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盐酸二甲金刚烷胺恢复小鼠前额叶皮层内源性烟碱型乙酰胆碱受体信号传递。

Xanomeline restores endogenous nicotinic acetylcholine receptor signaling in mouse prefrontal cortex.

机构信息

Department of Physiology, University of Toronto, Toronto, ON, Canada.

Department of OBGYN, University of Toronto, Toronto, ON, Canada.

出版信息

Neuropsychopharmacology. 2023 Mar;48(4):671-682. doi: 10.1038/s41386-023-01531-5. Epub 2023 Jan 12.

Abstract

Cholinergic synapses in prefrontal cortex are vital for attention, but this modulatory system undergoes substantial pre- and post-synaptic alterations during adulthood. To examine the integrated impact of these changes, we optophysiologically probe cholinergic synapses ex vivo, revealing a clear decline in neurotransmission in middle adulthood. Pharmacological dissection of synaptic components reveals a selective reduction in postsynaptic nicotinic receptor currents. Other components of cholinergic synapses appear stable, by contrast, including acetylcholine autoinhibition, metabolism, and excitation of postsynaptic muscarinic receptors. Pursuing strategies to strengthen cholinergic neurotransmission, we find that positive allosteric modulation of nicotinic receptors with NS9283 is effective in young adults but wanes with age. To boost nicotinic receptor availability, we harness the second messenger pathways of the preserved excitatory muscarinic receptors with xanomeline. This muscarinic agonist and cognitive-enhancer restores nicotinic signaling in older mice significantly, in a muscarinic- and PKC-dependent manner. The rescued nicotinic component regains youthful sensitivity to allosteric enhancement: treatment with xanomeline and NS9283 restores cholinergic synapses in older mice to the strength, speed, and receptor mechanism of young adults. Our results reveal a new and efficient strategy to rescue age-related nicotinic signaling deficits, demonstrating a novel pathway for xanomeline to restore cognitively-essential endogenous cholinergic neurotransmission.

摘要

前额叶皮层的胆碱能突触对注意力至关重要,但在成年期,这个调节系统会经历大量的突触前和突触后改变。为了研究这些变化的综合影响,我们在体外生理条件下探测胆碱能突触,揭示了中年时神经传递明显下降。对突触成分的药理学剖析揭示了突触后烟碱型受体电流的选择性减少。相比之下,胆碱能突触的其他成分似乎稳定,包括乙酰胆碱的自身抑制、代谢和突触后毒蕈碱受体的兴奋。我们追求增强胆碱能神经传递的策略,发现 NS9283 对烟碱型受体的正变构调节在年轻人中有效,但随着年龄的增长而减弱。为了增加烟碱型受体的可用性,我们利用保留的兴奋性毒蕈碱受体的第二信使途径来利用 xanomeline。这种毒蕈碱激动剂和认知增强剂以毒蕈碱型和 PKC 依赖的方式显著恢复老年小鼠的烟碱型信号。恢复的烟碱型成分恢复了年轻的对变构增强的敏感性:用 xanomeline 和 NS9283 治疗可使老年小鼠的胆碱能突触恢复到年轻成年人的强度、速度和受体机制。我们的结果揭示了一种新的、有效的策略来挽救与年龄相关的烟碱型信号缺陷,证明了 xanomeline 恢复认知必需的内源性胆碱能神经传递的新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0657/9938126/90fac57bccbc/41386_2023_1531_Fig1_HTML.jpg

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