@article{b6872ff6b5f54f3b861a0cf3b220a79a,
title = "Attenuation of Na/K-ATPase Mediated Oxidant Amplification with pNaKtide Ameliorates Experimental Uremic Cardiomyopathy",
keywords = "Na/K-ATPase, oxidant stress, uremic cardiomyopathy, HO-1, CoPP, attenuation",
author = "Jiang Liu and Jiang Tian and Muhammad Chaudhry and Kyle Maxwell and Yanling Yan and Xiaoliang Wang and Shah, \{Preeya T.\} and Khawaja, \{Asad A.\} and Rebecca Martin and Robinette, \{Tylor J.\} and Adee El-Hamdani and Dodrill, \{Michael W.\} and Komal Sodhi and Drummond, \{Christopher A.\} and Haller, \{Steven T.\} and Keenedy, \{David J.\} and Abraham, \{Nader G.\} and Zijian Xie and Shapiro, \{Joseph I\}",
note = "Liu J, Tian J, Chaudhry M, Maxwell K, Yan Y, Wang X, Shah PT, Khawaja AA, Martin R, Robinette TJ, El-Hamdani A, Dodrill M, Sodhi K, Christopher A, Drummond ST, Haller DJ, Kennedy, DJ, Abraham NG, Xie Z \& Shapiro JI. Attenuation of Na/K-ATPase mediated oxidant amplification with pNaKtide ameliorates experimental uremic cardiomyopathy. Scientific Reports. 2016 Oct 4;6:34592.",
year = "2016",
month = oct,
day = "4",
language = "American English",
journal = "Biochemistry and Microbiology",
}