Na/K-ATPase Signaling and Salt Sensitivity: The Role of Oxidative Stress
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Other than genetic regulation of salt sensitivity of blood pressure, many factors have been shown to regulate renal sodium handling which contributes to long-term blood pressure regulation and have been extensively reviewed. Here we present our progress on the Na/K-ATPase signaling mediated sodium reabsorption in renal proximal tubules, from cardiotonic steroids-mediated to reactive oxygen species (ROS)-mediated Na/K-ATPase signaling that contributes to experimental salt sensitivity.
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Yan Y, Wang J, Chaudhry M, Nie Y, Sun S, Carmon J Int J Mol Sci. 2019; 20(14).
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Estape E, Gonzalez-Sepulveda L, Wei W, Rodriguez-Rivera I, Torres-Negron I Int Arch Transl Med. 2019; 4(1).
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Sodhi K, Nichols A, Mallick A, Klug R, Liu J, Wang X Sci Rep. 2018; 8(1):9721.
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