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Journal of Cardiovascular Development and Disease|May 5, 2021
Regulation of Cardiac Conduction and Arrhythmias by Ankyrin/Spectrin-Based Macromolecular ComplexesDrew Nassal, Jane Yu, Dennison Min, et al.The Journal of Biological Chemistry|June 21, 2021
Ca2+/calmodulin kinase II-dependent regulation of βIV-spectrin modulates cardiac fibroblast gene expression, proliferation, and contractilityDrew M Nassal, Nehal J Patel, Sathya D Unudurthi, et al.Expert Opinion on Therapeutic Targets|January 25, 2022
Emerging therapeutic targets for cardiac hypertrophyAlexander J Winkle, Drew M Nassal, Rebecca Shaheen, et al.Cells|March 11, 2023
Spectrin-Based Regulation of Cardiac Fibroblast Cell-Cell CommunicationDrew M Nassal, Rebecca Shaheen, Nehal J Patel, et al.Circulation Research|November 6, 2025
The βIV-Spectrin/STAT3 Complex Regulates the Orientation of Cardiac Hypertrophic GrowthDrew M Nassal, Shivangi Mohta, Rebecca Shaheen, et al.Journal of Biomedical Materials Research. Part A|July 1, 2021
Superporous agarose scaffolds for encapsulation of adult human islets and human stem-cell-derived β cells for intravascular bioartificial pancreas applicationsRebecca Shaheen, Rachel E Gurlin, Rebecca Gologorsky, et al.Bioengineering & Translational Medicine|March 17, 2023
Characterization of human islet function in a convection-driven intravascular bioartificial pancreasAna G Santandreu, Parsa Taheri-Tehrani, Benjamin Feinberg, et al.The Journal of Biological Chemistry|March 6, 2021
Giant ankyrin-G regulates cardiac functionOmer Cavus, Jordan Williams, Hassan Musa, et al.American Journal of Physiology. Heart and Circulatory Physiology|May 19, 2025
The two-pore K+ channel TREK-1 regulates pressure overload-induced cardiac remodelingCemantha M L Johnson, Drew M Nassal, Alexander J Winkle, et al.Pageof 1