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利用近红外光激活的纳米激动剂通过内源性离子通道进行远程神经刺激。

Remote neurostimulation through an endogenous ion channel using a near-infrared light-activatable nanoagonist.

机构信息

The Affiliated TCM Hospital of Guangzhou Medical University, School of Basic Medical Sciences, Guangzhou Medical University, Guangzhou, China.

Key Laboratory of Neurogenetics and Channelopathies of Guangdong Province and the Ministry of Education of China, The Second Affiliated Hospital, Guangzhou Medical University, Guangzhou, China.

出版信息

Sci Adv. 2024 Aug 9;10(32):eadn0367. doi: 10.1126/sciadv.adn0367.

Abstract

The development of noninvasive approaches to precisely control neural activity in mammals is highly desirable. Here, we used the ion channel transient receptor potential ankyrin-repeat 1 (TRPA1) as a proof of principle, demonstrating remote near-infrared (NIR) activation of endogenous neuronal channels in mice through an engineered nanoagonist. This achievement enables specific neurostimulation in nongenetically modified mice. Initially, target-based screening identified flavins as photopharmacological agonists, allowing for the photoactivation of TRPA1 in sensory neurons upon ultraviolet A/blue light illumination. Subsequently, upconversion nanoparticles (UCNPs) were customized with an emission spectrum aligned to flavin absorption and conjugated with flavin adenine dinucleotide, creating a nanoagonist capable of NIR activation of TRPA1. Following the intrathecal injection of the nanoagonist, noninvasive NIR stimulation allows precise bidirectional control of nociception in mice through remote activation of spinal TRPA1. This study demonstrates a noninvasive NIR neurostimulation method with the potential for adaptation to various endogenous ion channels and neural processes by combining photochemical toolboxes with customized UCNPs.

摘要

开发非侵入性方法来精确控制哺乳动物的神经活动是非常可取的。在这里,我们使用离子通道瞬时受体电位阳离子通道亚家族 A 成员 1(TRPA1)作为原理验证,通过工程化的纳米激动剂证明了在小鼠中内源神经元通道的远程近红外(NIR)激活。这一成就使得在非基因修饰的小鼠中能够进行特定的神经刺激。最初,基于靶标的筛选确定了黄素作为光药理激动剂,允许在紫外线 A/蓝光照射下对感觉神经元中的 TRPA1 进行光激活。随后,上转换纳米粒子(UCNP)被定制为发射光谱与黄素吸收相匹配,并与黄素腺嘌呤二核苷酸缀合,形成一种能够通过近红外(NIR)激活 TRPA1 的纳米激动剂。在鞘内注射纳米激动剂后,非侵入性的近红外(NIR)刺激通过远程激活脊髓 TRPA1,允许对小鼠的伤害感受进行精确的双向控制。这项研究展示了一种非侵入性的近红外(NIR)神经刺激方法,通过将光化学工具箱与定制的 UCNP 相结合,有可能适应各种内源性离子通道和神经过程。

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