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长期镉暴露的代谢影响:综述

Metabolic effects of long-term cadmium exposure: an overview.

作者信息

Chen Xiao-Xia, Xu Yan-Ming, Lau Andy T Y

机构信息

Laboratory of Cancer Biology and Epigenetics, Department of Cell Biology and Genetics, Shantou University Medical College, Shantou, Guangdong, 515041, People's Republic of China.

Guangdong Provincial Key Laboratory for Breast Cancer Diagnosis and Treatment, Shantou University Medical College, Shantou, Guangdong, 515041, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2022 Dec;29(60):89874-89888. doi: 10.1007/s11356-022-23620-6. Epub 2022 Nov 11.

Abstract

Cadmium (Cd) is a toxic non-essential heavy metal. Chronic low Cd exposure (CLCE) has been associated with distinct pathologies in many organ systems, including liver and kidney damage, osteoporosis, carcinogenicity, or reproductive toxicity. Currently, about 10% of the global population is at risk of CLCE. It is urgent to find robust and effective biomarkers for early diagnosis of Cd exposure and treatment. Metabolomics is a high-throughput method based on mass spectrometry to study the dynamic changes in a series of endogenous small molecular metabolites (typically < 1000 Da) of tissues, cells, or biofluids. It can reflect the rich and complex biochemical changes in the body after exposure to heavy metals, which may be useful in screening biomarkers to monitor exposure to environmental pollutants and/or predict disease risk. Therefore, this review focuses on the changes in metabolic profiles of humans and rodents under long-term Cd exposure from the perspective of metabolomics. Furthermore, the relationship between the disturbance of metabolic pathways and the toxic mechanism of Cd is discussed. All these information will facilitate the development of reliable metabolic biomarkers for early detection and diagnosis of Cd-related diseases.

摘要

镉(Cd)是一种有毒的非必需重金属。长期低剂量镉暴露(CLCE)与许多器官系统的不同病变有关,包括肝和肾损伤、骨质疏松、致癌性或生殖毒性。目前,全球约10%的人口面临长期低剂量镉暴露的风险。迫切需要找到强大而有效的生物标志物用于镉暴露的早期诊断和治疗。代谢组学是一种基于质谱的高通量方法,用于研究组织、细胞或生物流体中一系列内源性小分子代谢物(通常<1000 Da)的动态变化。它可以反映重金属暴露后体内丰富而复杂的生化变化,这可能有助于筛选生物标志物以监测环境污染物暴露和/或预测疾病风险。因此,本综述从代谢组学的角度关注长期镉暴露下人和啮齿动物代谢谱的变化。此外,还讨论了代谢途径紊乱与镉的毒性机制之间的关系。所有这些信息将有助于开发可靠的代谢生物标志物,用于镉相关疾病的早期检测和诊断。

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