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Anemoside A3 Enhances Cognition through the Regulation of Synaptic Function and Neuroprotection

机译:Anemoside A3通过调节突触功能和神经保护增强认知

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摘要

Compounds that have the ability to both strengthen synaptic function and facilitate neuroprotection are valuable cognitive enhancers that may improve health and quality of life, as well as retard age-related cognitive deterioration. Medicinal plants are an abundant source of potential cognitive enhancers. Here we report that anemoside A3 (AA3) isolated from Pulsatilla chinensis modulates synaptic connectivity in circuits central to memory enhancement. AA3 specifically modulates the function of AMPA-type glutamate receptors (AMPARs) by increasing serine phosphorylation within the GluA1 subunit, which is a modification required for the trafficking of GluA1-containing AMPARs to synapses. Furthermore, AA3 administration activates several synaptic signaling molecules and increases protein expressions of the neurotrophin brain-derived neurotrophic factor and monoamine neurotransmitters in the mouse hippocampus. In addition to acting through AMPARs, AA3 also acts as a non-competitive NMDA receptor (NMDAR) modulator with a neuroprotective capacity against ischemic brain injury and overexcitation in rats. These findings collectively suggest that AA3 possesses a unique ability to modulate the functions of both AMPARs and NMDARs. Concordantly, behavioral studies indicate that AA3 not only facilitates hippocampal long-term potentiation but also enhances spatial reference memory formation in mice. These multifaceted roles suggest that AA3 is an attractive candidate for further development as a cognitive enhancer capable of alleviating memory dysfunctions associated with aging and neurodegenerative diseases.
机译:具有增强突触功能和促进神经保护作用的化合物是有价值的认知增强剂,可以改善健康状况和生活质量,并延缓与年龄有关的认知能力下降。药用植物是潜在的认知增强剂的丰富来源。在这里我们报告从白头翁分离的anemoside A3(AA3)调节记忆增强中心电路中的突触连接。 AA3通过增加GluA1亚基内的丝氨酸磷酸化来特异性调节AMPA型谷氨酸受体(AMPAR)的功能,这是将含GluA1的AMPAR转运到突触所需的修饰。此外,AA3给药可激活多个突触信号分子,并增加小鼠海马中神经营养蛋白脑源性神经营养因子和单胺类神经递质的蛋白表达。除了通过AMPAR起作用外,AA3还充当非竞争性NMDA受体(NMDAR)调节剂,对大鼠缺血性脑损伤和过度兴奋具有神经保护能力。这些发现共同表明,AA3具有调节AMPAR和NMDAR功能的独特能力。相应地,行为研究表明,AA3不仅促进了海马的长期增强作用,而且还增强了小鼠的空间参考记忆形成。这些多方面的作用表明,AA3作为能够减轻与衰老和神经退行性疾病相关的记忆功能障碍的认知增强剂,是进一步发展的有吸引力的候选者。

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