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Table 1. Food & micronutrient interactions with iron


University of Bridgeport. Nutrition Institute, Bridgeport, CT.


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14. arychansi R., Houston, D.S. (2008). Anaemia of chronic disease: a harmful disorder or an adaptive, benecial response CMAJ. 179(4):333-7.


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17. Kim, Y.L., Kim, H., Kwon, Y.E., Ryu, R., Lee, M.J., Park, K.S., Ryu, H.J., Park, J.T., Oh,


H.J., Han, S.H., Yoo, T.H.,


Kan, S.W. (2016). Association between Vitamin D Deciency and Anemia in Patients with End-Stage Renal Disease: A Cross-Sectional Study. Yonsei Med J. Sep;57(5):1159-64.


18. Fraser, S.D.S., Roderick, P.J., May, C.R., McIntyre, N., McIntyre, C., Fluck, R.J., Shardlow, A., Taal, M.W. (2015). The burden of comorbidity in people with chronic kidney disease stage 3: a cohort study. BMC Nephrol. 16: 193.


19. Stauffer, M.E., Fan, T. (2014). Prevalence of Anemia in Chronic Kidney Disease in the United States. PLoS One. 9(1): e84943.


20. Wood, M.J., Skoien, R., Powell, L.W. (2009). The global THE ORIGINAL INTERNIST MARCH 2017


burden of iron overload. Hepatol nt. Sep; 3(3): 434444. Published online 2009 Jul 29. doi: 10.1007/s12072-009- 9144-z.


21. hang, Q.L., Rothenbacher, D. (2008). Prevalence of chronic kidney disease in population- based studies: Systematic review. BMC Public Health. 2008; 8: 117. doi: 10.1186/1471- 2458-8-117


22. Shibusa, K., Hatayama, M., Toki, Y., Yamamoto, M., Ito, S,. Shindo, M., Fujiya, M., Niizeki, N., Tomoda, Y., Kawai, Y., Addo, L., Ikuta, K. (2015). Evaluation of Basic Performance of Point Strip ferritin-3000 for Simple and Rapid Quantication of Serum Ferritin. Rinsho Byori. Dec;63(12):1371-6.


23. Girelli, D., Nemeth, E., Swinkels, D.W. (2016). Hepcidin in the diagnosis of iron disorders Blood. 127:2809-2813; doi: https://doi.org/10.1182/blood-2015-12-639112


24. Actor, J.K., Hwang, S.A., Kruzel, M.L. (2009) Lactoferrin as a Natural Immune Modulator. Curr Pharm Des. 15(17): 19561973


25. Ren, F., Qian, X.H., Qian, X.L. (2016). Astragalus polysaccharide upregulates hepcidin and reduces iron overload in mice via activation of p38 mitogen-activated protein kinase. Biochem Biophys Res Commun. Mar 25;472(1):163-8. doi: 10.1016/j.bbrc.2016.02.088.


26. 26. hang, Y., Li, M.M., en, F., Ya, C., Wang, K.P. (2012). Study to establish the role of JAK2 and SMAD1/5/8 pathways in the inhibition of hepcidin by polysaccharides from Angelica sinensis. J Ethnopharmacol. Nov 21;144(2):433-40. doi:


10.1016/j.jep.2012.09.040. 33


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