College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, 430074, P. R. China.
National Engineering Research Center for Nanomedicine, Huazhong University of Science and Technology, Wuhan, 430074, P. R. China.
Small. 2020 Feb;16(8):e1906797. doi: 10.1002/smll.201906797. Epub 2020 Jan 31.
The optogenetic neuron ablation approach enables noninvasive remote decoding of specific neuron function within a complex living organism in high spatiotemporal resolution. However, it suffers from shallow tissue penetration of visible light with low ablation efficiency. This study reports a upconversion nanoparticle (UCNP)-based multiplex proteins activation tool to ablate deep-tissue neurons for locomotion modulation. By optimizing the dopant contents and nanoarchitecure, over 300-fold enhancement of blue (450-470 nm) and red (590-610 nm) emissions from UCNPs is achieved upon 808 nm irradiation. Such emissions simultaneously activate mini singlet oxygen generator and Chrimson, leading to boosted near infrared (NIR) light-induced neuronal ablation efficiency due to the synergism between singlet oxygen generation and intracellular Ca elevation. The loss of neurons severely inhibits reverse locomotion, revealing the instructive role of neurons in controlling motor activity. The deep penetrance NIR light makes the current system feasible for in vivo deep-tissue neuron elimination. The results not only provide a rapidly adoptable platform to efficient photoablate single- and multiple-cells, but also define the neural circuits underlying behavior, with potential for development of remote therapy in diseases.
光遗传学神经元消融方法能够以高时空分辨率非侵入性地远程解码复杂活体生物中特定神经元的功能。然而,它受到可见光的浅层组织穿透和低消融效率的限制。本研究报告了一种基于上转换纳米粒子(UCNP)的多路蛋白激活工具,用于消融深部组织神经元以调节运动。通过优化掺杂浓度和纳米结构,在 808nm 照射下,UCNP 的蓝(450-470nm)和红(590-610nm)发射分别增强了 300 多倍。这种发射同时激活了微型单重态氧发生器和 Chrimson,由于单重态氧生成和细胞内 Ca 升高之间的协同作用,增强了近红外(NIR)光诱导的神经元消融效率。神经元的丧失严重抑制了反向运动,揭示了神经元在控制运动活动中的指导作用。深穿透的 NIR 光使得当前的系统能够实现体内深部组织神经元的消除。这些结果不仅为高效光消融单细胞和多细胞提供了一个快速采用的平台,而且还定义了行为背后的神经回路,为疾病的远程治疗提供了潜力。