Effects of prolonged escitalopram administration on long-term potentiation within the hippocampal CA1 area in rats under predictable and unpredictable chronic mild stress.

IF 3.2 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Vajihe Saedi Marghmaleki, Maryam Radahmadi, Hojjatallah Alaei, Hossein Khanahmad
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Abstract

Exposure to chronic stress impairs memory. Also, escitalopram's impact on memory remains paradoxical. Therefore, this study examined how prolonged escitalopram administration affects input-output (I/O) functions, paired-pulse ratio (PPR), and long-term potentiation (LTP) in the hippocampal CA1 area in rats that underwent predictable and unpredictable chronic mild stress (PCMS and UCMS, respectively). Male rats were randomly assigned to different groups of control (Co), sham (Sh), PCMS and UCMS (PSt and USt, respectively; 2 h/day, for 21 consecutive days), escitalopram (Esc; 10 mg/kg, i.p., for 21 days), as well as PCMS and UCMS with escitalopram (PSt-Esc and USt-Esc, respectively). The fEPSP slope, amplitude, and area under the curve (AUC) were assessed in the hippocampal CA1 area using I/O functions, PP responses, and LTP. Serum corticosterone (CORT) levels were quantified in all experimental animals. The slope, amplitude, and AUC of fEPSP in the I/O functions, and all three PP phases prior and subsequent to LTP induction significantly declined in the USt and PSt groups. Escitalopram significantly enhanced these parameters in the PSt-Esc, but not in the USt-Esc group. Serum CORT levels corroborated the electrophysiological findings among experimental groups. Both PCMS and UCMS impaired neural excitability, neurotransmission, and memory within the hippocampal CA1 area. Escitalopram improved memory impairment only under PCMS, potentially attributed to reduced serum CORT levels. However, no influence on neural excitability, neurotransmission, and memory was observed under UCMS. This suggests different escitalopram doses might be required to ameliorate simultaneous mechanisms in response to various types of chronic mild stress.

Abstract Image

在可预测和不可预测的慢性轻度应激状态下,长期服用艾司西酞普兰对大鼠海马CA1区长期电位的影响
长期处于压力之下会损害记忆力。此外,艾司西酞普兰对记忆的影响仍然自相矛盾。因此,本研究考察了长期服用艾司西酞普兰如何影响大鼠海马CA1区的输入输出(I/O)功能、配对脉冲比(PPR)和长期电位(LTP)。雄性大鼠被随机分配到不同的组别:对照组(Co)、假组(Sh)、PCMS 和 UCMS 组(分别为 PSt 和 USt,每天 2 小时,连续 21 天)、艾司西酞普兰组(Esc,10 毫克/千克,静脉注射,连续 21 天)以及 PCMS 和 UCMS 加艾司西酞普兰组(分别为 PSt-Esc 和 USt-Esc)。使用 I/O 函数、PP 反应和 LTP 评估了海马 CA1 区的 fEPSP 斜率、振幅和曲线下面积(AUC)。对所有实验动物的血清皮质酮(CORT)水平进行了量化。在 USt 组和 PSt 组,I/O 功能中 fEPSP 的斜率、振幅和 AUC 以及 LTP 诱导前后的所有三个 PP 阶段都显著下降。艾司西酞普兰能明显增强PSt-Esc组的这些参数,而USt-Esc组则没有。血清 CORT 水平证实了各实验组的电生理学发现。PCMS 和 UCMS 都会损害海马 CA1 区的神经兴奋性、神经传递和记忆。只有在 PCMS 条件下,艾司西酞普兰才会改善记忆损伤,这可能与血清 CORT 水平降低有关。然而,在 UCMS 条件下,未观察到对神经兴奋性、神经传递和记忆的影响。这表明,可能需要不同剂量的艾司西酞普兰来同时改善各种类型的慢性轻度应激反应机制。
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来源期刊
Metabolic brain disease
Metabolic brain disease 医学-内分泌学与代谢
CiteScore
5.90
自引率
5.60%
发文量
248
审稿时长
6-12 weeks
期刊介绍: Metabolic Brain Disease serves as a forum for the publication of outstanding basic and clinical papers on all metabolic brain disease, including both human and animal studies. The journal publishes papers on the fundamental pathogenesis of these disorders and on related experimental and clinical techniques and methodologies. Metabolic Brain Disease is directed to physicians, neuroscientists, internists, psychiatrists, neurologists, pathologists, and others involved in the research and treatment of a broad range of metabolic brain disorders.
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