4.5 Article

Molecular iodine is not responsible for cytotoxicity in iodophors

Journal

JOURNAL OF HOSPITAL INFECTION
Volume 122, Issue -, Pages 194-202

Publisher

W B SAUNDERS CO LTD
DOI: 10.1016/j.jhin.2022.01.015

Keywords

Uncomplexed iodine; Iodine; 10% povidone-iodine (PVP-I); Iodine cytotoxicity; Iodine out-gassing; Hypodermis

Funding

  1. I2Pure Corporation, Ashburn, VA

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The study found that compared with other iodine disinfectants, the iodine molecule I2 does not cause irritation or staining on the skin, and at high concentrations, I2 does not exhibit cytotoxicity on the skin compared to PVP-I. Additionally, I2 can penetrate into the dermis and out-gas from the skin.
Background: Ten percent povidone-iodine (PVP-I) was initially promoted as 'tamed iodine' as the chemical activity of the active biocide, uncomplexed or free molecular iodine (I2), is reduced 30- to 50-fold compared with Lugol's solution. The idea that I2 is responsible for topical iodine staining and irritation remains widely held. However, there are no controlled studies that characterize the cytotoxicity and staining of the hydrophobic I2 species compared with the other hydrophilic iodine species that comprise over 99.9% of the total iodine in topical iodine disinfectants. Aims: To compare the staining properties of the I2 species with other topical iodine disinfectants; to evaluate if the concentrations of I2 in diluted PVP-I used to reduce severe acute respiratory syndrome coronavirus-2 in the nasal cavity are potentially cytotoxic; and to determine if high concentrations of I2 can be delivered beyond the stratum corneum into the hypodermis, which could provide a mechanistic rationale for I2 out-gassing. Methods: Five liquid compositions that contained complexed and uncomplexed (free) I2 in aqueous and non-aqueous carriers were used to evaluate the interaction of I2 with mammalian cells in culture as well as human and pig skin. Findings: Concentrations of I2 (7800 ppm) that are 1500 times higher than that found in PVP-I can be applied to skin without irritation and staining. I2 is not cytotoxic at concentrations >100 times higher than that found in PVP-I, and does not contribute materially to staining of skin at concentrations found in Lugol's solution (approximately 170 ppm). I2 can partition into hypodermis tissue, remain there for hours and out-gas from skin. PVP-I and Lugol's solution are highly effective topical disinfectants, but do not facilitate diffusion of I2 through the stratum corneum. Conclusion: The maximum concentration of I2 found in diluted PVP, approximately 25 ppm, is not cytotoxic or irritating. The potential clinical utility of I2 has been limited by incorporating this broad-spectrum biocide into acidic aqueous formulations that contain numerous chemical species that contribute toxicity but not biocidal activity. I2 can be delivered topically into hypodermis tissue without irritation. under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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