A novel mathematical model of protein-bound uremic toxin kinetics during hemodialysis
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-017-10981-z.pdf
Reference52 articles.
1. Meyer, T. W. et al. Increasing dialysate flow and dialyzer mass transfer area coefficient to increase the clearance of protein-bound solutes. J Am Soc Nephol 15, 1927–1935 (2004).
2. Sirich, T. L., Meyer, T. W., Gondouin, B., Brunet, P. & Niwa, T. Protein-bound molecules: a large family with a bad character. Seminars in nephrology 34, 106–117 (2014).
3. Itoh, Y., Ezawa, A., Kikuchi, K., Tsuruta, Y. & Niwa, T. Protein-bound uremic toxins in hemodialysis patients measured by liquid chromatography/tandem mass spectrometry and their effects on endothelial ROS production. Anal Bioanal Chem 403, 1841–1850 (2012).
4. Eloot, S. et al. Protein-bound uremic toxin profiling as a tool to optimize hemodialysis. PloS one 11, e0147159 (2016).
5. Liabeuf, S., Villain, C. & Massy, Z. A. Protein-bound toxins: has the Cinderella of uraemic toxins turned into a princess? Clin Sci 130, 2209–2216 (2016).
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