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巴基斯坦旁遮普省煤矿工人的遗传损伤评估。

Assessment of Genetic Damage in Coal Miners of Punjab, Pakistan.

机构信息

Department of Zoology, University of Sargodha, Sargodha, Punjab, 40100, Pakistan.

Institute of Chemistry, University of Sargodha, Sargodha, Punjab, 40100, Pakistan.

出版信息

Biol Trace Elem Res. 2023 Jul;201(7):3144-3151. doi: 10.1007/s12011-022-03412-2. Epub 2022 Sep 12.

Abstract

Coal miners are continuously exposed to coal mine dust and airborne particulate that act as a potential risk to their health. The present study evaluates the DNA damage in coal miners using the Buccal Micronucleus Cytome (BMCyt) assay. The samples of the blood and buccal epithelial cells of 40 coal miners and 20 control subjects were taken from coal mines of Pail and Padhrar, Pakistan, to establish buccal anomaly frequencies of metal levels in the blood. Besides this, work history and duration hours were also analyzed. Results revealed that micronucleus frequencies positively correlated with the metal concentrations in the miner's blood. The change in the extent of nuclear damage per unit change in the year was 0.170 for micronuclei; however, with addition in each year of working experience, nuclear buds and broken egged nuclei increased by 0.316 and 0.194 units, where each year increases karyolysis by 0.349 units and karyorrhexis by 0.308 units, respectively. An increase in work hours and working years was positively correlated with cytogenetic damage. Nuclear damage in coal miners due to occupational exposure is obvious and increases with increasing work experience. Hence, the Buccal Micronucleus Cytome assay has proved to be an effective cytogenetic biomonitoring tool for assessing genetic and nuclear damage in coal miners.

摘要

矿工持续暴露于煤矿尘和空气中的颗粒物中,这些物质对他们的健康构成潜在风险。本研究使用口腔微核细胞遗传学(BMCyt)检测评估了矿工的 DNA 损伤。从巴基斯坦派尔和帕德拉的煤矿采集了 40 名矿工和 20 名对照者的血液和口腔上皮细胞样本,以建立血液中金属水平的口腔异常频率。此外,还分析了工作历史和工作时长。结果表明,微核频率与矿工血液中的金属浓度呈正相关。核损伤程度每变化一个单位,微核的变化为 0.170;然而,每增加一年的工作经验,核芽和破碎的卵核分别增加 0.316 和 0.194 个单位,每年分别增加核溶解 0.349 个单位和核碎裂 0.308 个单位。工作时间和工作年限的增加与细胞遗传学损伤呈正相关。由于职业暴露,矿工的核损伤是明显的,并随着工作经验的增加而增加。因此,口腔微核细胞遗传学检测已被证明是评估矿工遗传和核损伤的有效细胞遗传学生物监测工具。

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