Literature DB >> 2295079

Characterization of micronuclei induced in human lymphocytes by benzene metabolites.

J W Yager1, D A Eastmond, M L Robertson, W M Paradisin, M T Smith.   

Abstract

Benzene is an established human leukemogen. Workers occupationally exposed to benzene exhibit increased frequencies of both structural and numerical chromosomal aberrations in their peripheral blood lymphocytes. The metabolite(s) responsible for these chromosomal aberrations has not yet been identified. Using a modified micronucleus assay, we have examined the ability of the metabolites of benzene to induce chromosomal damage in human lymphocytes. An antikinetochore antibody was used to distinguish micronuclei that have a high probability of containing a whole chromosome (kinetochore positive) from those containing acentric fragments (kinetochore negative). In vitro treatments with the benzene metabolites hydroquinone, 1,4-benzoquinone, phenol, and catechol resulted in significant increases in micronuclei formation. Phenol, catechol, and 1,4-benzoquinone treatments resulted in moderate (2- to 5-fold) increases in micronuclei, whereas hydroquinone treatments resulted in a larger (11-fold) increase in micronuclei. Significant dose-related increases in kinetochore-positive micronucleated cells were not observed following 1,4-benzoquinone treatment but were observed following treatment with phenol, catechol, and hydroquinone. The higher efficacy of hydroquinone in inducing both total micronuclei and kinetochore-positive micronucleated cells when compared with catechol, phenol, and 1,4-benzoquinone suggests that hydroquinone is a major contributor to the clastogenicity and aneuploidy observed in the lymphocytes of benzene-exposed workers. Other metabolites may also contribute, however, to the genotoxic effects of benzene. Since consistent chromosomal aberrations are often observed in human leukemias, the ability of the phenolic metabolites of benzene to induce chromosomal damage in human cells also implicates them in benzene-induced leukemia.

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Year:  1990        PMID: 2295079

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  18 in total

1.  Urinary excretion of phenol, catechol, hydroquinone, and muconic acid by workers occupationally exposed to benzene.

Authors:  N Rothman; W E Bechtold; S N Yin; M Dosemeci; G L Li; Y Z Wang; W C Griffith; M T Smith; R B Hayes
Journal:  Occup Environ Med       Date:  1998-10       Impact factor: 4.402

2.  Multicolour FISH analysis of ionising radiation induced micronucleus formation in human lymphocytes.

Authors:  Adayabalam S Balajee; Antonella Bertucci; Maria Taveras; David J Brenner
Journal:  Mutagenesis       Date:  2014-09-13       Impact factor: 3.000

3.  Gene-environment interaction among GSTT1, PON2 polymorphisms and organic solvents on gestational age in a Chinese women cohort.

Authors:  Shuai Li; Kai Fang; Wenjian Wang; Yonghua Hu; Dafang Chen
Journal:  J Assist Reprod Genet       Date:  2014-05-21       Impact factor: 3.412

4.  Determination of low level exposure to volatile aromatic hydrocarbons and genotoxic effects in workers at a styrene plant.

Authors:  O Holz; G Scherer; S Brodtmeier; F Koops; K Warncke; T Krause; A Austen; J Angerer; A R Tricker; F Adlkofer
Journal:  Occup Environ Med       Date:  1995-06       Impact factor: 4.402

5.  The benzene metabolite, hydroquinone and etoposide both induce endoreduplication in human lymphoblastoid TK6 cells.

Authors:  Zhiying Ji; Luoping Zhang; Weihong Guo; Cliona M McHale; Martyn T Smith
Journal:  Mutagenesis       Date:  2009-06-02       Impact factor: 3.000

6.  Benzene induces gene-duplicating but not gene-inactivating mutations at the glycophorin A locus in exposed humans.

Authors:  N Rothman; R Haas; R B Hayes; G L Li; J Wiemels; S Campleman; P J Quintana; L J Xi; M Dosemeci; N Titenko-Holland
Journal:  Proc Natl Acad Sci U S A       Date:  1995-04-25       Impact factor: 11.205

7.  FISH analysis on spontaneously arising micronuclei in the ICF syndrome.

Authors:  M Stacey; M S Bennett; M Hulten
Journal:  J Med Genet       Date:  1995-07       Impact factor: 6.318

8.  Clastogenicity and Aneugenicity of 1,4-Benzoquinone in Different Lineages of Mouse Hematopoietic Stem/Progenitor Cells.

Authors:  Paik Wah Chow; Zariyantey Abd Hamid; Ramya Dewi Mathialagan; Nor Fadilah Rajab; Salwati Shuib; Sarina Sulong
Journal:  Toxics       Date:  2021-05-12

9.  The benzene metabolite para-benzoquinone is genotoxic in human, phorbol-12-acetate-13-myristate induced, peripheral blood mononuclear cells at low concentrations.

Authors:  Götz Alexander Westphal; Jürgen Bünger; Nadine Lichey; Dirk Taeger; Angelika Mönnich; Ernst Hallier
Journal:  Arch Toxicol       Date:  2009-02-11       Impact factor: 5.153

10.  Mechanisms of benzene-induced hematotoxicity and leukemogenicity: cDNA microarray analyses using mouse bone marrow tissue.

Authors:  Byung-Il Yoon; Guang-Xun Li; Kunio Kitada; Yasushi Kawasaki; Katsuhide Igarashi; Yukio Kodama; Tomoaki Inoue; Kazuko Kobayashi; Jun Kanno; Dae-Yong Kim; Tohru Inoue; Yoko Hirabayashi
Journal:  Environ Health Perspect       Date:  2003-08       Impact factor: 9.031

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