normal morphology, significant cardiac growth retardation was detected in sl/sl rat, supporting the likely association of cardiac anomalies with HSCR, at least in ETB-/- subtype. Structural reduction was likely due to a combination of failure to thrive from enteric dysfunction, alterations to CaNCC colonization, and importantly coronary hypoperfusion from elevated ET-1/ETA-mediated hypervasoconstriction. Little correlation was detected between aortic arch development and sl/sl rat, supporting minor ETB role in large vessels. Although further clinical study is warranted, HSCR patients may likely require cardiac assessment in view of potential congenital cardiac defects.
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