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锌水平对职业暴露工人铅暴露中毒表现的影响。

Influence of zinc levels on the toxic manifestations of lead exposure among the occupationally exposed workers.

机构信息

Cytogenetics and Molecular Toxicological Laboratory, Section of Genetics, Department of Zoology, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, Uttar Pradesh, 202002, India.

Molecular Cancer Genetics & Translational Research Lab, Section of Genetics, Department of Zoology, Aligarh Muslim University, Aligarh, Uttar Pradesh, 202002, India.

出版信息

Environ Sci Pollut Res Int. 2019 Nov;26(32):33541-33554. doi: 10.1007/s11356-019-06443-w. Epub 2019 Oct 3.

Abstract

Lead and zinc are usually found at the same occupational places and occur as co-contaminants. Effects of lead toxicity are detrimental on human health as it is probable carcinogen and impairs normal growth and development. On the other hand, zinc is an important nutritional element, the deficiency of which causes debilitating effects on growth and development. The purpose of this study was to examine the possible association of blood lead and zinc levels and any influence of zinc over DNA damage, blood cell membrane aberration and oxidative stress among lead and zinc co-exposed workers. Atomic absorption spectroscopy was used for lead and zinc measurement and comet assay for DNA damage assessment. Haematological aberrations were studied using light and electron microscopy (LM and EM) followed by electron density X-ray spectroscopy (EDS) and elemental mapping. Occupational exposure was observed to cause significant elevation in blood lead levels among workers. This elevation in lead levels and associated DNA damage among workers was significantly high in comparison to controls. Further light and electron micrographs of red blood cells revealed significant morphological alterations associated with increased lead ions in workers. It was clear from SEM-based elemental maps and EDS graphs that elevated lead levels were associated with low levels of zinc. The results suggest that lead absorption is highly influenced due to zinc levels in body which has an impact over DNA damage, blood cell aberration and oxidative stress caused by lead exposure. Efforts are going on to understand the role of other trace metals on lead toxicity in order to develop a sustainably nutrition-based therapeutic intervention. Graphical abstract.

摘要

铅和锌通常在同一职业场所被发现,并且作为共同污染物存在。铅毒性的影响对人类健康有害,因为它是一种可能的致癌物质,并损害正常的生长和发育。另一方面,锌是一种重要的营养元素,其缺乏会对生长和发育造成衰弱影响。本研究的目的是研究血铅和锌水平之间的可能关联,以及锌对铅和锌共同暴露工人的 DNA 损伤、血细胞膜异常和氧化应激的任何影响。原子吸收光谱法用于测量铅和锌,彗星试验用于评估 DNA 损伤。使用光和电子显微镜(LM 和 EM)研究血液学异常,随后进行电子密度 X 射线光谱(EDS)和元素映射。观察到职业暴露导致工人血液中铅水平显著升高。与对照组相比,这种铅水平升高和相关的 DNA 损伤在工人中明显更高。进一步的红细胞光和电子显微镜图显示,与工人体内增加的铅离子相关的形态改变显著。从基于 SEM 的元素图和 EDS 图可以清楚地看出,铅水平升高与锌水平降低有关。结果表明,由于体内锌水平,铅的吸收受到高度影响,这对铅暴露引起的 DNA 损伤、血细胞异常和氧化应激有影响。正在努力了解其他微量元素对铅毒性的作用,以便开发基于可持续营养的治疗干预措施。

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