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由β-淀粉样蛋白寡聚体引起的社会和情境记忆障碍可通过西格玛-1受体激活得到挽救。

Social and contextual memory impairments induced by Amyloid-β oligomers are rescued by Sigma-1 receptor activation.

作者信息

Djebari Souhail, Jiménez-Herrera Raquel, Iborra-Lázaro Guillermo, Jiménez-Díaz Lydia, Navarro-López Juan D

机构信息

Neurophysiology & Behavior Lab, Institute of Biomedicine (IB-UCLM) and Instituto de Investigación Sanitaria de Castilla-La Mancha (IDISCAM), Faculty of Medicine of Ciudad Real, University of Castilla-La Mancha, Ciudad Real, Spain.

Neurophysiology & Behavior Lab, Institute of Biomedicine (IB-UCLM) and Instituto de Investigación Sanitaria de Castilla-La Mancha (IDISCAM), Faculty of Medicine of Ciudad Real, University of Castilla-La Mancha, Ciudad Real, Spain.

出版信息

Biomed Pharmacother. 2025 Mar;184:117914. doi: 10.1016/j.biopha.2025.117914. Epub 2025 Feb 24.

DOI:10.1016/j.biopha.2025.117914
PMID:39999645
Abstract

Sigma-1 receptors (S1Rs) are widely expressed throughout the central nervous system and modulate neuron intracellular calcium levels, leading to changes in neurotransmitter release and neuronal activity. They also interact with various proteins and signaling pathways, playing a key role in regulating synaptic plasticity in brain areas such as the hippocampus, thereby influencing learning and memory processes. This opens a research avenue to explore S1R modulation as a potential therapeutic target in diseases involving hippocampal synaptic alterations and compromised cognitive processes, such as Alzheimer's disease (AD). Here, we hypothesize that pharmacological activation of S1R could counteract synaptic plasticity deficits and hippocampal-dependent cognitive alterations in an early-stage amyloidosis model of Alzheimer's disease, induced by intracerebroventricular (icv) administration of Aβ oligomers (oAβ). For that purpose, we investigate ex vivo CA3-CA1 synaptic plasticity, while in vivo, we performed open field habituation and social recognition tasks to assess contextual and social memory, respectively. Our data show that pharmacological activation of S1Rs with the selective agonist PRE-084 counteract oAβ deleterious effects on CA3-CA1 long-term synaptic plasticity (LTP), and hippocampal-dependent contextual and social memory, without alterations of spontaneous behaviors. Together, these results provide further evidence for the role of S1Rs in ameliorating hippocampal synaptic and contextual memory dysfunctions and introduce novel insight into their involvement in early amyloid-induced social memory deficits, highlighting their potential for developing comprehensive treatments for early AD. Also, the absence of adverse behavioral outcomes associated with PRE-084 treatment suggests a favorable safety profile in preclinical models, supporting its potential as a therapeutic option.

摘要

西格玛-1受体(S1Rs)在整个中枢神经系统中广泛表达,并调节神经元细胞内钙水平,从而导致神经递质释放和神经元活动的变化。它们还与各种蛋白质和信号通路相互作用,在调节海马体等脑区的突触可塑性方面发挥关键作用,进而影响学习和记忆过程。这开辟了一条研究途径,以探索将S1R调节作为涉及海马体突触改变和认知过程受损的疾病(如阿尔茨海默病(AD))的潜在治疗靶点。在此,我们假设S1R的药理学激活可以抵消阿尔茨海默病早期淀粉样变性模型中由脑室内(icv)注射Aβ寡聚体(oAβ)诱导的突触可塑性缺陷和海马体依赖性认知改变。为此,我们研究了离体CA3-CA1突触可塑性,而在体内,我们分别进行了旷场习惯化和社会识别任务,以评估情境记忆和社会记忆。我们的数据表明,用选择性激动剂PRE-084对S1Rs进行药理学激活可抵消oAβ对CA3-CA1长期突触可塑性(LTP)以及海马体依赖性情境记忆和社会记忆的有害影响,且不会改变自发行为。总之,这些结果进一步证明了S1Rs在改善海马体突触和情境记忆功能障碍中的作用,并为它们参与早期淀粉样蛋白诱导的社会记忆缺陷提供了新的见解,突出了它们在开发早期AD综合治疗方法方面的潜力。此外,与PRE-084治疗相关的无不良行为结果表明其在临床前模型中具有良好的安全性,支持其作为治疗选择的潜力。

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