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植物保护产品Stifenia(FEN560)对脊椎动物的炎症影响。

Inflammatory Effects of the Plant Protection Product Stifenia (FEN560) on Vertebrates.

作者信息

Teyssier Lény, Colussi Julie, Delemasure Stéphanie, Chluba Johanna, Wendehenne David, Lamotte Olivier, Connat Jean-Louis

机构信息

Univ. Bourgogne Franche-Comté, LNC UMR866, Dijon, France.

UMR1347 Agroécologie, AgroSup Dijon, INRA, Univ. Bourgogne Franche-Comté, Dijon, France.

出版信息

Front Public Health. 2017 Apr 24;5:74. doi: 10.3389/fpubh.2017.00074. eCollection 2017.

Abstract

Plant defense stimulators (PDSs) rely on the activation of plant innate immunity in order to protect crops against various pests. These molecules are thought to be a safer alternative to classical plant protection products. Given that innate immune systems share common features in plants and vertebrates, PDS can potentially cross-react with innate immunity of non-target organisms. To test this hypothesis, we studied effects of the commercial PDS Stifenia (FEN560), which is composed of crushed fenugreek seeds. We tested various concentrations of Stifenia (0.03-1 mg mL) on human peripheral blood mononuclear cells and checked, 20 h later, cell metabolic activity (MA) using XTT assay, cell death by flow cytometry analysis, and IL-1β inflammatory cytokine released in the culture medium using ELISA. Stifenia induced a general decrease of the cell MA, which was concomitant with a dose-dependent release of IL-1β. Our results highlight the activation of human immune cells. The inflammatory effect of Stifenia was partially inhibited by pan-caspase inhibitor. Accordingly, Stifenia induced the release of p20 caspase-1 fragment into the culture medium suggesting the involvement of the NLRP3 inflammasome. Furthermore, we observed that Stifenia can induce cell death. We also tested the effect of Stifenia on Zebrafish larvae. After 24 h of exposure, Stifenia induced a dose-dependent IL-1β and TNFα gene expression. The human-cell-based approach developed in this work revealed a high sensitivity concerning inflammatory properties of a plant protection product. These tests could be routinely used to screen the potential adverse effects of this type of compounds. Finally, our results suggest a potential danger of using extensively certain PDS for crop protection.

摘要

植物防御刺激剂(PDSs)依靠激活植物先天免疫来保护作物抵御各种害虫。这些分子被认为是传统植物保护产品的一种更安全的替代品。鉴于植物和脊椎动物的先天免疫系统具有共同特征,PDS可能会与非靶标生物的先天免疫发生交叉反应。为了验证这一假设,我们研究了由碾碎的胡芦巴种子组成的商业PDS Stifenia(FEN560)的作用。我们在人外周血单核细胞上测试了不同浓度的Stifenia(0.03 - 1 mg/mL),并在20小时后,使用XTT法检测细胞代谢活性(MA),通过流式细胞术分析检测细胞死亡情况,以及使用ELISA检测培养基中释放的IL-1β炎症细胞因子。Stifenia导致细胞MA普遍下降,这与IL-1β的剂量依赖性释放同时发生。我们的结果突出了人类免疫细胞的激活。泛半胱天冬酶抑制剂部分抑制了Stifenia的炎症作用。因此,Stifenia诱导p20半胱天冬酶-1片段释放到培养基中,表明NLRP3炎性小体的参与。此外,我们观察到Stifenia可诱导细胞死亡。我们还测试了Stifenia对斑马鱼幼虫的影响。暴露24小时后,Stifenia诱导IL-1β和TNFα基因表达呈剂量依赖性。这项工作中开发的基于人类细胞的方法揭示了一种植物保护产品在炎症特性方面具有高敏感性。这些测试可常规用于筛选这类化合物的潜在不良反应。最后,我们的结果表明广泛使用某些PDS进行作物保护存在潜在危险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00a2/5402227/f8284a2f437e/fpubh-05-00074-g001.jpg

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