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Cells|February 23, 2024
The Role of Immune Cells Driving Electropathology and Atrial FibrillationMingxin Huang, Fabries G Huiskes, Natasja M S de Groot, et al.
Cell Stress & Chaperones|August 11, 2007
Beat shock proteins and atrial fibrillationHarm H Kampinga, Robert H Henning, Isabelle C van Gelder, et al.
Cell Stress & Chaperones|May 10, 2017
The protective role of small heat shock proteins in cardiac diseases: key role in atrial fibrillationXu Hu, Denise M S Van Marion, Marit Wiersma, et al.
International Journal of Molecular Sciences|August 27, 2021
The Role of Mitochondrial Dysfunction in Atrial Fibrillation: Translation to Druggable Target and Biomarker DiscoveryLisa Pool, Leonoor F J M Wijdeveld, Natasja M S de Groot, et al.
Journal of Molecular and Cellular Cardiology|October 30, 2024
Metabolomics in atrial fibrillation - A review and meta-analysis of blood, tissue and animal modelsLeonoor F J M Wijdeveld, Amelie C T Collinet, Fabries G Huiskes, et al.
Frontiers in Physiology|March 1, 2012
Loss of proteostatic control as a substrate for atrial fibrillation: a novel target for upstream therapy by heat shock proteinsRoelien A M Meijering, Deli Zhang, Femke Hoogstra-Berends, et al.
Cardiovascular Research|February 2, 2008
Effects of a heat shock protein inducer on the atrial fibrillation substrate caused by acute atrial ischaemiaMasao Sakabe, Akiko Shiroshita-Takeshita, Ange Maguy, et al.
Cardiovascular Research|February 3, 2007
Effects of simvastatin on the development of the atrial fibrillation substrate in dogs with congestive heart failureAkiko Shiroshita-Takeshita, Bianca J J M Brundel, Brett Burstein, et al.
Cells|February 15, 2022
Cytoskeletal Protein Variants Driving Atrial Fibrillation: Potential Mechanisms of ActionStan W van Wijk, Wei Su, Leonoor F J M Wijdeveld, et al.
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