产前暴露于百草枯和代森锰锌对发育中的小鼠小脑皮层氨基酸突触传递的影响

Leticia Miranda-Contreras, Rosaura Dávila-Ovalles, Pedro Benítez-Díaz, Zulma Peña-Contreras, Ernesto Palacios-Prü
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引用次数: 39

摘要

本研究旨在分析产前暴露于杀虫剂百草枯(PQ)和代森锌(MZ)对小鼠小脑皮质突触传递发育的影响。怀孕的NMRI小鼠在妊娠第12天(E12)至E20天期间分别接受生理盐水、10 mg/kg PQ、30 mg/kg MZ或PQ + MZ的组合治疗。在出生后第1天(P1)和P30之间,用HPLC测定氨基酸神经递质水平的变化。在P14、P21和P30时,通过运动活动评估对照组和实验幼鼠的运动协调性。在浦肯野细胞兴奋性神经支配的高峰期(P2-P5和P11-P15之间),与对照组相比,PQ-、MZ-或PQ + MZ联合暴露的幼鼠的兴奋性神经递质(天冬氨酸和谷氨酸)水平显著降低。然而,在P30时,所有实验组的天冬氨酸含量都较低,而谷氨酸水平则升高。在出生后的前两周,暴露于PQ-和PQ + mz的幼鼠体内GABA和甘氨酸的生成延迟,而暴露于PQ + mz的幼鼠体内GABA和甘氨酸水平明显下降。PQ-和PQ + mz暴露小鼠P3和P11部位牛磺酸含量降低。不同实验组的幼犬在P14时均表现出多动,在P30时表现出运动活性降低。综上所述,我们的研究结果表明,产前暴露于PQ或MZ或两者兼有可能改变发育中的小鼠小脑皮层突触传递的时间顺序和强度。
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Effects of prenatal paraquat and mancozeb exposure on amino acid synaptic transmission in developing mouse cerebellar cortex

The goal of this study was to analyze the effects of prenatal exposure to the pesticides paraquat (PQ) and mancozeb (MZ) on the development of synaptic transmission in mouse cerebellar cortex. Pregnant NMRI mice were treated with either saline, 10 mg/kg PQ, 30 mg/kg MZ or the combination of PQ + MZ, between gestational days 12 (E12) and E20. Variation in the levels of amino acid neurotransmitters was determined by HPLC, between postnatal day 1 (P1) and P30. Motor coordination was assessed by locomotor activity evaluation of control and experimental pups at P14, P21 and P30. Significant reductions in the levels of excitatory neurotransmitters, aspartate and glutamate, were observed in PQ-, MZ- or combined PQ + MZ-exposed pups, with respect to control, during peak periods of excitatory innervation of Purkinje cells: between P2–P5 and P11–P15. However, at P30, lower aspartate contents, in contrast with increased glutamate levels, were detected in all experimental groups. During the first two postnatal weeks, delays in GABA and glycine ontogenesis were observed in PQ- and PQ + MZ-exposed pups, whereas notable decrements in GABA and glycine levels were seen in PQ + MZ-exposed animals. Decreased taurine contents were detected at P3 and P11 in PQ- and PQ + MZ-exposed mice. Pups in different experimental groups all showed hyperactivity at P14 and then exhibited reduced locomotor activity at P30. Taken together, our results indicate that prenatal exposure to either PQ or MZ or the combination of both could alter the chronology and magnitude of synaptic transmission in developing mouse cerebellar cortex.

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