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Occupational exposure to nickel, cobalt, and chromium in the Lithuanian hard metal industry

Linauskiene, Kotryna ; Dahlin, Jacob LU ; Ezerinskis, Zilvinas ; Isaksson, Marléne LU ; Sapolaite, Justina and Malinauskiene, Laura LU (2021) In Contact Dermatitis 84(4). p.247-253
Abstract

Background: Metalworkers are said to have heavy exposure to metals, but the amount of released metal ions from alloys and deposition on the hands is unknown. Objective: To analyze nickel, cobalt, and chromium in vitro release to the artificial sweat from nails and wire made of different alloys, and to test metal deposition on the fingers of metalworkers. Material and Methods: Six different samples of nails and wire were kept in artificial sweat for 24 hours and one week, respectively. The metal release was determined by atomic absorption spectrometry (AAS). Eighty-eight consecutive metal plant workers immersed their index fingers and thumbs in separate laboratory tubes filled with deionized water for 2 minutes. The sample analysis for... (More)

Background: Metalworkers are said to have heavy exposure to metals, but the amount of released metal ions from alloys and deposition on the hands is unknown. Objective: To analyze nickel, cobalt, and chromium in vitro release to the artificial sweat from nails and wire made of different alloys, and to test metal deposition on the fingers of metalworkers. Material and Methods: Six different samples of nails and wire were kept in artificial sweat for 24 hours and one week, respectively. The metal release was determined by atomic absorption spectrometry (AAS). Eighty-eight consecutive metal plant workers immersed their index fingers and thumbs in separate laboratory tubes filled with deionized water for 2 minutes. The sample analysis for metals was carried out with an inductively coupled plasma mass spectrometer (ICP-MS). Results: The average released concentration of Ni was 0.0012 μg/cm2, for Co it was 0.0007 μg/cm2, and for Cr 0.0037 μg/cm2 after 24 hours and 0.0135, 0.0029, and 0.0042 μg/cm2, respectively, after 1 week. There was a statistically significant increase in released concentration of Ni during one week: 0.0012 μg/cm2 vs 0.0135 μg/cm2 (P =.04). Medians of the detected Co amount on fingers reflected a statistically significant difference between workplaces: 0.004 μg/cm2 for metalworkers vs 0.001 μg/cm2 for office staff (P =.04). Conclusion: Nickel (Ni), cobalt (Co), and chromium (Cr) can be released in different concentrations from nails and wire. Detected Ni and Cr levels can elicit dermatitis in already sensitized patients. Co can be extracted from alloys even if not mentioned on material safety data sheets. The finger immersion technique was used for cobalt and chromium detection on fingers for the first time.

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author
; ; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
atomic absorption spectrometry (AAS), chrome, cobalt, finger immersion sample, inductively coupled plasma mass spectrometer (ICP-MS), Lithuania, metal release, metalworkers, nickel
in
Contact Dermatitis
volume
84
issue
4
pages
247 - 253
publisher
Wiley-Blackwell
external identifiers
  • pmid:33277692
  • scopus:85100311906
ISSN
0105-1873
DOI
10.1111/cod.13756
language
English
LU publication?
yes
id
20c5ad82-ef3b-4011-8ece-672afd0bf7e3
date added to LUP
2021-02-16 10:09:56
date last changed
2024-04-03 23:45:56
@article{20c5ad82-ef3b-4011-8ece-672afd0bf7e3,
  abstract     = {{<p>Background: Metalworkers are said to have heavy exposure to metals, but the amount of released metal ions from alloys and deposition on the hands is unknown. Objective: To analyze nickel, cobalt, and chromium in vitro release to the artificial sweat from nails and wire made of different alloys, and to test metal deposition on the fingers of metalworkers. Material and Methods: Six different samples of nails and wire were kept in artificial sweat for 24 hours and one week, respectively. The metal release was determined by atomic absorption spectrometry (AAS). Eighty-eight consecutive metal plant workers immersed their index fingers and thumbs in separate laboratory tubes filled with deionized water for 2 minutes. The sample analysis for metals was carried out with an inductively coupled plasma mass spectrometer (ICP-MS). Results: The average released concentration of Ni was 0.0012 μg/cm<sup>2</sup>, for Co it was 0.0007 μg/cm<sup>2</sup>, and for Cr 0.0037 μg/cm<sup>2</sup> after 24 hours and 0.0135, 0.0029, and 0.0042 μg/cm<sup>2</sup>, respectively, after 1 week. There was a statistically significant increase in released concentration of Ni during one week: 0.0012 μg/cm<sup>2</sup> vs 0.0135 μg/cm<sup>2</sup> (P =.04). Medians of the detected Co amount on fingers reflected a statistically significant difference between workplaces: 0.004 μg/cm<sup>2</sup> for metalworkers vs 0.001 μg/cm<sup>2</sup> for office staff (P =.04). Conclusion: Nickel (Ni), cobalt (Co), and chromium (Cr) can be released in different concentrations from nails and wire. Detected Ni and Cr levels can elicit dermatitis in already sensitized patients. Co can be extracted from alloys even if not mentioned on material safety data sheets. The finger immersion technique was used for cobalt and chromium detection on fingers for the first time.</p>}},
  author       = {{Linauskiene, Kotryna and Dahlin, Jacob and Ezerinskis, Zilvinas and Isaksson, Marléne and Sapolaite, Justina and Malinauskiene, Laura}},
  issn         = {{0105-1873}},
  keywords     = {{atomic absorption spectrometry (AAS); chrome; cobalt; finger immersion sample; inductively coupled plasma mass spectrometer (ICP-MS); Lithuania; metal release; metalworkers; nickel}},
  language     = {{eng}},
  number       = {{4}},
  pages        = {{247--253}},
  publisher    = {{Wiley-Blackwell}},
  series       = {{Contact Dermatitis}},
  title        = {{Occupational exposure to nickel, cobalt, and chromium in the Lithuanian hard metal industry}},
  url          = {{http://dx.doi.org/10.1111/cod.13756}},
  doi          = {{10.1111/cod.13756}},
  volume       = {{84}},
  year         = {{2021}},
}