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Updated: Aug 19, 2026

Isolation of Atrial Myocytes from Adult Mice
Published on: July 25, 2019
Molecular and ionic basis of congenital complete heart block
1Molecular and Cellular Cardiology Program, New York Harbor Healthcare System and SUNY Health Science Center, Brooklyn, New York, USA. mohamed.boutjdir@med.va.gov
Insights
Maternal autoantibodies targeting heart structures cause congenital heart block (CHB). This study developed animal models, revealing antibody-mediated L-type Ca channel inhibition as a key factor in CHB pathogenesis.
Area of Science:
- Immunology
- Cardiology
- Developmental Biology
Background:
- Congenital heart block (CHB) is linked to maternal autoantibodies against ribonucleoproteins.
- CHB results from transplacental antibody transfer, causing fetal heart conduction abnormalities.
- Complete atrio-ventricular block in CHB is irreversible and carries high morbidity.
Purpose of the Study:
- To elucidate the pathogenic mechanisms of CHB.
- To investigate the role of maternal autoantibodies and L-type Ca channels in CHB.
- To establish and validate animal models for CHB research.
Main Methods:
- Developed an active mouse model by immunizing with recombinant antigens.
- Reproduced CHB in isolated fetal hearts and correlated with antibody effects.
- Created a passive mouse model by injecting maternal antibodies.
- Assessed antibody-mediated L-type Ca channel inhibition.
Main Results:
- Animal models replicated CHB and other conduction abnormalities like bradycardia.
- Maternal antibodies from CHB-affected mothers inhibited L-type Ca channels.
- Evidence supports an etiologic role for antibody/Ca channel interactions in CHB.
- Identified antibody-mediated L-type Ca channel inhibition as a key factor.
Conclusions:
- Maternal autoantibodies and L-type Ca channel inhibition are strongly implicated in CHB pathogenesis.
- Animal models provide valuable insights into CHB mechanisms.
- Additional unknown factors likely contribute to the full manifestation of CHB.
Abstract:
Congenital heart block (CHB), detected at or before birth in a structurally normal heart, is strongly associated with autoantibodies reactive with the intracellular soluble ribonucleoproteins 48kD SSB/La, 52kD SSA/Ro, and 60kD SSA/Ro. CHB is presumed to be due to the transplacental passage of autoantibodies from the mother into the fetal circulation. Varying degrees of heart block have been reported. Although second degree block has, on rare occasion, reverted to normal sinus rhythm, complete atrio-ventricular (AV) block is irreversible. CHB carries substantial mortality and morbidity, with > 60% of affected children requiring lifelong pacemakers. The recurrence rate exceeds, by at least twofold, that of the first birth and is likely to influence the decision to have more children. Curiously, the mother's heart is almost never affected (with complete heart block) despite exposure to identical circulating autoantibodies. As part of our continuing effort to understand the complex factors contributing to the pathogenesis of CHB, we have established an animal model of CHB by immunizing female mice with recombinant proteins/antigens, reproduced the human complete AV block in an isolated Langendorff perfused fetal heart, and correlated these findings with L-type Ca channel inhibition by maternal antibodies from mothers of children with CHB. In addition, we established a passive animal model by directly injecting maternal antibodies into pregnant mice and reported significant sinus bradycardia, indicating that the spectrum of conduction abnormalities may extend beyond the AV node. All together, the data provided strong evidence supporting an etiologic role of antibody/Ca channel involvement in the pathogenesis of CHB. However, other yet unknown factors seem necessary to explain the full expression of CHB.
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