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然后便有了光明:光遗传学在深部脑刺激和神经调节中的应用前景

And Then There Was Light: Perspectives of Optogenetics for Deep Brain Stimulation and Neuromodulation.

作者信息

Delbeke Jean, Hoffman Luis, Mols Katrien, Braeken Dries, Prodanov Dimiter

机构信息

LCEN3, Department of Neurology, Institute of Neuroscience, Ghent University, Ghent, Belgium.

Neuroscience Research Flanders, Leuven, Belgium.

出版信息

Front Neurosci. 2017 Dec 12;11:663. doi: 10.3389/fnins.2017.00663. eCollection 2017.

Abstract

Deep Brain Stimulation (DBS) has evolved into a well-accepted add-on treatment for patients with severe Parkinsons disease as well as for other chronic neurological conditions. The focal action of electrical stimulation can yield better responses and it exposes the patient to fewer side effects compared to pharmaceuticals distributed throughout the body toward the brain. On the other hand, the current practice of DBS is hampered by the relatively coarse level of neuromodulation achieved. Optogenetics, in contrast, offers the perspective of much more selective actions on the various physiological structures, provided that the stimulated cells are rendered sensitive to the action of light. Optogenetics has experienced tremendous progress since its first applications about 10 years ago. Recent advancements of viral vector technology for gene transfer substantially reduce vector-associated cytotoxicity and immune responses. This brings about the possibility to transfer this technology into the clinic as a possible alternative to DBS and neuromodulation. New paths could be opened toward a rich panel of clinical applications. Some technical issues still limit the long term use in humans but realistic perspectives quickly emerge. Despite a rapid accumulation of observations about patho-physiological mechanisms, it is still mostly serendipity and empiric adjustments that dictate clinical practice while more efficient logically designed interventions remain rather exceptional. Interestingly, it is also very much the neuro technology developed around optogenetics that offers the most promising tools to fill in the existing knowledge gaps about brain function in health and disease. The present review examines Parkinson's disease and refractory epilepsy as use cases for possible optogenetic stimulation therapies.

摘要

深部脑刺激(DBS)已发展成为一种被广泛接受的针对重度帕金森病患者以及其他慢性神经疾病患者的附加治疗方法。与向大脑全身分布的药物相比,电刺激的局部作用可以产生更好的反应,并且使患者暴露于更少的副作用。另一方面,目前DBS的实践受到所实现的神经调节相对粗糙水平的阻碍。相比之下,光遗传学提供了对各种生理结构进行更具选择性作用的前景,前提是被刺激的细胞对光的作用变得敏感。自大约10年前首次应用以来,光遗传学取得了巨大进展。用于基因转移的病毒载体技术的最新进展大大降低了载体相关的细胞毒性和免疫反应。这带来了将该技术转化为临床应用的可能性,作为DBS和神经调节的一种可能替代方案。可以为丰富的临床应用开辟新的途径。一些技术问题仍然限制了其在人类中的长期使用,但现实的前景很快就会出现。尽管关于病理生理机制的观察迅速积累,但目前临床实践仍然主要由偶然发现和经验性调整主导,而更有效的逻辑设计干预仍然相当罕见。有趣的是,围绕光遗传学发展起来的神经技术也为填补健康和疾病状态下大脑功能现有知识空白提供了最有前途的工具。本综述将帕金森病和难治性癫痫作为可能的光遗传学刺激疗法的应用案例进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73d4/5732983/8129d36b3766/fnins-11-00663-g0001.jpg

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