Literature DB >> 10722890

Percutaneous penetration and dermal metabolism of triclosan (2,4, 4'-trichloro-2'-hydroxydiphenyl ether).

T Moss1, D Howes, F M Williams.   

Abstract

triclosan is widely used in many products that contact the skin of consumers. This study compares in vivo and in vitro skin absorption of triclosan and determines the potential of skin to metobolize it prior to entering the blood stream. After in vivo topical application of a 64.5mM alcoholic solution of [(3)H]triclosan to rat skin, 12% radioactivity was recovered in the faeces, 8% in the carcass 1% in the urine, 30% in the stratum corneum and 26% was rinsed from the skin surface at 24 hours after application. Free triclosan and the glucuronide and sulfate conjugates of triclosan were found in urine and faeces. triclosan penetrated rat skin more rapidly and extensively than human skin in vitro. 23% of the dose had penetrated completely through rat skin into the receptor fluid by 24 hours, whereas penetration through human skin was only 6.3% of the dose. Chromatographic analysis of the receptor solutions showed that triclosan was metabolized to the glucuronide, and to a lesser extent to the sulfate, during passage through the skin. triclosan glucuronide appeared rapidly in the receptor fluid whereas triclosan sulfate remained in the skin. Although the major site of metabolism was the liver, conjugation of triclosan in skin was also demonstrated in vitro and in vivo, particularly to the glucuronide conjugate which was more readily removed from the skin. The in vitro system provides a reasonable estimate of dermal absorption in vivo for the rat. Therefore by extrapolation of the comparative in vitro data for human and rat skin it is reasonable to deduce that dermal absorption in human of triclosan applied at the same dose is about one-third of that in the rat in vivo.

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Year:  2000        PMID: 10722890     DOI: 10.1016/s0278-6915(99)00164-7

Source DB:  PubMed          Journal:  Food Chem Toxicol        ISSN: 0278-6915            Impact factor:   6.023


  48 in total

1.  Immunosuppressive effects of triclosan, nonylphenol, and DDT on human natural killer cells in vitro.

Authors:  Felicia Udoji; Tamara Martin; Rachel Etherton; Margaret M Whalen
Journal:  J Immunotoxicol       Date:  2010 Jul-Sep       Impact factor: 3.000

2.  Effects of DDT and triclosan on tumor-cell binding capacity and cell-surface protein expression of human natural killer cells.

Authors:  Tasia Hurd-Brown; Felicia Udoji; Tamara Martin; Margaret M Whalen
Journal:  J Appl Toxicol       Date:  2012-06-21       Impact factor: 3.446

3.  Topical Application of the Antimicrobial Agent Triclosan Induces NLRP3 Inflammasome Activation and Mitochondrial Dysfunction.

Authors:  Lisa M Weatherly; Hillary L Shane; Sherri A Friend; Ewa Lukomska; Rachel Baur; Stacey E Anderson
Journal:  Toxicol Sci       Date:  2020-07-01       Impact factor: 4.849

4.  Toxic effects of triclosan on the detoxification system and breeding of Daphnia magna.

Authors:  Ying Peng; Ying Luo; Xiang-Ping Nie; Wei Liao; Yu-Feng Yang; Guang-Guo Ying
Journal:  Ecotoxicology       Date:  2013-11       Impact factor: 2.823

5.  Antimicrobial activity Study of triclosan-loaded WBPU on Proteus mirabilis in vitro.

Authors:  Ye Tian; Zhongyu Jian; Jianzhong Wang; Wei He; Qinyu Liu; Kunjie Wang; Hong Li; Hong Tan
Journal:  Int Urol Nephrol       Date:  2017-02-01       Impact factor: 2.370

Review 6.  Xenobiotica-metabolizing enzymes in the skin of rat, mouse, pig, guinea pig, man, and in human skin models.

Authors:  F Oesch; E Fabian; Robert Landsiedel
Journal:  Arch Toxicol       Date:  2018-06-18       Impact factor: 5.153

7.  Investigations of immunotoxicity and allergic potential induced by topical application of triclosan in mice.

Authors:  Stacey E Anderson; B Jean Meade; Carrie M Long; Ewa Lukomska; Nikki B Marshall
Journal:  J Immunotoxicol       Date:  2015-03-27       Impact factor: 3.000

8.  Health care worker exposures to the antibacterial agent triclosan.

Authors:  Julia K MacIsaac; Roy R Gerona; Paul D Blanc; Latifat Apatira; Matthew W Friesen; Michael Coppolino; Sarah Janssen
Journal:  J Occup Environ Med       Date:  2014-08       Impact factor: 2.162

9.  Triclosan disrupts immune cell function by depressing Ca2+ influx following acidification of the cytoplasm.

Authors:  Suraj Sangroula; Alan Y Baez Vasquez; Prakash Raut; Bright Obeng; Juyoung K Shim; Grace D Bagley; Bailey E West; John E Burnell; Marissa S Kinney; Christian M Potts; Sasha R Weller; Joshua B Kelley; Samuel T Hess; Julie A Gosse
Journal:  Toxicol Appl Pharmacol       Date:  2020-08-21       Impact factor: 4.219

Review 10.  Triclosan: A Widespread Environmental Toxicant with Many Biological Effects.

Authors:  Mei-Fei Yueh; Robert H Tukey
Journal:  Annu Rev Pharmacol Toxicol       Date:  2016       Impact factor: 13.820

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