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久效磷可诱导预先致敏的人脑培养细胞中异生物质代谢酶的表达和活性。

Monocrotophos induces the expression and activity of xenobiotic metabolizing enzymes in pre-sensitized cultured human brain cells.

作者信息

Tripathi Vinay K, Kumar Vivek, Singh Abhishek K, Kashyap Mahendra P, Jahan Sadaf, Pandey Ankita, Alam Sarfaraz, Khan Feroz, Khanna Vinay K, Yadav Sanjay, Lohani Mohtshim, Pant Aditya B

机构信息

In Vitro Toxicology Laboratory, CSIR-Indian Institute of Toxicology Research, Lucknow, India; Department of Biotechnology, Integral University, Lucknow, India.

In Vitro Toxicology Laboratory, CSIR-Indian Institute of Toxicology Research, Lucknow, India.

出版信息

PLoS One. 2014 Mar 24;9(3):e91946. doi: 10.1371/journal.pone.0091946. eCollection 2014.

Abstract

The expression and metabolic profile of cytochrome P450s (CYPs) is largely missing in human brain due to non-availability of brain tissue. We attempted to address the issue by using human brain neuronal (SH-SY5Y) and glial (U373-MG) cells. The expression and activity of CYP1A1, 2B6 and 2E1 were carried out in the cells exposed to CYP inducers viz., 3-methylcholanthrene (3-MC), cyclophosphamide (CPA), ethanol and known neurotoxicant- monocrotophos (MCP), a widely used organophosphorous pesticide. Both the cells show significant induction in the expression and CYP-specific activity against classical inducers and MCP. The induction level of CYPs was comparatively lower in MCP exposed cells than cells exposed to classical inducers. Pre-exposure (12 h) of cells to classical inducers significantly added the MCP induced CYPs expression and activity. The findings were concurrent with protein ligand docking studies, which show a significant modulatory capacity of MCP by strong interaction with CYP regulators-CAR, PXR and AHR. Similarly, the known CYP inducers- 3-MC, CPA and ethanol have also shown significantly high docking scores with all the three studied CYP regulators. The expression of CYPs in neuronal and glial cells has suggested their possible association with the endogenous physiology of the brain. The findings also suggest the xenobiotic metabolizing capabilities of these cells against MCP, if received a pre-sensitization to trigger the xenobiotic metabolizing machinery. MCP induced CYP-specific activity in neuronal cells could help in explaining its effect on neurotransmission, as these CYPs are known to involve in the synthesis/transport of the neurotransmitters. The induction of CYPs in glial cells is also of significance as these cells are thought to be involved in protecting the neurons from environmental insults and safeguard them from toxicity. The data provide better understanding of the metabolizing capability of the human brain cells against xenobiotics.

摘要

由于无法获取脑组织,细胞色素P450(CYPs)在人类大脑中的表达和代谢谱在很大程度上尚不明确。我们试图通过使用人类脑神经元(SH-SY5Y)和神经胶质(U373-MG)细胞来解决这一问题。在暴露于CYP诱导剂(即3-甲基胆蒽(3-MC)、环磷酰胺(CPA)、乙醇和已知神经毒物久效磷(MCP,一种广泛使用的有机磷农药))的细胞中检测了CYP1A1、2B6和2E1的表达及活性。两种细胞对经典诱导剂和MCP的表达及CYP特异性活性均有显著诱导。与暴露于经典诱导剂的细胞相比,暴露于MCP的细胞中CYPs的诱导水平相对较低。细胞预先暴露(12小时)于经典诱导剂可显著增加MCP诱导的CYPs表达及活性。这些发现与蛋白质配体对接研究结果一致,该研究表明MCP通过与CYP调节因子CAR、PXR和AHR的强烈相互作用具有显著的调节能力。同样,已知的CYP诱导剂3-MC、CPA和乙醇与所有三种研究的CYP调节因子也显示出显著高的对接分数。CYPs在神经元和神经胶质细胞中的表达表明它们可能与大脑的内源性生理有关。这些发现还表明,如果这些细胞预先致敏以触发外源性物质代谢机制,它们对外源性物质MCP具有代谢能力。MCP诱导神经元细胞中的CYP特异性活性有助于解释其对神经传递的影响,因为已知这些CYPs参与神经递质的合成/运输。神经胶质细胞中CYPs的诱导也具有重要意义,因为这些细胞被认为参与保护神经元免受环境损伤并使其免受毒性影响。这些数据为更好地理解人类脑细胞对外源性物质的代谢能力提供了依据。

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