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二异壬基邻苯二甲酸酯代谢物毒性潜力评估及其与家族 1 磺基转移酶成员相互作用的研究。

Evaluation of the Toxicity Potential of the Metabolites of Di-Isononyl Phthalate and of Their Interactions with Members of Family 1 of Sulfotransferases-A Computational Study.

机构信息

Department of Biology Chemistry, West University of Timisoara, 16 Pestalozzi, 300115 Timisoara, Romania.

Advanced Environmental Research Laboratories, West University of Timisoara, 4 Oituz, 300086 Timisoara, Romania.

出版信息

Molecules. 2023 Sep 21;28(18):6748. doi: 10.3390/molecules28186748.

Abstract

Di-isononyl phthalates are chemicals that are widely used as plasticizers. Humans are extensively exposed to these compounds by dietary intake, through inhalation and skin absorption. Sulfotransferases (SULTs) are enzymes responsible for the detoxification and elimination of numerous endogenous and exogenous molecules from the body. Consequently, SULTs are involved in regulating the biological activity of various hormones and neurotransmitters. The present study considers a computational approach to predict the toxicological potential of the metabolites of di-isononyl phthalate. Furthermore, molecular docking was considered to evaluate the inhibitory potential of these metabolites against the members of family 1 of SULTs. The metabolites of di-isononyl phthalate reveal a potency to cause liver damage and to inhibit receptors activated by peroxisome proliferators. These metabolites are also usually able to inhibit the activity of the members of family 1 of SULTs, except for SULT1A3 and SULT1B1. The outcomes of this study are important for an enhanced understanding of the risk of human exposure to di-isononyl phthalates.

摘要

邻苯二甲酸二异壬酯是一种广泛用作增塑剂的化学物质。人类通过饮食摄入、吸入和皮肤吸收等途径广泛接触这些化合物。磺基转移酶(SULTs)是负责体内许多内源性和外源性分子解毒和消除的酶。因此,SULTs 参与调节各种激素和神经递质的生物活性。本研究采用计算方法预测邻苯二甲酸二异壬酯代谢物的毒理学潜力。此外,还考虑了分子对接来评估这些代谢物对 SULTs 家族 1 成员的抑制潜力。邻苯二甲酸二异壬酯的代谢物具有引起肝损伤和抑制过氧化物酶体增殖物激活受体的能力。这些代谢物通常也能够抑制 SULTs 家族 1 的成员的活性,除了 SULT1A3 和 SULT1B1。本研究的结果对于增强对人类接触邻苯二甲酸二异壬酯风险的理解非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7901/10536557/d501c061598f/molecules-28-06748-g001.jpg

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