Genotoxic effect induced by dried nicotiana tabacum leaves from tobacco barns (kiln-houses) in chinese hamster lung fibroblast cells (V79)

遗传毒性 烟草 中国仓鼠 艾姆斯试验 微核 彗星试验 碎屑成因 化学 尼古丁 微核试验 MTT法 成纤维细胞 中性红 烟草 植物 DNA损伤 园艺 毒理 毒性 生物 生物化学 细胞毒性 体外 DNA 茄科 沙门氏菌 细菌 有机化学 遗传学 神经科学 基因
作者
Daiana Dalberto,Caroline Cardoso Nicolau,Melissa Rosa De Sousa,Ana Letícia Hilário Garcia,Fernanda Brião Menezes Boaretto,Jaqueline Nascimento Picada,Guilherme Maurício Soares de Souza,Paola Chytry,Johnny Ferraz Dias,Cleverson Feistel,Alexandre de Barros Falcão Ferraz,Ivana Grivicich,Juliana da Silva
出处
期刊:Journal of Toxicology and Environmental Health [Taylor & Francis]
卷期号:84 (17): 689-701 被引量:7
标识
DOI:10.1080/15287394.2021.1930619
摘要

Nicotiana tabacum is the most cultivated tobacco species in the state of Rio Grande do Sul, Brazil. Workers who handle the plant are exposed to the leaf components during the harvesting process and when separating and classifying the dried leaves. In addition to nicotine, after the drying process, other components may be found including tobacco-specific nitrosamines, polycyclic aromatic hydrocarbons, as well as pesticides residues. The objective of this study was to examine the genotoxicity attributed to the aqueous extract of dried tobacco leaves obtained from tobacco barns using Chinese hamster lung fibroblast cells (V79) as a model system by employing alkaline comet assay, micronucleus (MN) and Ames test. MTT assay was used to assess cytotoxicity and establish concentrations for this study. Data demonstrated cell viability > 85% for concentrations of 0.625–5 mg/ml while the comet assay indicated a significant increase in DNA damage at all concentrations tested. A significant elevation of MN and nuclear buds (NBUD) was found for 5 mg/ml compared to control and other dry tobacco leaves concentrations (0.625–2.5 mg/ml). Mutagenicity was not found using the Salmonella/Microsome test (TA98, TA100, and TA102 strains) with and without metabolic activation. The concentration of inorganic elements was determined employing the PIXE technique, and 13 inorganic elements were detected. Using CG/MS nicotine amounts present were 1.56 mg/g dry tobacco leaf powder. Due to the observed genotoxicity in V79 cells, more investigations are needed to protect the health of tobacco workers exposed daily to this complex mixture of toxic substances present in dry tobacco leaves.
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