CA1区胆碱能毒蕈碱受体在氧化铁纳米颗粒致成年雄性大鼠记忆损伤中的作用

IF 1.4 Q4 NANOSCIENCE & NANOTECHNOLOGY
A. Karimi, L. Khajehpour, M. Kesmati
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引用次数: 1

摘要

目的:纳米氧化铁(nFe2O3)广泛应用于医学和工业,并可能干扰与记忆相关的大脑过程。毒蕈碱胆碱能受体在记忆形成过程中的作用已被证实。本研究旨在探讨nFe2O3对成年雄性大鼠海马背侧CA1区胆碱能毒蕈碱受体的干扰作用。材料和方法:在本研究中,我们研究了海马背侧CA1区胆碱能毒蕈碱受体可能参与nFe2O3诱导的记忆障碍。将70只雄性大鼠分为生理盐水(1 μ l/大鼠)+生理盐水(1 ml/kg;腹腔注射[IP],生理盐水(1µl/大鼠)+nFe2O3(5和7.5 mg/kg;匹罗卡品(1和2µg/大鼠)+生理盐水(1 ml/kg),匹罗卡品(1和2µg/大鼠)+nFe2O3 (7.5 mg/kg;IP),东莨菪碱(1和2µg/大鼠)+生理盐水(1 ml/kg),东莨菪碱(1µg/大鼠)+ nFe2O3 (5 mg/kg;IP)。结果:训练后和注射nFe2O3前,在ca1内注射匹罗卡品和东莨菪碱。在训练后24小时和7天,在开阔场地对动物进行穿越装置进入暗室的潜伏期和运动活动。结果表明,nFe2O3 (7.5 mg/kg)降低了记忆检索(P
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of the cholinergic muscarinic receptors of the CA1 area in the memory impairment induced by iron oxide nanoparticle in adult male rats
Objective(s): Nanoparticles of iron oxide (nFe2O3) are widely used in medicine and industry and could interfere with the brain processes associated with memory. The involvement of muscarinic cholinergic receptors in the process of memory formation has been confirmed. The present study aimed to investigate the possible interference of the cholinergic muscarinic receptors of the dorsal hippocampal CA1 area in the memory impairment induced by nFe2O3 in adult male rats.Materials and Methods: In this study, we examined the possible involvement of the cholinergic muscarinic receptors of the dorsal hippocampal CA1 area in the memory impairment induced by nFe2O3. In total, 70 male rats were divided into 10 groups of saline (1 µl/rat)+saline (1 ml/kg; intraperitoneal [IP]), saline (1 µl/rat)+nFe2O3 (5 and 7.5 mg/kg; IP), pilocarpine (1 and 2 µg/rat)+saline (1 ml/kg), pilocarpine (1 and 2 µg/rat)+nFe2O3 (7.5 mg/kg; IP), scopolamine (1 and 2 µg/rat)+saline (1 ml/kg), and scopolamine (1 µg/rat)+ nFe2O3 (5 mg/kg; IP).Results: Pilocarpine and scopolamine were injected intra-CA1 after training and before the IP administration of nFe2O3. The latency to enter the dark compartment in the step-through apparatus and locomotor activity was performed on the animals in an open field at 24 hours and seven days after training. The results indicated that nFe2O3 (7.5 mg/kg) decreased memory retrieval (P
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来源期刊
Nanomedicine Journal
Nanomedicine Journal NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
3.40
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0.00%
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审稿时长
12 weeks
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