Literature DB >> 12944173

Development, validation and characterization of an analytical method for the quantification of hydrolysable urinary metabolites and plasma protein adducts of 2,4- and 2,6-toluene diisocyanate, 1,5-naphthalene diisocyanate and 4,4'-methylenediphenyl diisocyanate.

Carl Johan Sennbro1, Christian H Lindh, Håkan Tinnerberg, Cecilia Gustavsson, Margareta Littorin, Hans Welinder, Bo A G Jönsson.   

Abstract

Occupational exposure to diisocyanates within the plastic industry causes irritation and disorders in the airway. The aim of this study was to develop, validate and characterize a method for the determination of 2,4-toluenediamine (2,4-TDA), 2,6-toluenediamine (2,6-TDA), 1,5-diaminonaphthalene (1,5-NDA) and 4,4'-methylenedianiline (4,4'-MDA) in hydrolysed urine and plasma, and to study the correlation between the plasma and urinary levels of these potential biomarkers of 2,4-toluene diisocyanate (2,4-TDI), 2,6-toluene diisocyanate (2,6-TDI), 1,5-naphthalene diisocyanate (1,5-NDI) and 4,4'-methylenediphenyl diisocyanate (4,4'-MDI), respectively. Samples were hydrolysed with 0.3 M NaOH at 100 degrees C for 24 h. The diamines were extracted, derivatized with pentafluoropropionic acid anhydride, and quantified by selected ion monitoring on gas chromatography-mass spectrometry. The repeatability and reproducibility of the method were 7-18% and 7-19%, respectively. Dialysis experiments showed that the metabolites of 2,4-TDI, 2,6-TDI, 1,5-NDI and 4,4'-MDI in plasma were exclusively protein adducts. No free diamines were found in urine, indicating that all diisocyanate-related metabolites were in a conjugated form. For each diisocyanate-related biomarker, there were strongly significant correlations (p<0.001) between individual levels of metabolites in plasma and urine, with Spearman's rank correlation coefficient (rs) values of 0.74-0.90. The methods presented here will be valuable for the development of biological monitoring methods for diisocyanates.

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Year:  2003        PMID: 12944173     DOI: 10.1080/1354750031000090660

Source DB:  PubMed          Journal:  Biomarkers        ISSN: 1354-750X            Impact factor:   2.658


  11 in total

1.  Urine 1,6-hexamethylene diamine (HDA) levels among workers exposed to 1,6-hexamethylene diisocyanate (HDI).

Authors:  Linda G T Gaines; Kenneth W Fent; Sheila L Flack; Jennifer M Thomasen; Louise M Ball; David B Richardson; Kai Ding; Stephen G Whittaker; Leena A Nylander-French
Journal:  Ann Occup Hyg       Date:  2010-06-07

2.  Upper reference limits for biomarkers of exposure to aromatic diisocyanates.

Authors:  Carl Johan Sennbro; Margareta Littorin; Håkan Tinnerberg; Bo A G Jönsson
Journal:  Int Arch Occup Environ Health       Date:  2005-07-02       Impact factor: 3.015

3.  Trisaminohexyl isocyanurate, a urinary biomarker of HDI isocyanurate exposure.

Authors:  Zachary Robbins; Wanda Bodnar; Zhenfa Zhang; Avram Gold; Leena A Nylander-French
Journal:  J Chromatogr B Analyt Technol Biomed Life Sci       Date:  2018-01-31       Impact factor: 3.205

4.  Biological monitoring of exposure to 1,5-naphthalene diisocyanate and 4,4'-methylenediphenyl diisocyanate.

Authors:  C J Sennbro; C H Lindh; C Mattsson; B A G Jönsson; H Tinnerberg
Journal:  Int Arch Occup Environ Health       Date:  2006-02-28       Impact factor: 3.015

5.  Body mass index in young school-age children in relation to organochlorine compounds in early life: a prospective study.

Authors:  B B Høyer; C H Ramlau-Hansen; T B Henriksen; H S Pedersen; K Góralczyk; V Zviezdai; B A G Jönsson; D Heederik; V Lenters; R Vermeulen; J P Bonde; G Toft
Journal:  Int J Obes (Lond)       Date:  2014-04-10       Impact factor: 5.095

6.  Isotope Dilution UPLC-APCI-MS/MS Method for the Quantitative Measurement of Aromatic Diamines in Human Urine: Biomarkers of Diisocyanate Exposure.

Authors:  Deepak Bhandari; John Ruhl; Anthony Murphy; Ernest McGahee; David Chambers; Benjamin C Blount
Journal:  Anal Chem       Date:  2016-10-14       Impact factor: 6.986

7.  Biomarkers of exposure in Monday morning urine samples as a long-term measure of exposure to aromatic diisocyanates.

Authors:  Håkan Tinnerberg; Karin Broberg; Christian H Lindh; Bo A G Jönsson
Journal:  Int Arch Occup Environ Health       Date:  2013-04-05       Impact factor: 3.015

8.  Motor development following in utero exposure to organochlorines: a follow-up study of children aged 5-9 years in Greenland, Ukraine and Poland.

Authors:  Birgit Bjerre Høyer; Cecilia Høst Ramlau-Hansen; Henning Sloth Pedersen; Katarzyna Góralczyk; Lyubov Chumak; Bo Ag Jönsson; Jens Peter Bonde; Gunnar Toft
Journal:  BMC Public Health       Date:  2015-02-14       Impact factor: 3.295

9.  Comparison between Different Extraction Methods for Determination of Primary Aromatic Amines in Food Simulant.

Authors:  Morteza Shahrestani; Mohammad Saber Tehrani; Shahram Shoeibi; Parviz Aberoomand Azar; Syed Waqif Husain
Journal:  J Anal Methods Chem       Date:  2018-05-15       Impact factor: 2.193

10.  Statistical Comparison of Carcinogenic Effects and Dose-Response Relationships in Rats and Mice for 2,4-Toluene Diamine to those Ascribed to Toluene Diisocyanate.

Authors:  Robert L Sielken; Robert S Bretzlaff; Ciriaco Valdez-Flores; Ralph Parod
Journal:  Hum Ecol Risk Assess       Date:  2012-11-06       Impact factor: 5.190

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