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点击诱发耳声发射在职业性接触铅、某些必需元素浓度和氧化应激标志物中的作用。

Click evoked otoacoustic emissions in occupational exposure to lead, concentrations of selected essential elements and markers of oxidative stress.

机构信息

Department of Clinical Biochemistry and Laboratory Diagnostics, Institute of Medicine, Opole University, Oleska 48, 45-052, Opole, Poland.

Department of Otorhinolaryngology and Laryngological Oncology, Medical University of Silesia in Katowice, Skłodowskiej-Curie 10, 41-840, Zabrze, Poland.

出版信息

Eur Arch Otorhinolaryngol. 2024 Sep;281(9):4705-4713. doi: 10.1007/s00405-024-08675-0. Epub 2024 May 2.

Abstract

PURPOSE

This study focused on the selected markers of oxidative stress, impact of elevated lead levels on long-term hearing quality. We investigated whether the presence of certain essential minerals might provide protection to the auditory system against the effects of lead (and cadmium) compounds.

METHODS

The research group included 280 male employees of the zinc and lead smelter, which was divided into: L-Pb-low blood lead concentration (PbB) subgroup, H-Pb-high PbB subgroup. Hearing tests were performed using the click evoked otoacoustic emission (CEOAE).

RESULTS

Zinc protoporphyrin level was significantly higher in the H-Pb subgroup by 68%. Cd concentration was significantly higher in H-Pb by 33%. The Ca concentration was significantly lower in the H-Pb by - 2%. Selected oxidative stress markers concentration were significantly higher in the H-Pb group: malondialdehyde (MDA) by 4%, and lipofuscin (LPS) by 9%. In the CEOAE results showed statistically significant differences between the L-Pb and H-Pb subgroups. Larger negative changes in otoemission amplitude were observed in H-Pb subgroup. All otoemission results showed a statistically significant negative correlation with age, time of work, MDA concentration, and with PbB. Selected CEOAE parameters showed a significant negative correlation with cadmium blood concentration (CdB), and a positive correlation with Ca and Zn.

CONCLUSION

Elevated blood lead content in occupational exposure is associated with an increase in MDA and LPS concentration, which negatively correlates with CEOAE parameters. This suggests an important role of oxidative stress in the long-term deterioration of hearing.

摘要

目的

本研究专注于氧化应激的选定标志物,探讨了铅水平升高对长期听力质量的影响。我们研究了某些必需矿物质的存在是否可能为听觉系统提供针对铅(和镉)化合物影响的保护。

方法

研究组包括锌和铅冶炼厂的 280 名男性员工,将其分为:L-Pb-低血铅浓度(PbB)亚组、H-Pb-高 PbB 亚组。使用 click 诱发耳声发射(CEOAE)进行听力测试。

结果

H-Pb 亚组的锌原卟啉水平显著升高 68%。H-Pb 中的 Cd 浓度显著升高 33%。H-Pb 中的 Ca 浓度显著降低 2%。H-Pb 组的选定氧化应激标志物浓度显著升高:丙二醛(MDA)升高 4%,脂褐素(LPS)升高 9%。在 CEOAE 结果中,L-Pb 和 H-Pb 亚组之间存在统计学差异。在 H-Pb 亚组中观察到耳发射幅度的较大负变化。所有耳发射结果均与年龄、工作时间、MDA 浓度和 PbB 呈统计学显著负相关。选定的 CEOAE 参数与血镉浓度(CdB)呈显著负相关,与 Ca 和 Zn 呈正相关。

结论

职业暴露中血铅含量升高与 MDA 和 LPS 浓度升高相关,而这与 CEOAE 参数呈负相关。这表明氧化应激在长期听力恶化中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51d0/11393139/84e6af381bda/405_2024_8675_Fig1_HTML.jpg

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