Genotoxicity and immunotoxic effects of 1,2-dichloroethane in Wistar rats.

Q2 Biochemistry, Genetics and Molecular Biology
Mohammad Iqbal Lone, Nazia Nazam, Aashiq Hussain, Shashank K Singh, Abid Hamid Dar, Rauf Ahmad Najar, Mohammed Hussein Al-Qahtani, Waseem Ahmad
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引用次数: 6

Abstract

Dichloroethane is widely used as a solvent, degreasing agent and in a variety of commercial products, and is known for being a ubiquitous contaminant in the environment. Important sources principally include the emissions from industrial processes, improper consumption, storage, and disposal methods. In view of the fact that the mechanism of its genotoxicity has not been satisfactorily elucidated, the acute in vivo toxicological impact is assessed in Rattus norvegicus. A systematic investigation has been made involving the use of conventional methods along with molecular and flow cytometric approaches. The micronucleus and chromosomal aberration frequencies were significantly elevated in bone marrow cells exposed to three concentrations at multiple treatment durations indicating positive time- and dose-response relationships. The mitotic index significantly decreased in similar concentrations in contrast to normal control. Separate studies were performed on blood cells for comet assay. It revealed dichloroethane-induced DNA damage in all exposures readily explainable in a dose- and time-dependent manner. Recent molecular techniques were further employed using leukocytes for the cell apoptosis/cycle and mitochondrial membrane potential employing propidium iodide staining and rhodamine-123, respectively. The effect on mitochondrial membrane permeability, cell cycle phases, and the DNA damage was analyzed through flow cytometry. These indicators revealed dichloroethane treatment decreased the mitochondrial membrane potential, affected the cell cycle, and confirmed the DNA damage, leading to apoptosis of the cells of the immune system responsible for immunotoxic effects of dichloroethane on rat leukocytes.

1,2-二氯乙烷对Wistar大鼠的遗传毒性和免疫毒性作用。
二氯乙烷被广泛用作溶剂、脱脂剂和各种商业产品,众所周知,它是环境中无处不在的污染物。重要来源主要包括工业过程的排放、不适当的消费、储存和处置方法。鉴于其遗传毒性机制尚未完全阐明,本文对褐家鼠进行了急性体内毒理学评价。一个系统的调查已经涉及到使用传统的方法以及分子和流式细胞术的方法。暴露于三种浓度的骨髓细胞中,微核和染色体畸变频率在多个治疗持续时间内显著升高,表明正的时间和剂量-反应关系。与正常对照相比,相同浓度的有丝分裂指数显著降低。分别对血细胞进行彗星试验。它揭示了二氯乙烷在所有暴露中引起的DNA损伤,可以用剂量和时间依赖的方式轻易解释。最近的分子技术进一步应用于白细胞的细胞凋亡/周期和线粒体膜电位,分别采用碘化丙啶染色和罗丹明-123。流式细胞术分析其对线粒体膜通透性、细胞周期和DNA损伤的影响。这些指标表明,二氯乙烷处理降低了线粒体膜电位,影响了细胞周期,证实了DNA损伤,导致免疫系统细胞凋亡,导致二氯乙烷对大鼠白细胞的免疫毒性作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
0
审稿时长
>24 weeks
期刊介绍: Journal of Environmental Science and Health, Part C: Environmental Carcinogenesis and Ecotoxicology Reviews aims at rapid publication of reviews on important subjects in various areas of environmental toxicology, health and carcinogenesis. Among the subjects covered are risk assessments of chemicals including nanomaterials and physical agents of environmental significance, harmful organisms found in the environment and toxic agents they produce, and food and drugs as environmental factors. It includes basic research, methodology, host susceptibility, mechanistic studies, theoretical modeling, environmental and geotechnical engineering, and environmental protection. Submission to this journal is primarily on an invitational basis. All submissions should be made through the Editorial Manager site, and are subject to peer review by independent, anonymous expert referees. Please review the instructions for authors for manuscript submission guidance.
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