Literature DB >> 29244183

DNA damage and epigenetic alteration in soybean farmers exposed to complex mixture of pesticides.

Danieli Benedetti1, Barbara Lopes Alderete1, Claudia Telles de Souza2,3, Johnny Ferraz Dias3, Liana Niekraszewicz3, Mónica Cappetta4, Wilner Martínez-López5, Juliana Da Silva.   

Abstract

Exposure to pesticides can trigger genotoxic and mutagenic processes through different pathways. However, epidemiological studies are scarce, and further work is needed to find biomarkers sensitive to the health of exposed populations. Considering that there are few evaluations of soybean farmers, the aim of this study was to assess the effects of human exposure to complex mixtures of pesticides. The alkaline comet assay modified with restriction enzyme (hOGG1: human 8-oxoguanine DNA glycosylase) was used to detect oxidised guanine, and compared with the buccal micronucleus cytome assay, global methylation, haematological parameters, biochemical analyses (serum glutamic oxaloacetic transaminase, serum glutamic pyruvic transaminase, gamma-glutamyl-transferase and butyrylcholinesterase), and particle-induced X-ray emission (PIXE) for the analysis of inorganic elements. Farm workers (n = 137) exposed to different types of pesticides were compared with a non-exposed reference group (control; n = 83). Results of the enzyme-modified comet assay suggest oxidation of guanine in DNA generated by pesticides exposure. It was observed that DNA damage (comet assay and micronucleus test) was significantly increased in exposed individuals compared to the unexposed group. The micronucleus test demonstrated elimination of nuclear material by budding, defective cytokinesis and dead cells. Occupationally exposed individuals also showed genomic hypermethylation of DNA, which correlated with micronucleus frequency. No differences were detected regarding the haematological and biochemical parameters. Finally, significantly higher concentrations of Al and P were observed in the urine of the soybean farmers. DNA damage could be a consequence of the ability of the complex mixture, including Al and P, to cause oxidative damage. These data indicate that persistent genetic instability associated with hypermethylation of DNA in soybean workers after long-term exposure to a low-level to pesticides mixtures may be critical for the development of adverse health effects such as cancer.

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Year:  2018        PMID: 29244183     DOI: 10.1093/mutage/gex035

Source DB:  PubMed          Journal:  Mutagenesis        ISSN: 0267-8357            Impact factor:   3.000


  4 in total

1.  The association between PON1 and GSTM1 genetic variation with methylation of p16 gene promoter among Javanese farmers exposed to pesticides at Magelang Regency, Central Java, Indonesia.

Authors:  Maya G Ratna; Dwi A A Nugrahaningsih; Eti N Sholikhah; Ery K Dwianingsih; Rusdy G Malueka
Journal:  Heliyon       Date:  2020-05-23

2.  Molecular and epigenetic markers as promising tools to quantify the effect of occupational exposures and the risk of developing non-communicable diseases.

Authors:  Luca Ferrari; Sofia Pavanello; Valentina Bollati
Journal:  Med Lav       Date:  2019-06-28       Impact factor: 1.275

3.  Profile of Chromosomal Alterations, Chromosomal Instability and Clonal Heterogeneity in Colombian Farmers Exposed to Pesticides.

Authors:  María Paula Meléndez-Flórez; Duvan Sebastián Valbuena; Sebastián Cepeda; Nelson Rangel; Maribel Forero-Castro; María Martínez-Agüero; Milena Rondón-Lagos
Journal:  Front Genet       Date:  2022-02-24       Impact factor: 4.599

4.  Somatic DNA Damage Response and Homologous Repair Gene Alterations and Its Association With Tumor Variant Burden in Breast Cancer Patients With Occupational Exposure to Pesticides.

Authors:  Thalita Basso Scandolara; Sara Ferreira Valle; Cristiane Esteves Teixeira; Nicole de Miranda Scherer; Elvismary Molina de Armas; Carolina Furtado; Mariana Boroni; Hellen Dos Santos Jaques; Fernanda Mara Alves; Daniel Rech; Carolina Panis; Cibele Rodrigues Bonvicino
Journal:  Front Oncol       Date:  2022-07-08       Impact factor: 5.738

  4 in total

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