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光遗传学:鼻腔神经调节。

Optogenetics Neuromodulation of the Nose.

机构信息

TCM Department Chongqing University Cancer Hospital Chongqing Cancer Hospital, Chongqing, China.

E.N.T. Department Hospital of Chengdu University of Traditional Chinese Medicine, Chengdu, China.

出版信息

Behav Neurol. 2024 Aug 13;2024:2627406. doi: 10.1155/2024/2627406. eCollection 2024.

Abstract

Recently developed optogenetic technology, which allows high-fidelity control of neuronal activity, has been applied to investigate the neural circuits underlying sensory processing and behavior. The nasal cavity is innervated by the olfactory nerve and trigeminal nerve, which are closely related to common symptoms of rhinitis, such as impairment of smell, itching, and sneezing. The olfactory system has an amazing ability to distinguish thousands of odorant molecules at trace levels. However, there are many issues in olfactory sensing mechanisms that need to be addressed. Optogenetics offers a novel technical approach to solve this dilemma. Therefore, we review the recent advances in olfactory optogenetics to clarify the mechanisms of chemical sensing, which may help identify the mechanism of dysfunction and suggest possible treatments for impaired smell. Additionally, in rhinitis patients, alterations in the other nerve (trigeminal nerve) that innervates the nasal cavity can lead to hyperresponsiveness to various nociceptive stimuli and central sensitization, causing frequent and persistent itching and sneezing. In the last several years, the application of optogenetics in regulating nociceptive receptors, which are distributed in sensory nerve endings, and amino acid receptors, which are distributed in vital brain regions, to alleviate overreaction to nociceptive stimuli, has gained significant attention. Therefore, we focus on the progress in optogenetics and its application in neuromodulation of nociceptive stimuli and discuss the potential clinical translation for treating rhinitis in the future.

摘要

最近开发的光遗传学技术可以实现对神经元活动的高保真控制,已被应用于研究感觉处理和行为背后的神经回路。鼻腔由嗅觉神经和三叉神经支配,这两种神经与鼻炎的常见症状密切相关,如嗅觉障碍、瘙痒和打喷嚏。嗅觉系统具有区分痕量数千种气味分子的惊人能力。然而,嗅觉传感机制仍存在许多问题需要解决。光遗传学提供了一种新颖的技术方法来解决这一困境。因此,我们综述了嗅觉光遗传学的最新进展,以阐明化学传感的机制,这可能有助于确定功能障碍的机制,并为嗅觉障碍提供可能的治疗方法。此外,在鼻炎患者中,支配鼻腔的另一神经(三叉神经)的改变可导致对各种伤害性刺激的超敏反应和中枢敏化,引起频繁和持续的瘙痒和打喷嚏。在过去几年中,光遗传学在调节分布在感觉神经末梢的伤害性受体和分布在重要脑区的氨基酸受体以减轻对伤害性刺激的过度反应方面的应用引起了广泛关注。因此,我们重点介绍光遗传学及其在伤害性刺激神经调节中的应用方面的进展,并讨论未来治疗鼻炎的潜在临床转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21be/11335419/d498a67d4c4a/BN2024-2627406.001.jpg

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