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Simulation of cardiac arrhythmias in human induced pluripotent stem cell-derived cardiomyocytes
Artikel
Bommer, Thea, Knierim, Maria, Unsöld, Julia, Riedl, Dominic, Stengel, Laura, Paulus, Michael
, Körtl, Thomas, Liaw, Norman, Maier, Lars S.
, Streckfuss-Bömeke, Katrin, Sossalla, Samuel und Pabel, Steffen
(2024)
Simulation of cardiac arrhythmias in human induced pluripotent stem cell-derived cardiomyocytes.
PLOS ONE 19 (9), e0310463.
DOI zum Zitieren dieses Dokuments: 10.5283/epub.80483
Zusammenfassung
The effects and mechanisms of cardiac arrhythmias are still incompletely understood and an important subject of cardiovascular research. A major difficulty for investigating arrhythmias is the lack of appropriate human models. Here, we present a protocol for a translational simulation of different types of arrhythmias using human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CM) and ...
The effects and mechanisms of cardiac arrhythmias are still incompletely understood and an important subject of cardiovascular research. A major difficulty for investigating arrhythmias is the lack of appropriate human models. Here, we present a protocol for a translational simulation of different types of arrhythmias using human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CM) and electric cell culture pacing. The protocol comprises the handling of ventricular and atrial hiPSC-CM before and during in vitro arrhythmia simulation and possible arrhythmia simulation protocols mimicking clinical arrhythmias like atrial fibrillation. Isolated or confluent hiPSC-CM can be used for the simulation. In vitro arrhythmia simulation did not impair cell viability of hiPSC-CM and could reproduce arrhythmia associated phenotypes of patients. The use of hiPSC-CM enables patient-specific studies of arrhythmias, genetic interventions, or drug-screening. Thus, the in vitro arrhythmia simulation protocol may offer a versatile tool for translational studies on the mechanisms and treatment options of cardiac arrhythmias.
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| Dokumentenart | Artikel | ||||
| Titel eines Journals oder einer Zeitschrift | PLOS ONE | ||||
| Verlag | PLOS | ||||
| Open Access Art | CC-Lizenz | ||||
| Band | 19 | ||||
| Nummer des Zeitschriftenheftes oder des Kapitels | 9 | ||||
| Seitenbereich | e0310463 | ||||
| Datum | 27 September 2024 | ||||
| Veröffentlichungsdatum | 28 Aug 2026 06:21 | ||||
| Institutionen | Medizin > Lehrstuhl für Innere Medizin II | ||||
| Identifikationsnummer |
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| Dewey-Dezimal-Klassifikation | 600 Technik, Medizin, angewandte Wissenschaften > 610 Medizin | ||||
| Status | Veröffentlicht | ||||
| Begutachtet | Ja, diese Version wurde begutachtet | ||||
| An der Universität Regensburg entstanden | Zum Teil | ||||
| URN der UB Regensburg | urn:nbn:de:bvb:355-epub-804836 | ||||
| Dokumenten-ID | 80483 |
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