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白杨素可恢复甲状腺功能减退症小鼠的记忆缺陷:涉及神经营养系统的行为、神经化学和计算方法。

Chrysin restores memory deficit in hypothyroidism mice: Behavioral, neurochemical and computational approaches involving the neurotrophinergic system.

机构信息

Laboratório de Avaliações Farmacológicas e Toxicológicas aplicadas às Moléculas Bioativas - Unipampa, Universidade Federal do Pampa - Campus Itaqui, Itaqui, RS, Brazil.

Grupo de Pesquisa em Neurobiotecnologia - GPN, Centro de Desenvolvimento Tecnológico, Universidade Federal de Pelotas, UFPel, Pelotas, RS, Brazil.

出版信息

J Psychiatr Res. 2021 Dec;144:225-233. doi: 10.1016/j.jpsychires.2021.10.018. Epub 2021 Oct 19.

DOI:10.1016/j.jpsychires.2021.10.018
PMID:34700210
Abstract

Hypothyroidism is a condition that affects multiple systems, including the central nervous system, causing, for example, cognitive deficits closely related to Alzheimer's disease. The flavonoid chrysin is a natural compound associated with neuronal improvement in several experimental models. Here, we evaluated the effect of chrysin on cognitive impairment in hypothyroid female mice by exploring neuroplasticity. Hypothyroidism was induced by continuous exposure to 0.1% methimazole (MTZ) in drinking water for 31 days. On the 32nd day, the animals showed low plasma levels of thyroid hormones (hypothyroid mice) than the control group (euthyroid mice). Subsequently, mice were intragastrically administered with vehicle or chrysin (20 mg/kg) once a day for 28 consecutive days. At the end of the treatments, behavioral tests were performed: open-field test (OFT) and morris water maze (MWM). Then, the levels of neurotrophins (BDNF and NGF) in the hippocampus and prefrontal cortex were measured and tested the affinity of chrysin with neurotrophinergic receptors through molecular docking. Hypothyroid mice showed memory deficit in the MWM and reduced neurotrophins levels in the hippocampus and prefrontal cortex, meanwhile, the chrysin treatment was able to reversed the deficit of spatial memory function and increased the levels of BDNF in hipocamppus and NGF in both structures. Additionally, molecular docking analysis showed that chrysin potentially binds to the active site of the TrkA, TrkB, and p75NTR receptors. Together, these findings suggest that chrysin reversed behavioral and neurochemical alterations associated with memory deficit induced by hypothyroidism, possibly by modulating synaptic plasticity in the neurotrophinergic system.

摘要

甲状腺功能减退症是一种影响多个系统的疾病,包括中枢神经系统,导致与阿尔茨海默病密切相关的认知缺陷等。类黄酮白杨素是一种与几种实验模型中的神经元改善相关的天然化合物。在这里,我们通过探索神经可塑性来评估白杨素对甲状腺功能减退症雌性小鼠认知障碍的影响。通过连续 31 天在饮用水中暴露于 0.1%甲巯咪唑 (MTZ) 来诱导甲状腺功能减退症。第 32 天,与对照组(甲状腺功能正常的小鼠)相比,动物的血浆甲状腺激素水平较低(甲状腺功能减退症小鼠)。随后,每天一次通过胃内给药给动物施用载体或白杨素(20mg/kg),连续 28 天。在治疗结束时,进行行为测试:旷场测试 (OFT) 和莫里斯水迷宫 (MWM)。然后,测量海马体和前额叶皮质中的神经营养因子(BDNF 和 NGF)水平,并通过分子对接测试白杨素与神经营养因子受体的亲和力。甲状腺功能减退症小鼠在 MWM 中表现出记忆缺陷,并且海马体和前额叶皮质中的神经营养因子水平降低,同时,白杨素治疗能够逆转空间记忆功能的缺陷并增加海马体中的 BDNF 水平和两个结构中的 NGF 水平。此外,分子对接分析表明,白杨素潜在地结合到 TrkA、TrkB 和 p75NTR 受体的活性位点。总之,这些发现表明,白杨素逆转了与甲状腺功能减退症引起的记忆缺陷相关的行为和神经化学改变,可能通过调节神经营养因子系统中的突触可塑性。

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