Essers, Maria Cristina

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Journal Article

Ozhathil, Lijo Cherian; Rougier, Jean-Sébastien; Arullampalam, Prakash; Essers, Maria C.; Ross-Kaschitza, Daniela; Abriel, Hugues (2021). Deletion of Trpm4 Alters the Function of the Nav1.5 Channel in Murine Cardiac Myocytes. International journal of molecular sciences, 22(7) MDPI 10.3390/ijms22073401

Hu, Yaopeng; Ross Kaschitza, Daniela; Essers, Maria; Arullampalam, Prakash; Fujita, Takayuki; Abriel, Hugues; Inoue, Ryuji (2021). Pathological activation of CaMKII induces arrhythmogenicity through TRPM4 overactivation. Pflügers Archiv : European journal of physiology, 473(3), pp. 507-519. Springer 10.1007/s00424-020-02507-w

Gillet, Ludovic; Guichard, Sabrina; Essers, Maria C.; Rougier, Jean-Sébastien; Abriel, Hugues (2019). Dystrophin and calcium current are decreased in cardiomyocytes expressing Cre enzyme driven by αMHC but not TNT promoter. Scientific reports, 9(1), p. 19422. Springer Nature 10.1038/s41598-019-55950-w

Rougier, Jean-Sébastien; Essers, Maria Cristina; Gillet, Ludovic; Guichard, Sabrina Lucienne Anny; Sonntag, Stephan; Shmerling, Doron; Abriel, Hugues (2019). A Distinct Pool of Nav1.5 Channels at the Lateral Membrane of Murine Ventricular Cardiomyocytes. Frontiers in physiology, 10(834), p. 834. Frontiers Research Foundation 10.3389/fphys.2019.00834

Gillet, Ludovic; Rougier, Jean-Sébastien; Shy, Diana Amy; Sonntag, Stephan; Mougenot, Nathalie; Essers, Maria Cristina; Shmerling, Doron; Balse, Elise; Hatem, Stéphane N; Abriel, Hugues (2015). Cardiac-specific ablation of synapse-associated protein SAP97 in mice decreases potassium currents but not sodium current. Heart rhythm, 12(1), pp. 181-192. Elsevier 10.1016/j.hrthm.2014.09.057

Shy, Diana Amy; Gillet, Ludovic; Ogrodnik, Jakob; Albesa, Maxime; Verkerk, Arie O; Wolswinkel, Rianne; Rougier, Jean-Sébastien; Barc, Julien; Essers, Maria Cristina; Syam, Ninda Ratna Maharani; Marsman, Roos F; van Mil, Anneke M; Rotman, Samuel; Redon, Richard; Bezzina, Connie R; Remme, Carol Ann; Abriel, Hugues (2014). PDZ domain-binding motif regulates cardiomyocyte compartment-specific NaV1.5 channel expression and function. Circulation, 130(2), pp. 147-160. Lippincott Williams & Wilkins 10.1161/CIRCULATIONAHA.113.007852

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