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有机磷异生物质毒理学。

Organophosphorus Xenobiotic Toxicology.

机构信息

Environmental Chemistry and Toxicology Laboratory, Department of Environmental Science, Policy, and Management, University of California, Berkeley, California 94720-3112; email:

出版信息

Annu Rev Pharmacol Toxicol. 2017 Jan 6;57:309-327. doi: 10.1146/annurev-pharmtox-010716-104926.

Abstract

Originally, organophosphorus (OP) toxicology consisted of acetylcholinesterase inhibition by insecticides and chemical threat agents acting as phosphorylating agents for serine in the catalytic triad, but this is no longer the case. Other serine hydrolases can be secondary OP targets, depending on the OP structure, and include neuropathy target esterase, lipases, and endocannabinoid hydrolases. The major OP herbicides are glyphosate and glufosinate, which act in plants but not animals to block aromatic amino acid and glutamine biosynthesis, respectively, with safety for crops conferred by their expression of herbicide-tolerant targets and detoxifying enzymes from bacteria. OP fungicides, pharmaceuticals including calcium retention agents, industrial chemicals, and cytochrome P450 inhibitors act by multiple noncholinergic mechanisms, often with high potency and specificity. One type of OP-containing fire retardant forms a highly toxic bicyclophosphate γ-aminobutyric acid receptor antagonist upon combustion. Some OPs are teratogenic, mutagenic, or carcinogenic by known mechanisms that can be avoided as researchers expand knowledge of OP chemistry and toxicology for future developments in bioregulation.

摘要

最初,有机磷(OP)毒理学包括杀虫剂对乙酰胆碱酯酶的抑制作用,以及作为丝氨酸催化三联体中磷酸化剂的化学威胁剂,但情况已不再如此。其他丝氨酸水解酶也可能成为 OP 的次要靶标,具体取决于 OP 的结构,包括神经毒性靶酯酶、脂肪酶和内源性大麻素水解酶。主要的 OP 除草剂是草甘膦和草铵膦,它们分别在植物中发挥作用,而在动物中不起作用,分别阻断芳香族氨基酸和谷氨酰胺的生物合成,由于它们表达了来自细菌的除草剂耐受靶标和解毒酶,因此对作物安全。OP 杀菌剂、包括钙保持剂在内的药物、工业化学品和细胞色素 P450 抑制剂通过多种非胆碱能机制发挥作用,通常具有高效力和特异性。有一种含 OP 的阻燃剂在燃烧时会形成一种高度有毒的双环膦酸盐γ-氨基丁酸受体拮抗剂。一些 OP 通过已知机制具有致畸性、致突变性或致癌性,随着研究人员扩展 OP 化学和毒理学知识,以促进未来的生物调节发展,可以避免这些机制。

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