Chlorine Dioxide: Friend or Foe for Cell Biomolecules? A Chemical Approach.

Celia Andrés Juan, Francisco J Plou, Eduardo Pérez-Lebeña, Celia María Curieses Andrés, José Manuel Pérez de la Lastra

Journal: International journal of molecular sciences 2022;23(24):15660

PMID: 36555303

Abstract

This review examines the role of chlorine dioxide (ClO) on inorganic compounds and cell biomolecules. As a disinfectant also present in drinking water, ClO helps to destroy bacteria, viruses, and some parasites. The Environmental Protection Agency EPA regulates the maximum concentration of chlorine dioxide in drinking water to be no more than 0.8 ppm. In any case, human consumption must be strictly regulated since, given its highly reactive nature, it can react with and oxidize many of the inorganic compounds found in natural waters. Simultaneously, chlorine dioxide reacts with natural organic matter in water, including humic and fulvic acids, forming oxidized organic compounds such as aldehydes and carboxylic acids, and rapidly oxidizes phenolic compounds, amines, amino acids, peptides, and proteins, as well as the nicotinamide adenine dinucleotide NADH, responsible for electron and proton exchange and energy production in all cells. The influence of ClO on biomolecules is derived from its interference with redox processes, modifying the electrochemical balances in mitochondrial and cell membranes. This discourages its use on an individual basis and without specialized monitoring by health professionals.

Address: Hospital Clínico Universitario, Avenida de Ramón y Cajal, 3, 47003 Valladolid, Spain.; Institute of Natural Products and Agrobiology, CSIC-Spanish Research Council, Avda. Astrofísico Fco. Sánchez, 3, 38206 La Laguna, Spain.; Cinquima Institute and Department of Organic Chemistry, Faculty of Sciences, Valladolid University, Paseo de Belén, 7, 47011 Valladolid, Spain.; Institute of Catalysis and Petrochemistry, CSIC-Spanish Research Council, 28049 Madrid, Spain.; Sistemas de Biotecnología y Recursos Naturales, 47625 Valladolid, Spain.
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