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Applications of Metabonomics in Pesticide Toxicology

机译:代谢组学在农药毒理学中的应用

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摘要

Metabonomic studies quantitatively measure the small molecule metabolites and their intermediates in the biological samples (serum, urine or tissue extracts) and have gained wide applications in many fields, especially in toxicology. Pesticides are extensively used around the world and pesticide toxicity has become a serious threat to human health. Metabonomic approach has been applied in many aspects of pesticide toxicology research such as eco-environmental toxicity studies, biomarker identification, and mechanism of toxicity studies. Both whole organism animal models and cell culture models are used for metabonomic studies on pesticide toxicology. In the literature, metabonomic analyses on the toxicity of over thirty common pesticides, including insecticides, herbicides and fungicides, have been carried out using magnetic resonance spectroscopy or mass spectrometry. The combined toxicity of pesticides or pesticide with heavy metals was also investigated with metabonomic approach. In this article, recent progresses made in applying metabonomic approach in pesticide toxicology are thoroughly reviewed and the challenges with application of this approach are also discussed.
机译:代谢组学研究定量测量了生物样品(血清,尿液或组织提取物中)中的小分子代谢物及其中间体,并已在许多领域获得了广泛的应用,特别是在毒理学领域。农药在世界范围内得到广泛使用,农药毒性已成为对人类健康的严重威胁。代谢组学方法已应用于农药毒理学研究的许多方面,例如生态环境毒性研究,生物标志物鉴定和毒性研究机理。全生物动物模型和细胞培养模型均用于农药毒理学的代谢组学研究。在文献中,已经使用磁共振波谱或质谱法对包括杀虫剂,除草剂和杀真菌剂在内的三十多种常见农药的毒性进行了代谢组学分析。还使用代谢组学方法研究了农药或农药与重金属的综合毒性。在本文中,对代谢组学方法在农药毒理学中应用的最新进展进行了全面回顾,并讨论了该方法的应用挑战。

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