166
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

In Vitro Dermal Penetration of 4-Chloro-3-Methylphenol from Commercial Metal Working Fluid and Aqueous Vehicles

, , &
Pages 1394-1405 | Received 02 Mar 2010, Accepted 14 Apr 2010, Published online: 01 Sep 2010
 

Abstract

The biocide 4-chloro-3-methylphenol (CMP, CAS number 59-50-7) is a common additive to metal-working fluids (MWF) and building materials. National Institute for Occupational Safety and Health (NIOSH) researchers previously identified and quantified CMP in a commercial water-soluble MWF, TRIM VX, and demonstrated irritancy and sensitization potential of both TRIM VX and CMP alone after dermal exposure in a murine model. In the current study, the in vitro human epidermal permeability of CMP contained in a working dilution of TRIM VX (20% in water) was evaluated and, for comparison, permeability from an aqueous buffer was also assessed. CMP penetration was also measured from transient exposures to 20% TRIM VX. To address differences in penetration rates from 20% TRIM VX and from buffer, the role of thermodynamic activity of CMP in the 2 vehicles on dermal penetration was investigated. Static headspace gas chromatography was used to measure vapor pressures and infer fractional thermodynamic activities of CMP in the mixtures. Permeability coefficient (kp ) of CMP from 20% TRIM VX was (4.1 ± 0.8) × 10−3 cm/h (mean ± SD, n = 5), and CMP was found at a concentration of 3555 ± 191 μg/ml in this donor. In contrast, kp was 0.18 ± 0.03 cm/h (n = 5) at a similar concentration (3919 ± 240) from buffer donor. Steady-state fluxes from 20% TRIM VX and buffer were comparable when expressed as functions of thermodynamic activity of CMP in the donor, rather than as concentrations. Transient (20 or 40 min) exposures of epidermal membranes to 20% TRIM VX (n = 4) resulted in total penetration of 4.2 ± 1.2 and 7.3 ± 0.8 μg/cm2, respectively; these amounts are comparable to amounts predicted using a simple algebraic equation.

The findings and conclusions of this report are those of the authors and do not necessarily represent the views of the National Institute for Occupational Safety and Health.

Notes

This article is not subject to U.S. copyright

Log in via your institution

Log in to Taylor & Francis Online

PDF download + Online access

  • 48 hours access to article PDF & online version
  • Article PDF can be downloaded
  • Article PDF can be printed
USD 61.00 Add to cart

Issue Purchase

  • 30 days online access to complete issue
  • Article PDFs can be downloaded
  • Article PDFs can be printed
USD 482.00 Add to cart

* Local tax will be added as applicable

Related Research

People also read lists articles that other readers of this article have read.

Recommended articles lists articles that we recommend and is powered by our AI driven recommendation engine.

Cited by lists all citing articles based on Crossref citations.
Articles with the Crossref icon will open in a new tab.