A theoretical and experimental study of calcium, iron, zinc, cadmium, and sodium ions absorption by aspartame.

Karim Mahnam, Fatame Raisi

Journal: Journal of biological physics 2017;43(1):87-103

PMID: 28150114

Abstract

Aspartame (L-Aspartyl-L-phenylalanine methyl ester) is a sweet dipeptide used in some foods and beverages. Experimental studies show that aspartame causes osteoporosis and some illnesses, which are similar to those of copper and calcium deficiency. This raises the issue that aspartame in food may interact with cations and excrete them from the body. This study aimed to study aspartame interaction with calcium, zinc, iron, sodium, and cadmium ions via molecular dynamics simulation (MD) and spectroscopy. Following a 480-ns molecular dynamics simulation, it became clear that the aspartame is able to sequester Fe, Ca, Cd, and Zn ions for a long time. Complexation led to increasing UV-Vis absorption spectra and emission spectra of the complexes. This study suggests a potential risk of cationic absorption of aspartame. This study suggests that purification of cadmium-polluted water by aspartame needs a more general risk assessment.

Address: Biology Department, Faculty of Sciences, Shehrekord University, Shahrekord, Iran. [email protected].; Biology Department, Faculty of Sciences, Payam Nour University, Isfahan, Iran.
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