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Effects of aristolochic acid I and/or hypokalemia on tubular damage in C57BL/6 rat with aristolochic acid nephropathy
Joo-Hark Yi, Sang-Woong Han, Wan-Young Kim, Jin Kim, Moon-Hyang Park
Korean J Intern Med. 2018;33(4):763-773.   Published online 2017 February 15    DOI: https://doi.org/10.3904/kjim.2016.097

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Effects of aristolochic acid I and/or hypokalemia on tubular damage in C57BL/6 rat with aristolochic acid nephropathy
The Korean Journal of Internal Medicine. 2018;33(4):763-773   Crossref logo
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When is “aristolochic acid nephropathy” more accurate than “Chinese herbs nephropathy”?
Kidney International. 2002;61(3):1178   Crossref logo
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Exceptionally long-term persistence of DNA adducts formed by carcinogenic aristolochic acid I in renal tissue from patients with aristolochic acid nephropathy
International Journal of Cancer. 2014;135(2):502-507   Crossref logo
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«Suspects» in Etiology of Endemic Nephropathy: Aristolochic Acid versus Mycotoxins
Toxins. 2010;2(6):1414-1427   Crossref logo
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NO clue to pathogenesis of aristolochic acid nephropathy
Experimental Physiology. 2015;101(1):33-33   Crossref logo
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Aristolochic acid nephropathy: Harbinger of a global iatrogenic disease
Environmental and Molecular Mutagenesis. 2012;54(1):1-7   Crossref logo
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Aristolochic acid nephropathy: A worldwide problem
Kidney International. 2008;74(2):158-169   Crossref logo
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Short-term toxicity of aristolochic acid, aristolochic acid-I and aristolochic acid-II in rats
Food and Chemical Toxicology. 2008;46(3):1157-1163   Crossref logo
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Chinese herbs nephropathy and Balkan endemic nephropathy: toward a single entity, aristolochic acid nephropathy
Kidney International. 2012;81(6):513-515   Crossref logo
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Influence and analysis of low-dosage steroid therapy in severe aristolochic acid nephropathy patients
Nephrology. 2016;21(10):835-840   Crossref logo
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