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Clinical Study

Circulating Levels of Renalase, Norepinephrine, and Dopamine in Dialysis Patients

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Pages 673-679 | Received 27 Nov 2012, Accepted 15 Feb 2013, Published online: 27 Mar 2013

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Edyta Zbroch, Dominika Musialowska, Ewa Koc-Zorawska & Jolanta Malyszko. (2016) Age influence on renalase and catecholamines concentration in hypertensive patients, including maintained dialysis. Clinical Interventions in Aging 11, pages 1545-1550.
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Thomas C. Pointer, Fred S. Gorelick & Gary V. Desir. (2021) Renalase: A Multi-Functional Signaling Molecule with Roles in Gastrointestinal Disease. Cells 10:8, pages 2006.
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Magda Wiśniewska, Natalia Serwin, Violetta Dziedziejko, Małgorzata Marchelek-Myśliwiec, Barbara Dołęgowska, Leszek Domański, Kazimierz Ciechanowski, Krzysztof Safranow, Tomasz Gołębiowski & Andrzej Pawlik. (2021) The Effect of Bilateral Nephrectomy on Renalase and Catecholamines in Hemodialysis Patients. International Journal of Environmental Research and Public Health 18:12, pages 6282.
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Ana Cerqueira, Janete Quelhas-Santos, Inês Ferreira, Susana Sampaio, Miguel Relvas, Nídia Marques, Cláudia Camila Dias & Manuel Pestana. (2021) Circulating Renalase as Predictor of Renal and Cardiovascular Outcomes in Pre-Dialysis CKD Patients: A 5-Year Prospective Cohort Study. Life 11:3, pages 210.
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Magda Wisniewska, Natalia Serwin, Violetta Dziedziejko, Małgorzata Marchelek-Mysliwiec, Barbara Dołegowska, Leszek Domanski, Kazimierz Ciechanowski, Krzysztof Safranow & Andrzej Pawlik. (2021) Renalase in Haemodialysis Patients with Chronic Kidney Disease. Journal of Clinical Medicine 10:4, pages 680.
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Na-Na You, Wei-Hong Jiang, Ming-Yuan Lin, Xiao-Gang Li, Yu-Yan Wu, Jia-Ying Li, Xiao-Yu Zhou, Ze-Wen Ding, Jun-Wen Wang, Xie-Xiong Zhao, Hui-Ling Chen & Hui-Ting Tang. (2020) The role of urinary renalase on early-stage renal damage in Chinese adults with primary hypertension. Experimental Biology and Medicine 245:6, pages 576-582.
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Seon Ha Baek, Ran-hui Cha, Shin Wook Kang, Cheol Whee Park, Dae Ryong Cha, Sung Gyun Kim, Sun Ae Yoon, Sejoong Kim, Sang-Youb Han, Jung Hwan Park, Jae Hyun Chang, Chun Soo Lim, Yon Su Kim & Ki Young Na. (2019) Circulating renalase predicts all-cause mortality and renal outcomes in patients with advanced chronic kidney disease. The Korean Journal of Internal Medicine 34:4, pages 858-866.
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Hamed Akbari, Gholamreza Asadikaram, Sina Vakili & Mohammad Masoumi. (2018) Atorvastatin and losartan may upregulate renalase activity in hypertension but not coronary artery diseases: The role of gene polymorphism. Journal of Cellular Biochemistry 120:6, pages 9159-9171.
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Charlotte Perrett & Debasish Banerjee. (2019) Takotsubo Syndrome in the Dialysis Patient - Challenging Diagnosis in a Unique Population. Indian Journal of Nephrology 29:6, pages 385.
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A. T. Kopylov, V. I. Fedchenko, O. A. Buneeva, N. V. Pyatakova, V. G. Zgoda & A. E. Medvedev. (2018) A new method for quantitative determination of renalase based on mass spectrometric determination of a proteotypic peptide labelled with stable isotopes. Rapid Communications in Mass Spectrometry 32:15, pages 1263-1270.
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Maciej T. Wybraniec, Maria Bożentowicz-Wikarek, Jerzy Chudek & Katarzyna Mizia-Stec. (2018) Urinary renalase concentration in patients with preserved kidney function undergoing coronary angiography. Nephrology 23:2, pages 133-138.
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Anna Stec. (2017) Rs10887800 renalase gene polymorphism influences the level of circulating renalase in patients undergoing hemodialysis but not in healthy controls. BMC Nephrology 18:1.
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Graham R. Moran & Matthew R. Hoag. (2017) The enzyme: Renalase. Archives of Biochemistry and Biophysics 632, pages 66-76.
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Ebru Gok Oguz, Hadim Akoglu, Gulay Ulusal Okyay, Guner Karaveli Gursoy, Tolga Yildirim, Ozgur Merhametsiz, Tolga Cimen, Basol Canbakan, Ekrem Yeter & M. Deniz Ayli. (2017) Increased serum renalase in peritoneal dialysis patients: Is it related to cardiovascular disease risk?. Nefrología (English Edition) 37:2, pages 189-194.
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Ebru Gok Oguz, Hadim Akoglu, Gulay Ulusal Okyay, Guner Karaveli Gursoy, Tolga Yildirim, Ozgur Merhametsiz, Tolga Cimen, Basol Canbakan, Ekrem Yeter & M. Deniz Ayli. (2017) Increased serum renalase in peritoneal dialysis patients: Is it related to cardiovascular disease risk?. Nefrología 37:2, pages 189-194.
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X. Li, M. Lin, Z. Xie, R. Huang, A.F. Chen & W. Jiang. (2015) Establishing a low-expression renalase gene model in cardiac tissue of Sprague–Dawley ratsEtablierung eines Genmodells für niedrig exprimierte Renalase in kardialem Gewebe von Sprague-Dawley-Ratten. Herz 41:4, pages 326-330.
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I. S. Severina, V. I. Fedchenko, A. V. Veselovsky & A. E. Medvedev. (2016) The history of renalase from amine oxidase to α-NAD(P)H-oxidase/anomerase. Biochemistry (Moscow) Supplement Series B: Biomedical Chemistry 10:2, pages 97-109.
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Maciej T. Wybraniec & Katarzyna Mizia-Stec. (2016) Renalase and Biomarkers of Contrast-Induced Acute Kidney Injury. Cardiorenal Medicine 6:1, pages 25-36.
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Graham R. Moran. (2016) The catalytic function of renalase: A decade of phantoms. Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics 1864:1, pages 177-186.
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I.S. Severina, V.I. Fedchenko, A.V. Veselovsky & A.E. Medvedev. (2015) The history of renalase from amine oxidase to alpha-NAD(P)H-oxidase/anomerase. Biomeditsinskaya Khimiya 61:6, pages 667-679.
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Dominika Maciorkowska, Edyta Zbroch & Jolanta Malyszko. (2015) Circulating renalase, catecholamines, and vascular adhesion protein 1 in hypertensive patients. Journal of the American Society of Hypertension 9:11, pages 855-864.
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Brett A. Beaupre, Matthew R. Hoag & Graham R. Moran. (2015) Renalase does not catalyze the oxidation of catecholamines. Archives of Biochemistry and Biophysics 579, pages 62-66.
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Valerii I. Fedchenko, Olga A. Buneeva, Arthur T. Kopylov, Alexander V. Veselovsky, Victor G. Zgoda & Alexei E. Medvedev. (2015) Human urinary renalase lacks the N-terminal signal peptide crucial for accommodation of its FAD cofactor. International Journal of Biological Macromolecules 78, pages 347-353.
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Matthew R. Hoag, Joseph Roman, Brett A. Beaupre, Nicholas R. Silvaggi & Graham R. Moran. (2015) Bacterial Renalase: Structure and Kinetics of an Enzyme with 2- and 6-Dihydro-β-NAD(P) Oxidase Activity from Pseudomonas phaseolicola . Biochemistry 54:24, pages 3791-3802.
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Jolanta Malyszko, Hanna Bachorzewska-Gajewska & Slawomir Dobrzycki. (2015) Renalase, kidney and cardiovascular disease: Are they related or just coincidentally associated?. Advances in Medical Sciences 60:1, pages 41-49.
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Feng Wang, Junhui Li, Tao Xing, Yuting Xie & Niansong Wang. (2014) Serum renalase is related to catecholamine levels and renal function. Clinical and Experimental Nephrology 19:1, pages 92-98.
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Brett A. Beaupre, Matt R. Hoag, Joseph Roman, F. Holger Försterling & Graham R. Moran. (2015) Metabolic Function for Human Renalase: Oxidation of Isomeric Forms of β-NAD(P)H that Are Inhibitory to Primary Metabolism. Biochemistry 54:3, pages 795-806.
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Maciej T. Wybraniec, Katarzyna Mizia-Stec, Olga Trojnarska, Jerzy Chudek, Beata Czerwieńska, Maria Wikarek & Andrzej Więcek. (2014) Low plasma renalase concentration in hypertensive patients after surgical repair of coarctation of aorta. Journal of the American Society of Hypertension 8:7, pages 464-474.
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Weihong Jiang. (2014) Renalase, a new secretory enzyme: Its role in hypertensive-ischemic cardiovascular diseases. Medical Science Monitor 20, pages 688-692.
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Xiaogang Li, Weihong Jiang, Luhong Li, Ruixia Huang, Qiong Yang, Yan Yang, Yuan Hong & Xiaohong Tang. (2014) Renalase Gene Polymorphism in Patients with Hypertension and Concomitant Coronary Heart Disease. Kidney and Blood Pressure Research 39:1, pages 9-16.
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Brett A. Beaupre, Brenton R. Carmichael, Matthew R. Hoag, Dhara D. Shah & Graham R. Moran. (2013) Renalase Is an α-NAD(P)H Oxidase/Anomerase. Journal of the American Chemical Society 135:37, pages 13980-13987.
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