Myocardium

Displaying 1 - 5 of 5CSV
Huynh, P., Hoffmann, J. D., Gerhardt, T., Kiss, M. G., Zuraikat, F. M., Cohen, O., Wolfram, C., Yates, A. G., Leunig, A., Heiser, M., Gaebel, L., Gianeselli, M., Goswami, S., Khamhoung, A., Downey, J., Yoon, S., Chen, Z., Roudko, V., Dawson, T., … McAlpine, C. S. (2024). Myocardial infarction augments sleep to limit cardiac inflammation and damage. Nature, 635(8037), 168–177. https://doi.org/10.1038/s41586-024-08100-w
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Lumish, H. S., Sherrid, M. V., Janssen, P. M. L., Ferrari, G., Hasegawa, K., Castillero, E., Adlestein, E., Swistel, D. G., Topkara, V. K., Maurer, M. S., Reilly, M. P., & Shimada, Y. J. (2024). Comprehensive Proteomic Profiling of Human Myocardium Reveals Signaling Pathways Dysregulated in Hypertrophic Cardiomyopathy. Journal of the American College of Cardiology, 84(20), 1999–2011. https://doi.org/10.1016/j.jacc.2024.07.043
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Mehlman, Y., Valledor, A. F., Moeller, C., Rubinstein, G., Lotan, D., Rahman, S., Oh, K. T., Bae, D., DeFilippis, E. M., Lin, E. F., Lee, S. H., Raikhelkar, J. K., Fried, J., Theodoropoulos, K., Colombo, P. C., Yuzefpolskaya, M., Latif, F., Clerkin, K. J., Sayer, G. T., & Uriel, N. (2023). The utilization of molecular microscope in management of heart transplant recipients in the era of noninvasive monitoring. Clinical Transplantation, 37(12). Portico. https://doi.org/10.1111/ctr.15131
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de Sena-Tomás, C., Aleman, A. G., Ford, C., Varshney, A., Yao, D., Harrington, J. K., Saúde, L., Ramialison, M., & Targoff, K. L. (2022). Activation of Nkx2.5 transcriptional program is required for adult myocardial repair. Nature Communications, 13(1). https://doi.org/10.1038/s41467-022-30468-4
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Kushner, J. S., Liu, G., Eisert, R. J., Bradshaw, G. A., Pitt, G. S., Hinson, J. T., Kalocsay, M., & Marx, S. O. (2022). Detecting Cardiovascular Protein-Protein Interactions by Proximity Proteomics. Circulation Research, 130(2), 273–287. https://doi.org/10.1161/circresaha.121.319810
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