Laboratory of Toxicology and Environmental Health.LR17ES06, Sciences Faculty of Sfax, University of Sfax, BP1171, 3000, Sfax, Tunisia.
Department of Environmental and Occupational Health, Chair in Toxicological Risk Assessment and Management, Institute of Research in Publish Health (IRSPUM), University of Montreal, Roger-Gaudry Building, U424, P.O. Box 6128, Main Station, Montreal, Quebec, H3C 3J7, Canada.
Chem Biol Interact. 2019 Sep 25;311:108796. doi: 10.1016/j.cbi.2019.108796. Epub 2019 Aug 14.
Lambda-cyhalothrin (LCT) is a broad-spectrum pesticide widely used in agriculture throughout the world. This pesticide is considered a potential contaminant of surface and underground water as well as food, posing a risk to ecosystems and humans. In this sense, we decided to evaluate the activity of enzymes belonging to the purinergic system, which is linked with regulation of extracellular nucleotides and nucleosides, such as adenosine triphosphate (ATP) and adenosine (Ado) molecules involved in the regulation of inflammatory response. However, there are no data concerning the effects of LCT exposure on the purinergic system, where extracellular nucleotides act as signaling molecules. The aim of this study was to evaluate nucleotide hydrolysis by E-NTPDase (ecto-nucleoside triphosphate diphosphohydrolase), Ecto-NPP (ecto-nucleotide pyrophosphatase/phosphodiesterase), ecto-5'-nucleotidase and ecto-adenosine deaminase (E-ADA) in platelets and liver of adult rats on days 7, 30, 45 and 60 after daily gavage with 6.2 and 31.1 mg/kg bw of LCT. Gene expression patterns of NTPDases1-3 and 5'-nucleotidase were also determined in those tissues. In parallel, lambda-cyhalothrin metabolites [3-(2-chloro-3,3,3- trifluoroprop-1-enyl)-2,2-dimethyl-cyclopropane carboxylic acid (CFMP), 4-hydroxyphenoxybenzoic acid (4-OH-3-PBA), and 3-phenoxybenzoic acid (3-PBA)] were measured in plasma. Results showed that exposure rats to LCT caused a significant increase in the assessed enzymes activities. Gene expression pattern of ectonucleotidases further revealed a significant increase in E-NTPDase1, E-NTPDase2, and E-NTPDase3 mRNA levels after LCT administration at all times. A dose-dependent increase in LCT metabolite levels was also observed but there no significant variations in levels from weeks to week, suggesting steady-steady equilibrium. Correlation analyses revealed that LCT metabolites in the liver and plasma were positively correlated with the adenine nucleotides hydrolyzing enzyme, E-ADA and E-NPP activities in platelets and liver of rats exposed to lambda-cyhalothin. Our results show that LCT and its metabolites may affect purinergic enzymatic cascade and cause alterations in energy metabolism.
溴氰菊酯(LCT)是一种在世界范围内广泛应用于农业的广谱杀虫剂。这种杀虫剂被认为是地表水和地下水以及食物的潜在污染物,对生态系统和人类构成威胁。在这种情况下,我们决定评估属于嘌呤能系统的酶的活性,该系统与细胞外核苷酸和核苷的调节有关,如三磷酸腺苷(ATP)和腺苷(Ado)分子,它们参与炎症反应的调节。然而,目前还没有关于 LCT 暴露对嘌呤能系统(细胞外核苷酸作为信号分子)影响的数据。本研究的目的是评估成年大鼠在每天灌胃 6.2 和 31.1mg/kg bw LCT 后第 7、30、45 和 60 天,血小板和肝脏中 E-NTPDase(外核苷三磷酸二磷酸水解酶)、Ecto-NPP(外核苷酸焦磷酸酶/磷酸二酯酶)、外 5'-核苷酸酶和外腺苷脱氨酶(E-ADA)对核苷酸的水解作用。还确定了这些组织中 NTPDases1-3 和 5'-核苷酸酶的基因表达模式。同时,在血浆中测量了 lambda-氰戊菊酯代谢物[3-(2-氯-3,3,3-三氟丙-1-烯基)-2,2-二甲基环丙烷羧酸(CFMP)、4-羟基苯氧基苯甲酸(4-OH-3-PBA)和 3-苯氧基苯甲酸(3-PBA)]。结果表明,暴露于 LCT 的大鼠导致评估酶的活性显著增加。外核苷酸酶的基因表达模式进一步显示,在 LCT 给药后所有时间点 E-NTPDase1、E-NTPDase2 和 E-NTPDase3 mRNA 水平均显著增加。还观察到 LCT 代谢物水平呈剂量依赖性增加,但各周之间无明显变化,表明达到稳定平衡。相关性分析表明,暴露于 lambda-氰戊菊酯的大鼠肝脏和血浆中的 LCT 代谢物与血小板和肝脏中腺嘌呤核苷酸水解酶 E-ADA 和 E-NPP 的活性呈正相关。我们的结果表明,LCT 及其代谢物可能会影响嘌呤能酶级联反应,并导致能量代谢发生变化。