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A recent study explored the emerging role of KCNQ5 potassium channels in vascular smooth muscle regulation and their potential as therapeutic targets to promote vasodilation and manage blood pressure. Hear from Dr. Geoffrey Abbott as he dives into cutting-edge research using a CRISPR-generated KCNQ5 knockout rat model, revealing critical insights into adrenergic signaling, vascular reactivity, and the vascular effects of aloperine. Dr. Abbott is a Professor and Interim Chair of Physiology and Biophysics at the UC Irvine School of Medicine, and he also spoke about this topic at the 2025 American Heart Association Scientific Sessions.
By ReachMD3.8
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A recent study explored the emerging role of KCNQ5 potassium channels in vascular smooth muscle regulation and their potential as therapeutic targets to promote vasodilation and manage blood pressure. Hear from Dr. Geoffrey Abbott as he dives into cutting-edge research using a CRISPR-generated KCNQ5 knockout rat model, revealing critical insights into adrenergic signaling, vascular reactivity, and the vascular effects of aloperine. Dr. Abbott is a Professor and Interim Chair of Physiology and Biophysics at the UC Irvine School of Medicine, and he also spoke about this topic at the 2025 American Heart Association Scientific Sessions.

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