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双重行为调控:光热和上转换杂化纳米粒子的无绳脑深部刺激。

Dual Behavior Regulation: Tether-Free Deep-Brain Stimulation by Photothermal and Upconversion Hybrid Nanoparticles.

机构信息

Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, and State Key Laboratory of Molecular Neuroscience, The Hong Kong University of Science & Technology, Kowloon, Hong Kong, 999077, P. R. China.

College of Life Science & Research Center for Natural Peptide Drugs, Shaanxi Engineering & Technological Research Center for Conversation & Utilization of Regional Biological Resources, Yanan University, Yanan, 716000, P. R. China.

出版信息

Adv Mater. 2023 May;35(21):e2210018. doi: 10.1002/adma.202210018. Epub 2023 Apr 6.

Abstract

Optogenetics has been plagued by invasive brain implants and thermal effects during photo-modulation. Here, two upconversion hybrid nanoparticles modified with photothermal agents, named PT-UCNP-B/G, which can modulate neuronal activities via photostimulation and thermo-stimulation under near-infrared laser irradiation at 980 nm and 808 nm, respectively, are demonstrated. PT-UCNP-B/G emits visible light (410-500 nm or 500-570 nm) through the upconversion process at 980 nm, while they exhibit efficient photothermal effect at 808 nm with no visible emission and tissue damage. Intriguingly, PT-UCNP-B significantly activates extracellular sodium currents in neuro2a cells expressing light-gated channelrhodopsin-2 (ChR2) ion channels under 980-nm irradiation, and inhibits potassium currents in human embryonic kidney 293 cells expressing the voltage-gated potassium channels (KCNQ1) under 808-nm irradiation in vitro. Furthermore, deep-brain bidirectional modulation of feeding behavior is achieved under tether-free 980 or 808-nm illumination (0.8 W cm ) in mice stereotactically injected with PT-UCNP-B in the ChR2-expressing lateral hypothalamus region. Thus, PT-UCNP-B/G creates new possibility of utilizing both light and heat to modulate neural activities and provides a viable strategy to overcome the limits of optogenetics.

摘要

光遗传学受到脑内植入物的侵袭和光调制过程中的热效应的困扰。在这里,展示了两种上转换混合纳米粒子,它们经过光热剂修饰,分别命名为 PT-UCNP-B/G,可分别在 980nm 和 808nm 的近红外激光照射下通过光刺激和热刺激来调节神经元活动。PT-UCNP-B/G 通过在 980nm 处的上转换过程发射可见光(410-500nm 或 500-570nm),而在 808nm 处具有高效的光热效应,没有可见发射和组织损伤。有趣的是,PT-UCNP-B 在表达光门控通道视紫红质-2(ChR2)离子通道的神经 2a 细胞中,在 980nm 照射下显著激活细胞外钠离子电流,并在表达电压门控钾通道(KCNQ1)的人胚肾 293 细胞中在 808nm 照射下抑制钾电流。此外,在通过立体定向注射在 ChR2 表达的外侧下丘脑区域中表达 PT-UCNP-B 的小鼠中,在无束缚的 980nm 或 808nm 照射(0.8Wcm)下实现了对进食行为的深脑双向调节。因此,PT-UCNP-B/G 为利用光和热来调节神经活动创造了新的可能性,并提供了一种可行的策略来克服光遗传学的限制。

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