Gene editing reverses arrhythmia susceptibility in humanized PLN-R14del mice: modelling a European cardiomyopathy with global impact
Cardiovascular Research

Abstract
A mutation in the phospholamban (PLN) gene, leading to deletion of Arg14 (R14del), has been associated with malignant arrhythmias and ventricular dilation. Identifying pre-symptomatic carriers with vulnerable myocardium is crucial because arrhythmia can result in sudden cardiac death, especially in young adults with PLN-R14del mutation. This study aimed at assessing the efficiency and efficacy of
Humanized mice were generated expressing human wild-type (hPLN-WT) or mutant (hPLN-R14del) PLN in the heterozygous state, mimicking human carriers. Cardiac magnetic resonance imaging at 12 weeks of age showed bi-ventricular dilation and increased stroke volume in mutant vs. WT mice, with no deficit in ejection fraction or cardiac output. Challenge of
This study is the first to show that disruption of hPLN-R14del allele by AAV9-CRISPR/Cas9 improves cardiac function and reduces VT susceptibility in humanized PLN-R14del mice, offering preclinical evidence for translatable approaches to therapeutically suppress the arrhythmogenic phenotype in human patients with PLN-R14del disease.
Contributors

Lauren Wills
Author

Mathieu Nonnenmacher
Author

Kobra Haghighi
Author

Kevin D Costa
Author

Irene C Turnbull
Author

Manuel Mayr
Author
National Heart and Lung Institute Imperial College London , United Kingdom of Great Britain & Northern Ireland

Chen-Leng Cai
Author

Jaydev Dave
Author

Evangelia G Kranias
Author

Nour Raad
Author

Nishka Mittal
Author

Lu Zhang
Author

Fadi G Akar
Author

Roger J Hajjar
Author

Anthony Fargnoli
Author

Jae Gyun Oh
Author

Maria Elisabetta Savoia
Author

Jens Hansen
Author

Marika Fava
Author

Xiaoke Yin
Author

Konstantinos Theofilatos
Author

Delaine Ceholski
Author

Erik Kohlbrenner
Author

Dongtak Jeong
Author
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