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用光开关纳米囊泡对神经元活动进行光学控制。

Optical control of neuronal activities with photoswitchable nanovesicles.

作者信息

Xiong Hejian, Alberto Kevin A, Youn Jonghae, Taura Jaume, Morstein Johannes, Li Xiuying, Wang Yang, Trauner Dirk, Slesinger Paul A, Nielsen Steven O, Qin Zhenpeng

机构信息

Department of Mechanical Engineering, The University of Texas at Dallas, Richardson, TX 75080, USA.

Department of Chemistry and Biochemistry, The University of Texas at Dallas, Richardson, TX 75080, USA.

出版信息

Nano Res. 2023 Jan;16(1):1033-1041. doi: 10.1007/s12274-022-4853-x. Epub 2022 Sep 2.


DOI:10.1007/s12274-022-4853-x
PMID:37063114
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10103898/
Abstract

Precise modulation of neuronal activity by neuroactive molecules is essential for understanding brain circuits and behavior. However, tools for highly controllable molecular release are lacking. Here, we developed a photoswitchable nanovesicle with azobenzene-containing phosphatidylcholine (azo-PC), coined 'azosome', for neuromodulation. Irradiation with 365 nm light triggers the trans-to-cis isomerization of azo-PC, resulting in a disordered lipid bilayer with decreased thickness and cargo release. Irradiation with 455 nm light induces reverse isomerization and switches the release off. Real-time fluorescence imaging shows controllable and repeatable cargo release within seconds (< 3 s). Importantly, we demonstrate that SKF-81297, a dopamine D1-receptor agonist, can be repeatedly released from the azosome to activate cultures of primary striatal neurons. Azosome shows promise for precise optical control over the molecular release and can be a valuable tool for molecular neuroscience studies.

摘要

神经活性分子对神经元活动的精确调节对于理解脑回路和行为至关重要。然而,目前缺乏高度可控的分子释放工具。在此,我们开发了一种含偶氮苯磷脂酰胆碱(azo-PC)的光开关纳米囊泡,命名为“偶氮体”,用于神经调节。用365 nm光照射会触发azo-PC的反式到顺式异构化,导致脂质双层无序化,厚度减小并释放货物。用455 nm光照射会诱导反向异构化并关闭释放。实时荧光成像显示在数秒内(<3 s)可控制且可重复的货物释放。重要的是,我们证明多巴胺D1受体激动剂SKF-81297可以从偶氮体中反复释放,以激活原代纹状体神经元培养物。偶氮体有望实现对分子释放的精确光学控制,并且可以成为分子神经科学研究的有价值工具。

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本文引用的文献

[1]
Tether-free photothermal deep-brain stimulation in freely behaving mice via wide-field illumination in the near-infrared-II window.

Nat Biomed Eng. 2022-6

[2]
Photopharmacological control of cell signaling with photoswitchable lipids.

Curr Opin Pharmacol. 2022-4

[3]
Photoswitchable Serotonins for Optical Control of the 5-HT Receptor.

Angew Chem Int Ed Engl. 2022-4-25

[4]
Optical Membrane Control with Red Light Enabled by Red-Shifted Photolipids.

Langmuir. 2022-1-11

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Nanotransducers for Wireless Neuromodulation.

Matter. 2021-5-5

[6]
Optimized Photoactivatable Lipid Nanoparticles Enable Red Light Triggered Drug Release.

Small. 2021-5

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Adv Drug Deliv Rev. 2021-4

[8]
Photolipid Bilayer Permeability is Controlled by Transient Pore Formation.

Langmuir. 2020-11-3

[9]
Scalable molecular dynamics on CPU and GPU architectures with NAMD.

J Chem Phys. 2020-7-28

[10]
Useful Caged Compounds for Cell Physiology.

Acc Chem Res. 2020-8-18

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