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Updated: Aug 5, 2026

Whole-Mount Immunofluorescence Staining, Confocal Imaging and 3D Reconstruction of the Sinoatrial and Atrioventricular Node in the Mouse
Published on: December 22, 2020
Connexin40-deficient mice exhibit atrioventricular nodal and infra-Hisian conduction abnormalities
B A VanderBrink1, C Sellitto, S Saba
1Cardiac Arrhythmia Service, New England Medical Center, Boston, Massachusetts 02111, USA.
Insights
Connexin40 (Cx40) deficiency in mice causes significant delays in atrioventricular (AV) nodal conduction, not just His-Purkinje function. This highlights Cx40's crucial role in normal heart electrical activity.
Area of Science:
- Cardiovascular Electrophysiology
- Molecular Cardiology
- Ion Channel Research
Background:
- Connexin40 (Cx40) is expressed in the atria and His-Purkinje system.
- Previous studies suggested Cx40 deficiency causes AV conduction disturbances, likely due to His-Purkinje dysfunction.
- Limited His-bundle recordings in mice hindered understanding Cx40's role.
Purpose of the Study:
- To investigate the physiological importance of Cx40 in AV conduction using a novel His-bundle recording technique in Cx40-deficient mice.
- To determine if Cx40 deficiency impacts both His-Purkinje and AV nodal function.
Main Methods:
- Electrophysiology study in 10 Cx40-/- mice and 11 Cx40+/+ controls.
- Utilized a novel technique for His-bundle electrogram recordings in vivo.
- Performed blinded, closed-chest recordings in 9-12 week old mice.
Main Results:
- Cx40-/- mice showed significantly prolonged PR intervals (44.6±6.4 ms vs 36.0±4.1 ms).
- HV intervals (14.0±3.0 ms vs 10.4±1.2 ms) and AH intervals (33.2±4.8 ms vs 27.1±3.7 ms) were also significantly prolonged.
- AV Wenckebach cycle lengths and AV nodal refractory periods were extended in Cx40-/- mice.
Conclusions:
- Cx40 deficiency causes significant delays in infra-Hisian conduction, consistent with its role in the His-Purkinje system.
- Cx40 deficiency also impacts AV nodal conduction parameters, suggesting a role in atrionodal conduction.
- Cx40 plays a critical role in both AV nodal and His-bundle conduction.
Introduction:
Previous electrophysiologic investigations have described AV conduction disturbances in connexin40 (Cx40)-deficient mice. Because expression of Cx40 occurs predominantly in the atria and His-Purkinje system of the mouse heart, the AV conduction disturbances were thought to be secondary to disruption in His-Purkinje function. However, the lack of a His-bundle electrogram recording in the mouse has limited further investigation of the importance of Cx40. Using a novel technique to record His-bundle recordings in Cx40-deficient mice, we define the physiologic importance of deficiencies in Cx40.
Methods And Results:
Ten Cx40-/- mice and 11 Cx40+/+ controls underwent a blinded, in vivo, closed chest electrophysiology study at 9 to 12 weeks of age. In the Cx40-/- mice, the PR interval was significantly longer compared with Cx40+/+ mice (44.6+/-6.4 msec vs 36.0+/-4.1 msec, P = 0.002). Not only the HV interval (14.0+/-3.0 msec vs 10.4+/-1.2 msec, P = 0.003) but also the AH interval (33.2+/-4.8 msec vs 27.1+/-3.7 msec, P = 0.006), AV Wenckebach cycle lengths, and AV nodal effective and functional refractory periods were prolonged in Cx40-/- compared with Cx40+/+ mice.
Conclusion:
Cx40-deficient mice exhibit significant delay not only in infra-Hisian conduction, as would be expected from the expression of Cx40 in the His-Purkinje system but also in the electrophysiologic parameters that reflect AV nodal conduction. Our data suggest a significant role of Cx40 in atrionodal conduction and/or in proximal His-bundle conduction.
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